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Carbon-confined Ni based catalyst by auto-reduction for low-temperature dry reforming of methane

Shen, Dongyang; Wang, Jie; Bai, Yue; Lyu, Shuai; Zhang, Yuhua; Li, Jinlin; Li, Lin*; Wang, Guanghui*
Science Citation Index Expanded
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摘要

Producing syngas from dry reforming of methane is fascinating but challenging because of coking and sintering. Here, carbonising Ni based catalysts by auto-reduction are fabricated and applied to low-temperature DRM reaction. The catalytic structure-function relationship including the effects of carbonising temperature on carbon structure is investigated and rendered in detail. Ultimately, the carbon-confined catalysts boost DRM reaction at a relatively low temperature of 600 degrees C and effectively convert greenhouse gases to syngas. The carbon layers obtained by carbonising metal-organic frameworks (MOFs) precursor act as a shell protecting fine Ni nanoparticles (NPs) from reaction-induced reshaping, agglomeration, and coking. This work not only identifies an energy-conserving process for the utilization of greenhouse gases, but also reveals the sintering and coking can be restricted by carbon confinement effect.

关键词

Carbon dioxide reforming of methane Carbonising Carbon layers Confinement effect