{"bekendtgoerelseNoegle":{"noticeId":{"value":"3365250a-d1c3-459b-9595-6b676fc6188e"},"noticeVersion":{"value":"01"},"noticePublicationNumber":{"value":"00793279-2025"}},"htmlDA":"<!DOCTYPE HTML>\n<html xmlns:cac=\"urn:oasis:names:specification:ubl:schema:xsd:CommonAggregateComponents-2\" xmlns:cbc=\"urn:oasis:names:specification:ubl:schema:xsd:CommonBasicComponents-2\" xmlns:efac=\"http://data.europa.eu/p27/eforms-ubl-extension-aggregate-components/1\" xmlns:efbc=\"http://data.europa.eu/p27/eforms-ubl-extension-basic-components/1\" xmlns:efext=\"http://data.europa.eu/p27/eforms-ubl-extensions/1\" xmlns:ext=\"urn:oasis:names:specification:ubl:schema:xsd:CommonExtensionComponents-2\" xmlns:fn=\"http://www.w3.org/2005/xpath-functions\" xmlns:xs=\"http://www.w3.org/2001/XMLSchema\">\n   <body>\n      <section>1&nbsp;<span class=\"label\">Køber</span><section>1.1&nbsp;<span class=\"label\">Køber</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Aarhus Universitet</span></section>\n            <section><span class=\"label\">Køberens retlige status</span><span class=\"text\">: </span><span class=\"dynamic-label\">Offentligretligt organ</span></section>\n            <section><span class=\"label\">Den ordregivende myndigheds aktivitet</span><span class=\"text\">: </span><span class=\"dynamic-label\">Uddannelse</span></section>\n         </section>\n      </section>\n      <section>2&nbsp;<span class=\"label\">Procedure</span><section>2.1&nbsp;<span class=\"label\">Procedure</span><section><span class=\"label\">Titel</span><span class=\"text\">: </span><span class=\"value\">Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction,\n                  and related catalytic and materials processes</span></section>\n            <section><span class=\"label\">Beskrivelse</span><span class=\"text\">: </span><span class=\"value\">The Department of Chemistry and the CORC Center at Aarhus University has a strong\n                  international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms,\n                  where accurate thermodynamic and kinetic measurements are vital for scientific advancement.\n                  Modern global research places increasing emphasis on designing materials and catalysts\n                  capable of efficiently capturing and converting CO₂, making it critical to resolve\n                  minute changes in heat flow and to maintain precise experimental control. To optimize\n                  and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ\n                  advanced isothermal nanocalorimetry. This technique provides detailed insight into\n                  the thermodynamics of CO₂ adsorption and binding to functional materials, including\n                  metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements\n                  for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst\n                  surfaces; these steps often involve subtle and overlapping thermal events. Furthermore,\n                  the study of proton-coupled electron transfer processes and intermediate formation\n                  in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel,\n                  multi-channel screening, which enables comparative analysis of molecular and heterogeneous\n                  catalyst candidates. Quantification of transient heat signatures, as demonstrated\n                  in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial\n                  for differentiating reaction pathways and evaluating catalytic efficiency.<br/>In\n                  summary, an instrument capable of nanocalorimetric detection, specifically at the\n                  level of less than 100 nW, is essential to reliably detect the faint heat signals\n                  accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must\n                  be supported by ultra-high thermal stability, on the order of one millionth of a degree\n                  Celsius, over the extended time frames required for the study of long-lived reactions.\n                  It is equally critical to enable comparisons among samples by analyzing them simultaneously.\n                  Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                  that is why the instrument should be equipped with an automated liquid and gas sample\n                  handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                  at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                  real catalytic conditions.<br/>No other commercially available microcalorimeter offers\n                  the unique combination of nanowatt sensitivity, modular throughput through multi-channel\n                  parallel operation, broad temperature range, and configurational flexibility that\n                  is found in the TAM IV.</span></section>\n            <section><span class=\"label\">Identifikator for proceduren</span><span class=\"text\">: </span><span class=\"value\">a669543b-e939-4ac8-ba64-89fb1e5b9509</span></section>\n            <section><span class=\"label\">Intern ID</span><span class=\"text\">: </span><span class=\"value\">f7178430-8fda-4e19-a5d9-1effa4556eae</span></section>\n            <section><span class=\"label\">Udbudsprocedure</span><span class=\"text\">: </span><span class=\"dynamic-label\">Udbud med forhandling uden forudgående offentliggørelse</span></section>\n            <section>2.1.1&nbsp;<span class=\"label\">Formål</span><section><span class=\"label\">Kontraktens hovedformål</span><span class=\"text\">: </span><span class=\"dynamic-label\">Varer</span></section>\n               <section><span class=\"label\">Primær klassifikation</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">cpv</span><span class=\"text\">): </span><span class=\"value\">38000000</span><span class=\"text\"> </span><span class=\"dynamic-label\">Laboratorieudstyr, optisk udstyr og præcisionsudstyr (ikke briller)</span></section>\n            </section>\n            <section>2.1.2&nbsp;<span class=\"label\">Udførelsessted</span><section><span class=\"label\">Postadresse</span><span class=\"text\">: </span><span class=\"value\">Gustav Wieds Vej 10C, building 3130</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n               <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Aarhus C</span></section>\n               <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">8000</span></section>\n               <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Østjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK042</span><span class=\"text\">)</span></section>\n               <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Danmark</span></section>\n            </section>\n            <section>2.1.4&nbsp;<span class=\"label\">Generelle oplysninger</span><section><span class=\"label\">Retsgrundlag</span><span class=\"text\">:</span></section>\n               <section><span class=\"dynamic-label\">Direktiv 2014/24/EU</span></section>\n            </section>\n         </section>\n      </section>\n      <section>5&nbsp;<span class=\"label\">Delkontrakt</span><section>5.1&nbsp;<span class=\"label\">Teknisk ID for delkontrakten</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span><section><span class=\"label\">Titel</span><span class=\"text\">: </span><span class=\"value\">Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction,\n                  and related catalytic and materials processes</span></section>\n            <section><span class=\"label\">Beskrivelse</span><span class=\"text\">: </span><span class=\"value\">The Department of Chemistry and the CORC Center at Aarhus University has a strong\n                  international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms,\n                  where accurate thermodynamic and kinetic measurements are vital for scientific advancement.\n                  Modern global research places increasing emphasis on designing materials and catalysts\n                  capable of efficiently capturing and converting CO₂, making it critical to resolve\n                  minute changes in heat flow and to maintain precise experimental control. To optimize\n                  and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ\n                  advanced isothermal nanocalorimetry. This technique provides detailed insight into\n                  the thermodynamics of CO₂ adsorption and binding to functional materials, including\n                  metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements\n                  for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst\n                  surfaces; these steps often involve subtle and overlapping thermal events. Furthermore,\n                  the study of proton-coupled electron transfer processes and intermediate formation\n                  in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel,\n                  multi-channel screening, which enables comparative analysis of molecular and heterogeneous\n                  catalyst candidates. Quantification of transient heat signatures, as demonstrated\n                  in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial\n                  for differentiating reaction pathways and evaluating catalytic efficiency.