
Influence of Ce addition on ICCU-DRM using NiZr based dual functional materials
Ni-Ce-Zr dual functional materials were prepared by the sol-gel method and applied for ICCU-DRM. The addition of Ce enhanced the stability of the materials significantly

Ni-Ce-Zr dual functional materials were prepared by the sol-gel method and applied for ICCU-DRM. The addition of Ce enhanced the stability of the materials significantly

Ni-Ca based dual functional materials have two key components, including Ni catalytic sites and CaO adsorption sites. The distance between these two is important in

Ce was added into Ni/Ca@Zr dual functional materials for ICCU-DRM (https://doi.org/10.1016/j.apcatb.2020.119734). As shown in the below figure, NiCe/Ca@Zr showed higher yields of syngas and conversion

Kawi’s group investigated ICCU-DRM using Ni-Ca based dual functional materials, focusing on the use of Zr-based materials as the support and Ce as the promotor

Dual functional materials (DFMs) including Fe2O3/Al2O3 and CaCO3 were investigated for ICCU-DRM (https://doi.org/10.1021/acs.iecr.9b05783). The authors decoupled the experiments to understand reactions and mechanisms. Single methane

Ni loading significantly affect ICCU performance. In this case, ICCU-DRM was investigated. The authors discussed the performance from two key perspectives – 1) per unit

Ru-based DFMs are mostly used for the ICCC-Met process. The feasibility study of the Ru-based DFMs was first conducted and pioneered by Farrauto and coworkers

Ni is a commonly used catalyst for conventional dry reforming of methane. Due to the very limited amount of work available in ICCU-DRM, at the

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:
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