Electronic Resource
Carbon monoxide separation: past, present and future
العنوان: | Carbon monoxide separation: past, present and future |
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المؤلفون: | Ma, X. (author), Albertsma, J. (author), Gabriels, Dieke (author), Polat, S. (author), Snoeks, Casper (author), Kapteijn, F. (author), Eral, H.B. (author), Vermaas, D.A. (author), van der Veen, M.A. (author) |
بيانات النشر: | 2023 |
نوع الوثيقة: | Electronic Resource |
مستخلص: | Large amounts of carbon monoxide are produced by industrial processes such as biomass gasification and steel manufacturing. The CO present in vent streams is often burnt, this produces a large amount of CO2, e.g., oxidation of CO from metallurgic flue gasses is solely responsible for 2.7% of manmade CO2 emissions. The separation of N2 from CO due to their very similar physical properties is very challenging, meaning that numerous energy-intensive steps are required for CO separation, making the CO separation from many process streams uneconomical in spite of CO being a valuable building block in the production of major chemicals through C1 chemistry and the production of linear hydrocarbons by the Fischer-Tropsch process. The development of suitable processes for the separation of carbon monoxide has both industrial and environmental significance. Especially since CO is a main product of electrocatalytic CO2 reduction, an emerging sustainable technology to enable carbon neutrality. This technology also requires an energy-efficient separation process. Therefore, there is a great need to develop energy efficient CO separation processes adequate for these different process streams. As such the urgency of separating carbon monoxide is gaining greater recognition, with research in the field becoming more and more crucial. This review details the principles on which CO separation is based and provides an overview of currently commercialised CO separation processes and their limitations. Adsorption is identified as a technology with the potential for CO separation with high selectivity and energy efficiency. We review the research efforts, mainly seen in the last decades, in developing new materials for CO separation via ad/bsorption and membrane technology. We have geared our review to both traditional CO sources and emerging CO sources, including CO production from CO2 conversion. To that end, a variety of emergin ChemE/Catalysis Engineering Complex Fluid Processing ChemE/Transport Phenomena |
مصطلحات الفهرس: | review |
DOI: | 10.1039.d3cs00147d |
URL: | Chemical Society Reviews--0306-0012--6b03ab03-a33e-4301-b550-2ba5a5c37beb |
الاتاحة: | Open access content. Open access content © 2023 X. Ma, J. Albertsma, Dieke Gabriels, S. Polat, Casper Snoeks, F. Kapteijn, H.B. Eral, D.A. Vermaas, M.A. van der Veen, More Authors |
ملاحظة: | English |
Other Numbers: | NLTUD oai:tudelft.nl:uuid:4b2857f3-ca08-4c59-ab9e-f0f6d07659d9 doi:10.1039/d3cs00147d 1379328225 |
المصدر المساهم: | DELFT UNIV OF TECHNOL From OAIster®, provided by the OCLC Cooperative. |
رقم الانضمام: | edsoai.on1379328225 |
قاعدة البيانات: | OAIster |
DOI: | 10.1039.d3cs00147d |
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