<br/>In\n                  summary, an instrument capable of nanocalorimetric detection, specifically at the\n                  level of less than 100 nW, is essential to reliably detect the faint heat signals\n                  accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must\n                  be supported by ultra-high thermal stability, on the order of one millionth of a degree\n                  Celsius, over the extended time frames required for the study of long-lived reactions.\n                  It is equally critical to enable comparisons among samples by analyzing them simultaneously.\n                  Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                  that is why the instrument should be equipped with an automated liquid and gas sample\n                  handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                  at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                  real catalytic conditions.<br/>No other commercially available microcalorimeter offers\n                  the unique combination of nanowatt sensitivity, modular throughput through multi-channel\n                  parallel operation, broad temperature range, and configurational flexibility that\n                  is found in the TAM IV.</span></section>\n            <section><span class=\"label\">Intern ID</span><span class=\"text\">: </span><span class=\"value\">1299b8a6-4c1d-4089-a683-4e8aaa998fee</span></section>\n            <section>5.1.1&nbsp;<span class=\"label\">Formål</span><section><span class=\"label\">Kontraktens hovedformål</span><span class=\"text\">: </span><span class=\"dynamic-label\">Varer</span></section>\n               <section><span class=\"label\">Primær klassifikation</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">cpv</span><span class=\"text\">): </span><span class=\"value\">38000000</span><span class=\"text\"> </span><span class=\"dynamic-label\">Laboratorieudstyr, optisk udstyr og præcisionsudstyr (ikke briller)</span></section>\n            </section>\n            <section>5.1.2&nbsp;<span class=\"label\">Udførelsessted</span><section><span class=\"label\">Postadresse</span><span class=\"text\">: </span><span class=\"value\">Gustav Wieds Vej 10C, building 3130</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n               <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Aarhus C</span></section>\n               <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">8000</span></section>\n               <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Østjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK042</span><span class=\"text\">)</span></section>\n               <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Danmark</span></section>\n               <section><span class=\"label\">Yderligere oplysninger</span><span class=\"text\">: </span><span class=\"value\"></span></section>\n            </section>\n            <section>5.1.6&nbsp;<span class=\"label\">Generelle oplysninger</span><section><span class=\"dynamic-label\">Indkøbsprojekt, der ikke finansieres med EU-midler</span></section>\n               <section><span class=\"label\">Udbuddet er omfattet af aftalen om offentlige udbud (GPA)</span><span class=\"text\">: </span><span class=\"label\">ja</span></section>\n            </section>\n            <section>5.1.10&nbsp;<span class=\"label\">Tildelingskriterier</span><section><span class=\"label\">Kriterium</span><span class=\"text\">:</span><section><span class=\"label\">Type</span><span class=\"text\">: </span><span class=\"dynamic-label\">Kvalitet</span></section>\n                  <section><span class=\"label\">Navn</span><span class=\"text\">: </span><span class=\"value\">Quality</span></section>\n                  <section><span class=\"label\">Beskrivelse</span><span class=\"text\">: </span><span class=\"value\">An instrument capable of nanocalorimetric detection, specifically at the level of\n                        less than 100 nW, is essential to reliably detect the faint heat signals accompanying\n                        CO₂ binding, reduction, and catalyst activation. Such sensitivity must be supported\n                        by ultra-high thermal stability, on the order of one millionth of a degree Celsius,\n                        over the extended time frames required for the study of long-lived reactions. It is\n                        equally critical to enable comparisons among samples by analyzing them simultaneously.\n                        Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                        that is why the instrument should be equipped with an automated liquid and gas sample\n                        handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                        at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                        real catalytic conditions.</span></section>\n                  <section><span class=\"label\">Kategori for tildelingskriteriet tærskel</span><span class=\"text\">: </span><span class=\"dynamic-label\">Vægtning (procentdel, præcis)</span><section><span class=\"label\">Tildelingskriterium talværdi</span><span class=\"text\">: </span><span class=\"value\">100</span></section>\n                  </section>\n               </section>\n            </section>\n            <section>5.1.15&nbsp;<span class=\"label\">Teknikker</span><section><span class=\"label\">Rammeaftale</span><span class=\"text\">:</span><section><span class=\"dynamic-label\">Ingen rammeaftale</span></section>\n               </section>\n               <section><span class=\"label\">Oplysninger om det dynamiske indkøbssystem</span><span class=\"text\">:</span><section><span class=\"dynamic-label\">Intet dynamisk indkøbssystem</span></section>\n               </section>\n            </section>\n            <section>5.1.16&nbsp;<span class=\"label\">Yderligere oplysninger, mægling og gennemgang</span><section><span class=\"label\">Organisation med ansvar for klager</span><span class=\"text\">: </span><span class=\"value\">Klagenævnet for udbud</span><span class=\"value\"></span></section>\n               <section><span class=\"label\">Oplysninger om klagefrister</span><span class=\"text\">: </span><span class=\"value\">Following the notification, a standstill period of 10 calendar days will be held in\n                     accordance to paragraph 3 of Act No. 593 of 2 June 2016 on the Danish Act on the Complaints\n                     Board for public Procurement. This implies that the Contracting Authority cannot sign\n                     the Contract with the winning Tenderer before the standstill period has expired.<br/>In\n                     case of complaints about tenders or decisions, e.g. award of contracts covered by\n                     Section II or III in the Danish Public Procurement Act must be submitted to the Complaints\n                     Board for Public Procurement (Klagenævnet for udbud) within 45 calendar days from\n                     the day after the contractor published a notice in the Official Journal on the conclusion\n                     of a contract. At the latest concurrently with submission of an appeal to the Complaints\n                     Board for Public Procurement, the complainant must inform the Contracting Authority\n                     of the alleged infringement, and whether the appeal is to be referred to the board.</span></section>\n               <section><span class=\"label\">Organisation, der leverer yderligere oplysninger om klageprocedurerne</span><span class=\"text\">: </span><span class=\"value\">Konkurrence- og Forbrugerstyrelsen</span><span class=\"value\"></span></section>\n            </section>\n         </section>\n      </section>\n      <section>6&nbsp;<span class=\"label\">Resultater</span><section><span class=\"label\">Værdien af alle kontrakter tildelt i denne bekendtgørelse</span><span class=\"text\">: </span><span class=\"value\">1.691.760</span><span class=\"text\"> </span><span class=\"label\">Dansk krone</span></section>\n         <section><span class=\"label\">Direkte tildeling</span><span class=\"text\">:</span><section><span class=\"label\">Begrundelse for direkte tildeling</span><span class=\"text\">: </span><span class=\"dynamic-label\">Kontrakten kan kun tildeles af en bestemt økonomisk aktør på grund af manglende konkurrence af tekniske årsager</span></section>\n            <section><span class=\"label\">Anden begrundelse</span><span class=\"text\">: </span><span class=\"value\">The Department of Chemistry and the CORC Center at Aarhus University has a strong\n                  international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms,\n                  where accurate thermodynamic and kinetic measurements are vital for scientific advancement.