纳米反应器
二氧化碳重整
甲烷
催化作用
化学工程
壳体(结构)
化学
蛋黄
材料科学
纳米技术
合成气
有机化学
工程类
复合材料
食品科学
作者
Shuzhuang Sun,Yuanyuan Wang,Yikai Xu,Hongman Sun,Xiaotong Zhao,Yingrui Zhang,Xiaoxiao Yang,Xuan Bie,Mengna Wu,Chen Zhang,Yuan Zhu,Yongqing Xu,Hui Zhou,Chunfei Wu
标识
DOI:10.1016/j.apcatb.2024.123838
摘要
The emerging integrated CO2 capture and utilization (ICCU) potentially contributes to net zero emissions with low cost and high efficiency. The catalytic performance in ICCU process is highly restricted by the equilibriums of carbonate decomposition and dry reforming of methane (DRM). Here, we engineer a unique yolk-shell dual functional nanoreactor construction to improve the catalytic performance via confined catalysis. By tailoring the carbonates decomposition kinetics and confining the CO2 diffusion path, ∼92% CO2 conversion is achieved over (Ni/Ca)@Si and shows no distinct activity loss in 10 cycles at 650 °C. The formed Ca2SiO4 shells restrain the sintering of CaO yolks by acting as physical barriers, and stabilize the Ni particle size. It is also confirmed on in situ DRIFTS that the integrated DRM might occur via carbonyls, formates and CHO intermediates, in which formates species are highly dependent on Ni-carbonates interfaces.
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