
Influence of reaction temperature on ICCU-DRM
Both sorbent regeneration and dry reforming methane are endothermic reactions. Therefore, a higher temperature would promote both reactions for sorbent regeneration and syngas production. However,

Both sorbent regeneration and dry reforming methane are endothermic reactions. Therefore, a higher temperature would promote both reactions for sorbent regeneration and syngas production. However,

Integrated CO2 capture and utilisation for syngas production using methane as the reducing agent is promising, as methane is also a greenhouse gas. In addition,

Dual functional materials containing BaO as the sorbent for CO2 capture and Ni as the catalytic sites for CO2 utilisation were reported (https://doi.org/10.1016/j.jcou.2020.101201), while the

Using a simple Ni/CaO catalyst, the integration of CO2 capture and utilistion was carried out to produce a maximum of 10.4 mmol g-1 syngas (DOI:

SrO is normally regarded as infeasible for CO2 capture due to the requirement of high temperature for regeneration. Using CeO2 to modify SrO to enhance

Integrated CO2 capture and utilisation for syngas production using methane as the reducing agent are very promising for solving two greenhouse gases (methane and CO2).
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