\n                  Modern global research places increasing emphasis on designing materials and catalysts\n                  capable of efficiently capturing and converting CO₂, making it critical to resolve\n                  minute changes in heat flow and to maintain precise experimental control. To optimize\n                  and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ\n                  advanced isothermal nanocalorimetry. This technique provides detailed insight into\n                  the thermodynamics of CO₂ adsorption and binding to functional materials, including\n                  metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements\n                  for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst\n                  surfaces; these steps often involve subtle and overlapping thermal events. Furthermore,\n                  the study of proton-coupled electron transfer processes and intermediate formation\n                  in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel,\n                  multi-channel screening, which enables comparative analysis of molecular and heterogeneous\n                  catalyst candidates. Quantification of transient heat signatures, as demonstrated\n                  in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial\n                  for differentiating reaction pathways and evaluating catalytic efficiency.<br/>In\n                  summary, an instrument capable of nanocalorimetric detection, specifically at the\n                  level of less than 100 nW, is essential to reliably detect the faint heat signals\n                  accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must\n                  be supported by ultra-high thermal stability, on the order of one millionth of a degree\n                  Celsius, over the extended time frames required for the study of long-lived reactions.\n                  It is equally critical to enable comparisons among samples by analyzing them simultaneously.\n                  Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                  that is why the instrument should be equipped with an automated liquid and gas sample\n                  handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                  at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                  real catalytic conditions.<br/>No other commercially available microcalorimeter offers\n                  the unique combination of nanowatt sensitivity, modular throughput through multi-channel\n                  parallel operation, broad temperature range, and configurational flexibility that\n                  is found in the TAM IV.</span></section>\n         </section>\n         <section>6.1&nbsp;<span class=\"label\">Resultat delkontrakt-ID</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span><section><span class=\"dynamic-label\">Der er udvalgt mindst én vinder.</span></section>\n            <section>6.1.2&nbsp;<span class=\"label\">Oplysninger om vinderne</span><section><span class=\"label\">Vinder</span><span class=\"text\">:</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Malvern Panalytical</span></section>\n                  <section><span class=\"label\">Tilbud</span><span class=\"text\">:</span></section>\n                  <section><span class=\"label\">Tilbud – Identifikator</span><span class=\"text\">: </span><span class=\"value\">1 microcalorimeter system for advanced research on CO₂ adsorption, reduction, and\n                        related catalytic and materials processes</span></section>\n                  <section><span class=\"label\">ID for delkontrakt eller gruppe af delkontrakter</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span></section>\n                  <section><span class=\"label\">Værdien af tilbuddet</span><span class=\"text\">: </span><span class=\"value\">1.691.760</span><span class=\"text\"> </span><span class=\"dynamic-label\">Dansk krone</span></section>\n                  <section><span class=\"label\">Underentreprise</span><span class=\"text\">: </span><span class=\"dynamic-label\">Nej</span></section>\n                  <section><span class=\"label\">Kontraktoplysninger</span><span class=\"text\">:</span><section><span class=\"label\">Identifikator for kontrakten</span><span class=\"text\">: </span><span class=\"value\">Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction,\n                           and related catalytic and materials processes - Malvern Panalytical</span></section>\n                     <section><span class=\"label\">Dato for indgåelse af kontrakten</span><span class=\"text\">: </span><span class=\"value\">27-11-2025</span></section>\n                  </section>\n               </section>\n            </section>\n            <section>6.1.4&nbsp;<span class=\"label\">Statistiske oplysninger</span><section><span class=\"label\">Resumé af de klager som køberen har modtaget</span><span class=\"text\">:</span><section><span class=\"label\">Antal klagere</span><span class=\"text\">: </span><span class=\"value\">0</span></section>\n               </section>\n               <section><span class=\"label\">Modtagne tilbud og ansøgninger om deltagelse</span><span class=\"text\">:</span><section><span class=\"label\">Type modtagne indgivelser</span><span class=\"text\">: </span><span class=\"dynamic-label\">Tilbud</span><section><span class=\"label\">Antal modtagne tilbud og ansøgninger om deltagelse</span><span class=\"text\">: </span><span class=\"value\">1</span></section>\n                  </section>\n               </section>\n            </section>\n         </section>\n      </section>\n      <section>8&nbsp;<span class=\"label\">Organisationer</span><section>8.1&nbsp;<span class=\"value\">ORG-0001</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Aarhus Universitet</span></section>\n            <section><span class=\"label\">Registreringsnummer</span><span class=\"text\">: </span><span class=\"value\">31119103</span></section>\n            <section><span class=\"label\">Postadresse</span><span class=\"text\">: </span><span class=\"value\">Nordre Ringgade 1</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Aarhus C</span></section>\n            <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">8000</span></section>\n            <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Østjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK042</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Danmark</span></section>\n            <section><span class=\"label\">Enhed</span><span class=\"text\">: </span><span class=\"value\">Ann Sophie Steffensen</span></section>\n            <section><span class=\"label\">E-mail</span><span class=\"text\">: </span><span class=\"value\">asst@au.dk</span></section>\n            <section><span class=\"label\">Telefon</span><span class=\"text\">: </span><span class=\"value\">23382421</span></section>\n            <section><span class=\"label\">Internetadresse</span><span class=\"text\">: </span><span class=\"value\">https://www.au.dk/</span></section>\n            <section><span class=\"label\">Denne organisations roller</span><span class=\"text\">:</span><section><span class=\"label\">Køber</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0002</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Klagenævnet for udbud</span></section>\n            <section><span class=\"label\">Registreringsnummer</span><span class=\"text\">: </span><span class=\"value\">37795526</span></section>\n            <section><span class=\"label\">Postadresse</span><span class=\"text\">: </span><span class=\"value\">Toldboden 2</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Viborg</span></section>\n            <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">8800</span></section>\n            <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Vestjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK041</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Danmark</span></section>\n            <section><span class=\"label\">Enhed</span><span class=\"text\">: </span><span class=\"value\">Klagenævnet for udbud</span></section>\n            <section><span class=\"label\">E-mail</span><span class=\"text\">: </span><span class=\"value\">klfu@naevneneshus.dk</span></section>\n            <section><span class=\"label\">Telefon</span><span class=\"text\">: </span><span class=\"value\">+45 72405708</span></section>\n            <section><span class=\"label\">Internetadresse</span><span class=\"text\">: </span><span class=\"value\">https://erhvervsstyrelsen.dk/klagenaevnet-for-udbud</span></section>\n            <section><span class=\"label\">Denne organisations roller</span><span class=\"text\">:</span><section><span class=\"label\">Organisation med ansvar for klager</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0003</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Konkurrence- og Forbrugerstyrelsen</span></section>\n            <section><span class=\"label\">Registreringsnummer</span><span class=\"text\">: </span><span class=\"value\">10294819</span></section>\n            <section><span class=\"label\">Postadresse</span><span class=\"text\">: </span><span class=\"value\">Carl Jacobsens Vej 35</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Valby</span></section>\n            <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">2500</span></section>\n            <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Byen København</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK011</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Danmark</span></section>\n            <section><span class=\"label\">Enhed</span><span class=\"text\">: </span><span class=\"value\">Konkurrence- og