
Influence of combination methods between Ru-catalyst and sorbent for ICCU-methanation
The distance between catalytic sites and sorbent is important for DFMs performance. The two functional
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The distance between catalytic sites and sorbent is important for DFMs performance. The two functional

Al2O3 and CeO2 had been used as Ru-catalyst support for ICCU-methanation, while CaO was used

Different alkali-promoted 1%Ru/Al2O3 dual functional materials were studied for integrated CO2 capture and methanation. Li

Different supports, including Al2O3, CeO2 (HAS and LSA), CZO, Na-X-Z, H-M-Z, SiC, SiO2 and ZrO2-Y,

Different sorbents had been investigated using Ru as catalytic sites for ICCU-methanation. As shown in

As ICCU-methanation happens at relatively lower temperatures compared to syngas production, medium-temperature sorbent should be

For ICCU research, most of the catalysts are not noble metal-based. However, Ru- and Rh-

The following sentences are copied from this reference (https://doi.org/10.1016/j.ccst.2022.100052) regarding the reaction pathways and intermediates

There is extensive research on carbon capture using adsorption. The reaction mechanism for CO2 capture

Carbon can be produced at the stage of CO2 utilisation. In particular, ICCU-DRM produces a

Ni is a commonly used catalyst for conventional dry reforming of methane. Due to the

ICCU-DRM have two key stages, including CO2 capture and the utilisation of the captured CO2
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