Influence of reaction temperature on ICCU-DRM
Both sorbent regeneration and dry reforming methane are endothermic reactions. Therefore, a higher temperature would
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Articles are placed under four categories (levels). The search for articles can be narrowed down by selecting the right level of categories. For example, Cat 1 - CO2 adsorption - solid materials, click Done; Cat 2 - High-temperature CO2 adsorption, click Done; Cat 3 – CaO based, click Done; Then, click Cat 4 – Influence of CaO development, and click Search.
Both sorbent regeneration and dry reforming methane are endothermic reactions. Therefore, a higher temperature would
Integrated CO2 capture and utilisation for syngas production using methane as the reducing agent is
Dual functional materials containing BaO as the sorbent for CO2 capture and Ni as the
Using a simple Ni/CaO catalyst, the integration of CO2 capture and utilistion was carried out
Inspired by the CO2 hydrogenation to methanol in the presence of dimethylamine, integrated CO2 capture
Amine-based CO2 capture is one of the most mature carbon capture technologies. However, this technology
By adding CeO2 into Ni/CaO dual functional materials, the oxygen vacancies are largely enhanced, which
During the process of integrated CO2 capture and methanation, where the captured CO2 is converted
Chemical looping dry methane reforming provides a few advantages compared to conventional dry methane reforming.
Integrated CO2 capture and utilisation (ICCU), also known as integrated CO2 capture and conversion, or
Using integrated CO2 capture and utilisation concept to produce methane is one solution to recycle
ICCU concept has been used to produce syngas through the combination with dry ethane reforming
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