Forbrugerstyrelsen</span></section>\n            <section><span class=\"label\">E-mail</span><span class=\"text\">: </span><span class=\"value\">kfst@kfst.dk</span></section>\n            <section><span class=\"label\">Telefon</span><span class=\"text\">: </span><span class=\"value\">+45 41715000</span></section>\n            <section><span class=\"label\">Internetadresse</span><span class=\"text\">: </span><span class=\"value\">https://www.kfst.dk</span></section>\n            <section><span class=\"label\">Denne organisations roller</span><span class=\"text\">:</span><section><span class=\"label\">Organisation, der leverer yderligere oplysninger om klageprocedurerne</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0004</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Malvern Panalytical</span></section>\n            <section><span class=\"label\">Den økonomiske operatørs størrelse</span><span class=\"text\">: </span><span class=\"label\">Mikrovirksomhed, lille eller mellemstor virksomhed</span></section>\n            <section><span class=\"label\">Registreringsnummer</span><span class=\"text\">: </span><span class=\"value\">31756154</span></section>\n            <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Virum</span></section>\n            <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">2830</span></section>\n            <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Københavns omegn</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK012</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Danmark</span></section>\n            <section><span class=\"label\">Denne organisations roller</span><span class=\"text\">:</span><section><span class=\"label\">Tilbudsgiver</span></section>\n               <section><span class=\"label\">Vinder af disse delkontrakter</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0005</span><section><span class=\"label\">Officielt navn</span><span class=\"text\">: </span><span class=\"value\">Mercell Holding ASA</span></section>\n            <section><span class=\"label\">Registreringsnummer</span><span class=\"text\">: </span><span class=\"value\">980921565</span></section>\n            <section><span class=\"label\">Postadresse</span><span class=\"text\">: </span><span class=\"value\">Askekroken 11</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">By</span><span class=\"text\">: </span><span class=\"value\">Oslo</span></section>\n            <section><span class=\"label\">Postnummer</span><span class=\"text\">: </span><span class=\"value\">0277</span></section>\n            <section><span class=\"label\">Landsdel (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Oslo</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">NO081</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Land</span><span class=\"text\">: </span><span class=\"dynamic-label\">Norge</span></section>\n            <section><span class=\"label\">Enhed</span><span class=\"text\">: </span><span class=\"value\">eSender</span></section>\n            <section><span class=\"label\">E-mail</span><span class=\"text\">: </span><span class=\"value\">publication@mercell.com</span></section>\n            <section><span class=\"label\">Telefon</span><span class=\"text\">: </span><span class=\"value\">+47 21018800</span></section>\n            <section><span class=\"label\">Fax</span><span class=\"text\">: </span><span class=\"value\">+47 21018801</span></section>\n            <section><span class=\"label\">Internetadresse</span><span class=\"text\">: </span><span class=\"value\">http://mercell.com/</span></section>\n            <section><span class=\"label\">Denne organisations roller</span><span class=\"text\">:</span><section><span class=\"label\">TED eSender</span></section>\n            </section>\n         </section>\n      </section>\n      <section><span class=\"label\">Oplysninger om bekendtgørelsen</span><section><span class=\"label\">Bekendtgørelsens ID</span><span class=\"text\">: </span><span class=\"value\">3365250a-d1c3-459b-9595-6b676fc6188e</span><span class=\"text\"> </span><span class=\"text\">- </span><span class=\"value\">01</span></section>\n         <section><span class=\"label\">Formulartype</span><span class=\"text\">: </span><span class=\"dynamic-label\">Resultater</span></section>\n         <section><span class=\"label\">Bekendtgørelsestype</span><span class=\"text\">: </span><span class=\"dynamic-label\">Bekendtgørelse om indgåede kontrakter eller koncessionstildeling – standardordningen</span></section>\n         <section><span class=\"label\">Afsendelsesdato for bekendtgørelsen</span><span class=\"text\">: </span><span class=\"value\">27-11-2025</span><span class=\"text\"> </span><span class=\"value\">13:19 +00:00</span></section>\n         <section><span class=\"label\">Dato for afsendelse af bekendtgørelsen (eSender)</span><span class=\"text\">: </span><span class=\"value\">27-11-2025</span><span class=\"text\"> </span><span class=\"value\">14:05 +00:00</span></section>\n         <section><span class=\"label\">Bekendtgørelsens officielle sprog</span><span class=\"text\">: </span><span class=\"dynamic-label\">engelsk</span><span class=\"text\"> </span><span class=\"dynamic-label\"></span></section>\n         <section><span class=\"label\">Bekendtgørelsesnummer</span><span class=\"text\">: </span><span class=\"value\">00793279-2025</span></section>\n         <section><span class=\"label\">EUT-S-nummer</span><span class=\"text\">: </span><span class=\"value\">231/2025</span></section>\n         <section><span class=\"label\">Offentliggørelsesdato</span><span class=\"text\">: </span><span class=\"value\">01-12-2025</span></section>\n      </section>\n   </body>\n</html>","htmlEN":"<!DOCTYPE HTML>\n<html xmlns:cac=\"urn:oasis:names:specification:ubl:schema:xsd:CommonAggregateComponents-2\" xmlns:cbc=\"urn:oasis:names:specification:ubl:schema:xsd:CommonBasicComponents-2\" xmlns:efac=\"http://data.europa.eu/p27/eforms-ubl-extension-aggregate-components/1\" xmlns:efbc=\"http://data.europa.eu/p27/eforms-ubl-extension-basic-components/1\" xmlns:efext=\"http://data.europa.eu/p27/eforms-ubl-extensions/1\" xmlns:ext=\"urn:oasis:names:specification:ubl:schema:xsd:CommonExtensionComponents-2\" xmlns:fn=\"http://www.w3.org/2005/xpath-functions\" xmlns:xs=\"http://www.w3.org/2001/XMLSchema\">\n   <body>\n      <section>1&nbsp;<span class=\"label\">Buyer</span><section>1.1&nbsp;<span class=\"label\">Buyer</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Aarhus Universitet</span></section>\n            <section><span class=\"label\">Legal type of the buyer</span><span class=\"text\">: </span><span class=\"dynamic-label\">Body governed by public law</span></section>\n            <section><span class=\"label\">Activity of the contracting authority</span><span class=\"text\">: </span><span class=\"dynamic-label\">Education</span></section>\n         </section>\n      </section>\n      <section>2&nbsp;<span class=\"label\">Procedure</span><section>2.1&nbsp;<span class=\"label\">Procedure</span><section><span class=\"label\">Title</span><span class=\"text\">: </span><span class=\"value\">Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction,\n                  and related catalytic and materials processes</span></section>\n            <section><span class=\"label\">Description</span><span class=\"text\">: </span><span class=\"value\">The Department of Chemistry and the CORC Center at Aarhus University has a strong\n                  international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms,\n                  where accurate thermodynamic and kinetic measurements are vital for scientific advancement.\n                  Modern global research places increasing emphasis on designing materials and catalysts\n                  capable of efficiently capturing and converting CO₂, making it critical to resolve\n                  minute changes in heat flow and to maintain precise experimental control. To optimize\n                  and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ\n                  advanced isothermal nanocalorimetry. This technique provides detailed insight into\n                  the thermodynamics of CO₂ adsorption and binding to functional materials, including\n                  metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements\n                  for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst\n                  surfaces; these steps often involve subtle and overlapping thermal events. Furthermore,\n                  the study of proton-coupled electron transfer processes and intermediate formation\n                  in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel,\n                  multi-channel screening, which enables comparative analysis of molecular and heterogeneous\n                  catalyst candidates. Quantification of transient heat signatures, as demonstrated\n                  in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial\n                  for differentiating reaction pathways and evaluating catalytic efficiency.