2023
DOI: 10.1021/acs.energyfuels.3c02343
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Investigation on Integrated CO2 Capture and Conversion Performance of Ni-CaO Dual-Function Materials Pellets: Effect of Ni Loading and Optimization of Operating Parameters

Jun Yu,
Xinyu Wu,
Xusheng Liu
et al.

Abstract: Integrated CO2 capture and utilization (ICCU) has been regarded as an innovative strategy to realize large-scale CO2 emission reduction. The rational design of robust dual-function materials (DFMs) and the optimization of operating parameters are essential for the intensification of the ICCU process. In this work, Ni-CaO DFMs pellets with Ni loadings varying in the 1–20 wt % range are prepared for CO production via integrated CO2 capture and reversed water gas shift (RWGS) reaction. The effect of Ni loading on… Show more

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Cited by 4 publications
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“…This also prevents further sintering while eliminating the risk of MgO participation in the catalytic reaction by the coverage of high-energy step edges. 103 Similarly, calcium oxide (CaO) is an excellent support because it is low-cost 104,105 and has a high adsorption property toward CO 2 (∼786 g of CO 2 per kg of CaO (ref. 106 and 107)).…”
Section: Influencing Factors On the Catalytic Performance Of Ni-based...mentioning
confidence: 99%
“…This also prevents further sintering while eliminating the risk of MgO participation in the catalytic reaction by the coverage of high-energy step edges. 103 Similarly, calcium oxide (CaO) is an excellent support because it is low-cost 104,105 and has a high adsorption property toward CO 2 (∼786 g of CO 2 per kg of CaO (ref. 106 and 107)).…”
Section: Influencing Factors On the Catalytic Performance Of Ni-based...mentioning
confidence: 99%