<br/>In\n                  summary, an instrument capable of nanocalorimetric detection, specifically at the\n                  level of less than 100 nW, is essential to reliably detect the faint heat signals\n                  accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must\n                  be supported by ultra-high thermal stability, on the order of one millionth of a degree\n                  Celsius, over the extended time frames required for the study of long-lived reactions.\n                  It is equally critical to enable comparisons among samples by analyzing them simultaneously.\n                  Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                  that is why the instrument should be equipped with an automated liquid and gas sample\n                  handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                  at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                  real catalytic conditions.<br/>No other commercially available microcalorimeter offers\n                  the unique combination of nanowatt sensitivity, modular throughput through multi-channel\n                  parallel operation, broad temperature range, and configurational flexibility that\n                  is found in the TAM IV.</span></section>\n            <section><span class=\"label\">Procedure identifier</span><span class=\"text\">: </span><span class=\"value\">a669543b-e939-4ac8-ba64-89fb1e5b9509</span></section>\n            <section><span class=\"label\">Internal identifier</span><span class=\"text\">: </span><span class=\"value\">f7178430-8fda-4e19-a5d9-1effa4556eae</span></section>\n            <section><span class=\"label\">Type of procedure</span><span class=\"text\">: </span><span class=\"dynamic-label\">Negotiated without prior call for competition</span></section>\n            <section>2.1.1&nbsp;<span class=\"label\">Purpose</span><section><span class=\"label\">Main nature of the contract</span><span class=\"text\">: </span><span class=\"dynamic-label\">Supplies</span></section>\n               <section><span class=\"label\">Main classification</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">cpv</span><span class=\"text\">): </span><span class=\"value\">38000000</span><span class=\"text\"> </span><span class=\"dynamic-label\">Laboratory, optical and precision equipments (excl. glasses)</span></section>\n            </section>\n            <section>2.1.2&nbsp;<span class=\"label\">Place of performance</span><section><span class=\"label\">Postal address</span><span class=\"text\">: </span><span class=\"value\">Gustav Wieds Vej 10C, building 3130</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n               <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Aarhus C</span></section>\n               <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">8000</span></section>\n               <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Østjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK042</span><span class=\"text\">)</span></section>\n               <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Denmark</span></section>\n            </section>\n            <section>2.1.4&nbsp;<span class=\"label\">General information</span><section><span class=\"label\">Legal basis</span><span class=\"text\">:</span></section>\n               <section><span class=\"dynamic-label\">Directive 2014/24/EU</span></section>\n            </section>\n         </section>\n      </section>\n      <section>5&nbsp;<span class=\"label\">Lot</span><section>5.1&nbsp;<span class=\"label\">Lot technical ID</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span><section><span class=\"label\">Title</span><span class=\"text\">: </span><span class=\"value\">Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction,\n                  and related catalytic and materials processes</span></section>\n            <section><span class=\"label\">Description</span><span class=\"text\">: </span><span class=\"value\">The Department of Chemistry and the CORC Center at Aarhus University has a strong\n                  international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms,\n                  where accurate thermodynamic and kinetic measurements are vital for scientific advancement.\n                  Modern global research places increasing emphasis on designing materials and catalysts\n                  capable of efficiently capturing and converting CO₂, making it critical to resolve\n                  minute changes in heat flow and to maintain precise experimental control. To optimize\n                  and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ\n                  advanced isothermal nanocalorimetry. This technique provides detailed insight into\n                  the thermodynamics of CO₂ adsorption and binding to functional materials, including\n                  metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements\n                  for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst\n                  surfaces; these steps often involve subtle and overlapping thermal events. Furthermore,\n                  the study of proton-coupled electron transfer processes and intermediate formation\n                  in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel,\n                  multi-channel screening, which enables comparative analysis of molecular and heterogeneous\n                  catalyst candidates. Quantification of transient heat signatures, as demonstrated\n                  in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial\n                  for differentiating reaction pathways and evaluating catalytic efficiency.<br/>In\n                  summary, an instrument capable of nanocalorimetric detection, specifically at the\n                  level of less than 100 nW, is essential to reliably detect the faint heat signals\n                  accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must\n                  be supported by ultra-high thermal stability, on the order of one millionth of a degree\n                  Celsius, over the extended time frames required for the study of long-lived reactions.\n                  It is equally critical to enable comparisons among samples by analyzing them simultaneously.\n                  Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                  that is why the instrument should be equipped with an automated liquid and gas sample\n                  handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                  at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                  real catalytic conditions.<br/>No other commercially available microcalorimeter offers\n                  the unique combination of nanowatt sensitivity, modular throughput through multi-channel\n                  parallel operation, broad temperature range, and configurational flexibility that\n                  is found in the TAM IV.</span></section>\n            <section><span class=\"label\">Internal identifier</span><span class=\"text\">: </span><span class=\"value\">1299b8a6-4c1d-4089-a683-4e8aaa998fee</span></section>\n            <section>5.1.1&nbsp;<span class=\"label\">Purpose</span><section><span class=\"label\">Main nature of the contract</span><span class=\"text\">: </span><span class=\"dynamic-label\">Supplies</span></section>\n               <section><span class=\"label\">Main classification</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">cpv</span><span class=\"text\">): </span><span class=\"value\">38000000</span><span class=\"text\"> </span><span class=\"dynamic-label\">Laboratory, optical and precision equipments (excl. glasses)</span></section>\n            </section>\n            <section>5.1.2&nbsp;<span class=\"label\">Place of performance</span><section><span class=\"label\">Postal address</span><span class=\"text\">: </span><span class=\"value\">Gustav Wieds Vej 10C, building 3130</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n               <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Aarhus C</span></section>\n               <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">8000</span></section>\n               <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Østjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK042</span><span class=\"text\">)</span></section>\n               <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Denmark</span></section>\n               <section><span class=\"label\">Additional information</span><span class=\"text\">: </span><span class=\"value\"></span></section>\n            </section>\n            <section>5.1.6&nbsp;<span class=\"label\">General information</span><section><span class=\"dynamic-label\">Procurement Project not financed with EU Funds.</span></section>\n               <section><span class=\"label\">The procurement is covered by the Government Procurement Agreement (GPA)</span><span class=\"text\">: </span><span class=\"label\">yes</span></section>\n            </section>\n            <section>5.1.10&nbsp;<span class=\"label\">Award criteria</span><section><span class=\"label\">Criterion</span><span class=\"text\">:</span><section><span class=\"label\">Type</span><span class=\"text\">: </span><span class=\"dynamic-label\">Quality</span></section>\n                  <section><span class=\"label\">Name</span><span class=\"text\">: </span><span class=\"value\">Quality</span></section>\n                  <section><span class=\"label\">Description</span><span class=\"text\">: </span><span class=\"value\">An instrument capable of nanocalorimetric detection, specifically at the level of\n                        less than 100 nW, is essential to reliably detect the faint heat signals accompanying\n                        CO₂ binding, reduction, and catalyst activation. Such sensitivity must be supported\n                        by ultra-high thermal stability, on the order of one millionth of a degree Celsius,\n                        over the extended time frames required for the study of long-lived reactions. It is\n                        equally critical to enable comparisons among samples by analyzing them simultaneously.\n                        Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                        that is why the instrument should be equipped with an automated liquid and gas sample\n                        handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                        at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                        real catalytic conditions.</span></section>\n                  <section><span class=\"label\">Category of award threshold criterion</span><span class=\"text\">: </span><span class=\"dynamic-label\">Weight (percentage, exact)</span><section><span class=\"label\">Award criterion number</span><span class=\"text\">: </span><span class=\"value\">100</span></section>\n                  </section>\n               </section>\n            </section>\n            <section>5.1.15&nbsp;<span class=\"label\">Techniques</span><section><span class=\"label\">Framework agreement</span><span class=\"text\">:</span><section><span class=\"dynamic-label\">No framework agreement</span></section>\n               </section>\n               <section><span class=\"label\">Information about the dynamic purchasing system</span><span class=\"text\">:</span><section><span class=\"dynamic-label\">No dynamic purchase system</span></section>\n               </section>\n            </section>\n            <section>5.1.16&nbsp;<span class=\"label\">Further information, mediation and review</span><section><span class=\"label\">Review organisation</span><span class=\"text\">: </span><span class=\"value\">Klagenævnet for udbud</span><span class=\"value\"></span></section>\n               <section><span class=\"label\">Information about review deadlines</span><span class=\"text\">: </span><span class=\"value\">Following the notification, a standstill period of 10 calendar days will be held in\n                     accordance to paragraph 3 of Act No. 593 of 2 June 2016 on the Danish Act on the Complaints\n                     Board for public Procurement. This implies that the Contracting Authority cannot sign\n                     the Contract with the winning Tenderer before the standstill period has expired.<br/>In\n                     case of complaints about tenders or decisions, e.g. award of contracts covered by\n                     Section II or III in the Danish Public Procurement Act must be submitted to the Complaints\n                     Board for Public Procurement (Klagenævnet for udbud) within 45 calendar days from\n                     the day after the contractor published a notice in the Official Journal on the conclusion\n                     of a contract. At the latest concurrently with submission of an appeal to the Complaints\n                     Board for Public Procurement, the complainant must inform the Contracting Authority\n                     of the alleged infringement, and whether the appeal is to be referred to the board.</span></section>\n               <section><span class=\"label\">Organisation providing more information on the review procedures</span><span class=\"text\">: </span><span class=\"value\">Konkurrence- og Forbrugerstyrelsen</span><span class=\"value\"></span></section>\n            </section>\n         </section>\n      </section>\n      <section>6&nbsp;<span class=\"label\">Results</span><section><span class=\"label\">Value of all contracts awarded in this notice</span><span class=\"text\">: </span><span class=\"value\">1.691.760</span><span class=\"text\"> </span><span class=\"label\">Danish krone</span></section>\n         <section><span class=\"label\">Direct award</span><span class=\"text\">:</span><section><span class=\"label\">Justification for direct award</span><span class=\"text\">: </span><span class=\"dynamic-label\">The contract can be provided only by a particular economic operator because of an absence of competition for technical reasons</span></section>\n            <section><span class=\"label\">Other justification</span><span class=\"text\">: </span><span class=\"value\">The Department of Chemistry and the CORC Center at Aarhus University has a strong\n                  international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms,\n                  where accurate thermodynamic and kinetic measurements are vital for scientific advancement.\n                  Modern global research places increasing emphasis on designing materials and catalysts\n                  capable of efficiently capturing and converting CO₂, making it critical to resolve\n                  minute changes in heat flow and to maintain precise experimental control. To optimize\n                  and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ\n                  advanced isothermal nanocalorimetry. This technique provides detailed insight into\n                  the thermodynamics of CO₂ adsorption and binding to functional materials, including\n                  metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements\n                  for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst\n                  surfaces; these steps often involve subtle and overlapping thermal events. Furthermore,\n                  the study of proton-coupled electron transfer processes and intermediate formation\n                  in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel,\n                  multi-channel screening, which enables comparative analysis of molecular and heterogeneous\n                  catalyst candidates. Quantification of transient heat signatures, as demonstrated\n                  in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial\n                  for differentiating reaction pathways and evaluating catalytic efficiency.<br/>In\n                  summary, an instrument capable of nanocalorimetric detection, specifically at the\n                  level of less than 100 nW, is essential to reliably detect the faint heat signals\n                  accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must\n                  be supported by ultra-high thermal stability, on the order of one millionth of a degree\n                  Celsius, over the extended time frames required for the study of long-lived reactions.\n                  It is equally critical to enable comparisons among samples by analyzing them simultaneously.\n                  Finally, the ability to conduct precise titration and multi-phase experiments is fundamental,\n                  that is why the instrument should be equipped with an automated liquid and gas sample\n                  handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes\n                  at defined intervals, which is indispensable for mechanistic, stepwise studies under\n                  real catalytic conditions.<br/>No other commercially available microcalorimeter offers\n                  the unique combination of nanowatt sensitivity, modular throughput through multi-channel\n                  parallel operation, broad temperature range, and configurational flexibility that\n                  is found in the TAM IV.</span></section>\n         </section>\n         <section>6.1&nbsp;<span class=\"label\">Result lot ldentifier</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span><section><span class=\"dynamic-label\">At least one winner was chosen.</span></section>\n            <section>6.1.2&nbsp;<span class=\"label\">Information about winners</span><section><span class=\"label\">Winner</span><span class=\"text\">:</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Malvern Panalytical</span></section>\n                  <section><span class=\"label\">Tender</span><span class=\"text\">:</span></section>\n                  <section><span class=\"label\">Tender identifier</span><span class=\"text\">: </span><span class=\"value\">1 microcalorimeter system for advanced research on CO₂ adsorption, reduction, and\n                        related catalytic and materials processes</span></section>\n                  <section><span class=\"label\">Identifier of lot or group of lots</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span></section>\n                  <section><span class=\"label\">Value of the tender</span><span class=\"text\">: </span><span class=\"value\">1.691.760</span><span class=\"text\"> </span><span class=\"dynamic-label\">Danish krone</span></section>\n                  <section><span class=\"label\">Subcontracting</span><span class=\"text\">: </span><span class=\"dynamic-label\">No</span></section>\n                  <section><span class=\"label\">Contract information</span><span class=\"text\">:</span><section><span class=\"label\">Identifier of the contract</span><span class=\"text\">: </span><span class=\"value\">Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction,\n                           and related catalytic and materials processes - Malvern Panalytical</span></section>\n                     <section><span class=\"label\">Date of the conclusion of the contract</span><span class=\"text\">: </span><span class=\"value\">27-11-2025</span></section>\n                  </section>\n               </section>\n            </section>\n            <section>6.1.4&nbsp;<span class=\"label\">Statistical information</span><section><span class=\"label\">Summary of the review requests the buyer received</span><span class=\"text\">:</span><section><span class=\"label\">Number of complainants</span><span class=\"text\">: </span><span class=\"value\">0</span></section>\n               </section>\n               <section><span class=\"label\">Received tenders or requests to participate</span><span class=\"text\">:</span><section><span class=\"label\">Type of received submissions</span><span class=\"text\">: </span><span class=\"dynamic-label\">Tenders</span><section><span class=\"label\">Number of tenders or requests to participate received</span><span class=\"text\">: </span><span class=\"value\">1</span></section>\n                  </section>\n               </section>\n            </section>\n         </section>\n      </section>\n      <section>8&nbsp;<span class=\"label\">Organisations</span><section>8.1&nbsp;<span class=\"value\">ORG-0001</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Aarhus Universitet</span></section>\n            <section><span class=\"label\">Registration number</span><span class=\"text\">: </span><span class=\"value\">31119103</span></section>\n            <section><span class=\"label\">Postal address</span><span class=\"text\">: </span><span class=\"value\">Nordre Ringgade 1</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Aarhus C</span></section>\n            <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">8000</span></section>\n            <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Østjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK042</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Denmark</span></section>\n            <section><span class=\"label\">Contact point</span><span class=\"text\">: </span><span class=\"value\">Ann Sophie Steffensen</span></section>\n            <section><span class=\"label\">Email</span><span class=\"text\">: </span><span class=\"value\">asst@au.dk</span></section>\n            <section><span class=\"label\">Telephone</span><span class=\"text\">: </span><span class=\"value\">23382421</span></section>\n            <section><span class=\"label\">Internet address</span><span class=\"text\">: </span><span class=\"value\">https://www.au.dk/</span></section>\n            <section><span class=\"label\">Roles of this organisation</span><span class=\"text\">:</span><section><span class=\"label\">Buyer</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0002</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Klagenævnet for udbud</span></section>\n            <section><span class=\"label\">Registration number</span><span class=\"text\">: </span><span class=\"value\">37795526</span></section>\n            <section><span class=\"label\">Postal address</span><span class=\"text\">: </span><span class=\"value\">Toldboden 2</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Viborg</span></section>\n            <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">8800</span></section>\n            <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Vestjylland</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK041</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Denmark</span></section>\n            <section><span class=\"label\">Contact point</span><span class=\"text\">: </span><span class=\"value\">Klagenævnet for udbud</span></section>\n            <section><span class=\"label\">Email</span><span class=\"text\">: </span><span class=\"value\">klfu@naevneneshus.dk</span></section>\n            <section><span class=\"label\">Telephone</span><span class=\"text\">: </span><span class=\"value\">+45 72405708</span></section>\n            <section><span class=\"label\">Internet address</span><span class=\"text\">: </span><span class=\"value\">https://erhvervsstyrelsen.dk/klagenaevnet-for-udbud</span></section>\n            <section><span class=\"label\">Roles of this organisation</span><span class=\"text\">:</span><section><span class=\"label\">Review organisation</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0003</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Konkurrence- og Forbrugerstyrelsen</span></section>\n            <section><span class=\"label\">Registration number</span><span class=\"text\">: </span><span class=\"value\">10294819</span></section>\n            <section><span class=\"label\">Postal address</span><span class=\"text\">: </span><span class=\"value\">Carl Jacobsens Vej 35</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Valby</span></section>\n            <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">2500</span></section>\n            <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Byen København</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK011</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Denmark</span></section>\n            <section><span class=\"label\">Contact point</span><span class=\"text\">: </span><span class=\"value\">Konkurrence- og Forbrugerstyrelsen</span></section>\n            <section><span class=\"label\">Email</span><span class=\"text\">: </span><span class=\"value\">kfst@kfst.dk</span></section>\n            <section><span class=\"label\">Telephone</span><span class=\"text\">: </span><span class=\"value\">+45 41715000</span></section>\n            <section><span class=\"label\">Internet address</span><span class=\"text\">: </span><span class=\"value\">https://www.kfst.dk</span></section>\n            <section><span class=\"label\">Roles of this organisation</span><span class=\"text\">:</span><section><span class=\"label\">Organisation providing more information on the review procedures</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0004</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Malvern Panalytical</span></section>\n            <section><span class=\"label\">Size of the economic operator</span><span class=\"text\">: </span><span class=\"label\">Micro, small, or medium</span></section>\n            <section><span class=\"label\">Registration number</span><span class=\"text\">: </span><span class=\"value\">31756154</span></section>\n            <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Virum</span></section>\n            <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">2830</span></section>\n            <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Københavns omegn</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">DK012</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Denmark</span></section>\n            <section><span class=\"label\">Roles of this organisation</span><span class=\"text\">:</span><section><span class=\"label\">Tenderer</span></section>\n               <section><span class=\"label\">Winner of these lots</span><span class=\"text\">: </span><span class=\"value\">LOT-0000</span></section>\n            </section>\n         </section>\n         <section>8.1&nbsp;<span class=\"value\">ORG-0005</span><section><span class=\"label\">Official name</span><span class=\"text\">: </span><span class=\"value\">Mercell Holding ASA</span></section>\n            <section><span class=\"label\">Registration number</span><span class=\"text\">: </span><span class=\"value\">980921565</span></section>\n            <section><span class=\"label\">Postal address</span><span class=\"text\">: </span><span class=\"value\">Askekroken 11</span><span class=\"text\"> </span><span class=\"value\"></span><span class=\"text\"> </span><span class=\"value\"></span></section>\n            <section><span class=\"label\">Town</span><span class=\"text\">: </span><span class=\"value\">Oslo</span></section>\n            <section><span class=\"label\">Postcode</span><span class=\"text\">: </span><span class=\"value\">0277</span></section>\n            <section><span class=\"label\">Country subdivision (NUTS)</span><span class=\"text\">: </span><span class=\"dynamic-label\">Oslo</span><span class=\"text\"> </span><span class=\"text\">(</span><span class=\"value\">NO081</span><span class=\"text\">)</span></section>\n            <section><span class=\"label\">Country</span><span class=\"text\">: </span><span class=\"dynamic-label\">Norway</span></section>\n            <section><span class=\"label\">Contact point</span><span class=\"text\">: </span><span class=\"value\">eSender</span></section>\n            <section><span class=\"label\">Email</span><span class=\"text\">: </span><span class=\"value\">publication@mercell.com</span></section>\n            <section><span class=\"label\">Telephone</span><span class=\"text\">: </span><span class=\"value\">+47 21018800</span></section>\n            <section><span class=\"label\">Fax</span><span class=\"text\">: </span><span class=\"value\">+47 21018801</span></section>\n            <section><span class=\"label\">Internet address</span><span class=\"text\">: </span><span class=\"value\">http://mercell.com/</span></section>\n            <section><span class=\"label\">Roles of this organisation</span><span class=\"text\">:</span><section><span class=\"label\">TED eSender</span></section>\n            </section>\n         </section>\n      </section>\n      <section><span class=\"label\">Notice information</span><section><span class=\"label\">Notice identifier/version</span><span class=\"text\">: </span><span class=\"value\">3365250a-d1c3-459b-9595-6b676fc6188e</span><span class=\"text\"> </span><span class=\"text\">- </span><span class=\"value\">01</span></section>\n         <section><span class=\"label\">Form type</span><span class=\"text\">: </span><span class=\"dynamic-label\">Result</span></section>\n         <section><span class=\"label\">Notice type</span><span class=\"text\">: </span><span class=\"dynamic-label\">Contract or concession award notice – standard regime</span></section>\n         <section><span class=\"label\">Notice dispatch date</span><span class=\"text\">: </span><span class=\"value\">27-11-2025</span><span class=\"text\"> </span><span class=\"value\">13:19 +00:00</span></section>\n         <section><span class=\"label\">Notice dispatch date (eSender)</span><span class=\"text\">: </span><span class=\"value\">27-11-2025</span><span class=\"text\"> </span><span class=\"value\">14:05 +00:00</span></section>\n         <section><span class=\"label\">Languages in which this notice is officially available</span><span class=\"text\">: </span><span class=\"dynamic-label\">English</span><span class=\"text\"> </span><span class=\"dynamic-label\"></span></section>\n         <section><span class=\"label\">Notice publication number</span><span class=\"text\">: </span><span class=\"value\">00793279-2025</span></section>\n         <section><span class=\"label\">OJ S issue number</span><span class=\"text\">: </span><span class=\"value\">231/2025</span></section>\n         <section><span class=\"label\">Publication date</span><span class=\"text\">: </span><span class=\"value\">01-12-2025</span></section>\n      </section>\n   </body>\n</html>","opsummeringDA":{"card":{"titel":"Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction, and related catalytic and materials processes","ordregiver":"Aarhus Universitet","ordregiverId":"ORG-31119103","ordregiverIdDatavasket":"31119103","publiceringsdato":"2025-12-01+01:00","cpvKode":"38000000","cpvTitel":"Laboratorieudstyr, optisk udstyr og præcisionsudstyr (ikke briller)","formulartype":"Resultater","formulartypeKode":"result","tidsfrister":[],"alleOrdregivere":["Aarhus Universitet"],"beskrivelse":"The Department of Chemistry and the CORC Center at Aarhus University has a strong international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms, where accurate thermodynamic and kinetic measurements are vital for scientific advancement. Modern global research places increasing emphasis on designing materials and catalysts capable of efficiently capturing and converting CO₂, making it critical to resolve minute changes in heat flow and to maintain precise experimental control. To optimize and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ advanced isothermal nanocalorimetry. This technique provides detailed insight into the thermodynamics of CO₂ adsorption and binding to functional materials, including metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst surfaces; these steps often involve subtle and overlapping thermal events. Furthermore, the study of proton-coupled electron transfer processes and intermediate formation in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel, multi-channel screening, which enables comparative analysis of molecular and heterogeneous catalyst candidates. Quantification of transient heat signatures, as demonstrated in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial for differentiating reaction pathways and evaluating catalytic efficiency.\nIn summary, an instrument capable of nanocalorimetric detection, specifically at the level of less than 100 nW, is essential to reliably detect the faint heat signals accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must be supported by ultra-high thermal stability, on the order of one millionth of a degree Celsius, over the extended time frames required for the study of long-lived reactions. It is equally critical to enable comparisons among samples by analyzing them simultaneously. Finally, the ability to conduct precise titration and multi-phase experiments is fundamental, that is why the instrument should be equipped with an automated liquid and gas sample handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes at defined intervals, which is indispensable for mechanistic, stepwise studies under real catalytic conditions.\nNo other commercially available microcalorimeter offers the unique combination of nanowatt sensitivity, modular throughput through multi-channel parallel operation, broad temperature range, and configurational flexibility that is found in the TAM IV.","bkSubTypeKode":"29","bkSubType":"Bekendtgørelse om indgåede kontrakter – det generelle direktiv, standardordningen","erAendring":false},"indholdsType":"HENTET_FRA_TED","sekundaereOrdregivere":[],"udforelsesstedNutsCode":["DK042"],"udforelsesstedSubLand":["Østjylland"],"udforelsesstedLand":["Danmark"],"udforelsesstedBy":["Aarhus C"],"tilbudsfrister":[],"intressentfrister":[],"deltagelsefrister":[],"svarfrister":[],"antalParts":0,"antalLots":1,"udbudsDokumenter":[]},"opsummeringEN":{"card":{"titel":"Purchase of 1 microcalorimeter system for advanced research on CO₂ adsorption, reduction, and related catalytic and materials processes","ordregiver":"Aarhus Universitet","ordregiverId":"ORG-31119103","ordregiverIdDatavasket":"31119103","publiceringsdato":"2025-12-01+01:00","cpvKode":"38000000","cpvTitel":"Laboratory, optical and precision equipments (excl. glasses)","formulartype":"Result","formulartypeKode":"result","tidsfrister":[],"alleOrdregivere":["Aarhus Universitet"],"beskrivelse":"The Department of Chemistry and the CORC Center at Aarhus University has a strong international profile in the field of CO₂ adsorption, catalysis, and reduction mechanisms, where accurate thermodynamic and kinetic measurements are vital for scientific advancement. Modern global research places increasing emphasis on designing materials and catalysts capable of efficiently capturing and converting CO₂, making it critical to resolve minute changes in heat flow and to maintain precise experimental control. To optimize and advance CO₂ capture, storage, and catalytic conversion, it is essential to employ advanced isothermal nanocalorimetry. This technique provides detailed insight into the thermodynamics of CO₂ adsorption and binding to functional materials, including metal-organic frameworks and hybrid catalysts. It also enables precise enthalpy measurements for individual mechanistic steps in CO₂ electroreduction on metal or molecular catalyst surfaces; these steps often involve subtle and overlapping thermal events. Furthermore, the study of proton-coupled electron transfer processes and intermediate formation in electrochemical CO₂ reduction benefits greatly from the ability to conduct parallel, multi-channel screening, which enables comparative analysis of molecular and heterogeneous catalyst candidates. Quantification of transient heat signatures, as demonstrated in recent studies on CO₂ chemisorption and dynamic gas-solid interactions, is crucial for differentiating reaction pathways and evaluating catalytic efficiency.\nIn summary, an instrument capable of nanocalorimetric detection, specifically at the level of less than 100 nW, is essential to reliably detect the faint heat signals accompanying CO₂ binding, reduction, and catalyst activation. Such sensitivity must be supported by ultra-high thermal stability, on the order of one millionth of a degree Celsius, over the extended time frames required for the study of long-lived reactions. It is equally critical to enable comparisons among samples by analyzing them simultaneously. Finally, the ability to conduct precise titration and multi-phase experiments is fundamental, that is why the instrument should be equipped with an automated liquid and gas sample handling to allow for the controlled addition of CO₂, co-reactants, or electrolytes at defined intervals, which is indispensable for mechanistic, stepwise studies under real catalytic conditions.\nNo other commercially available microcalorimeter offers the unique combination of nanowatt sensitivity, modular throughput through multi-channel parallel operation, broad temperature range, and configurational flexibility that is found in the TAM IV.","bkSubTypeKode":"29","bkSubType":"Contract award notice – general directive, standard regime","erAendring":false},"indholdsType":"HENTET_FRA_TED","sekundaereOrdregivere":[],"udforelsesstedNutsCode":["DK042"],"udforelsesstedSubLand":["Østjylland"],"udforelsesstedLand":["Denmark"],"udforelsesstedBy":["Aarhus C"],"tilbudsfrister":[],"intressentfrister":[],"deltagelsefrister":[],"svarfrister":[],"antalParts":0,"antalLots":1,"udbudsDokumenter":[]}}