催化作用
选择性
水煤气变换反应
铜
离解(化学)
吸附
兴奋剂
无机化学
材料科学
化学
空间速度
化学工程
反应条件
钴
多相催化
协同催化
过渡金属
作者
Xiaoxiao Wei,Xuemin Cao,Yun Dai,Yujie Xie,Qingsen Qin,Li Li,Jinjia Liu,Jie Ren,Zhi Cao,Peng He
摘要
ABSTRACT A series of promoter‐doped Raney copper catalysts were prepared via a dealloying method, and their catalytic performance was evaluated in the reverse water–gas shift (RWGS) reaction. It was found that significantly improved CO 2 conversion and CO selectivity were achieved upon Mn doping over the catalyst. Mn existed in the form of a highly dispersed MnO phase, effectively regulating the electronic state and geometry of the active Cu component, thereby promoting the dissociation and adsorption of H 2 and the activation of CO 2 . Under optimized reaction conditions of a gas space velocity of 3000 mL·g cat −1 ·h −1 , a temperature of 600°C, and a Mn doping content of 5 wt%, the catalyst demonstrated a CO 2 conversion of 37.8% and a CO selectivity of 99.9%. Furthermore, after reaction at 600°C for 200 h, the catalyst retained high catalytic activity and structural stability, demonstrating promising prospects for practical application. This study provides crucial theoretical support and experimental evidence for designing highly efficient and stable Cu‐based catalysts for the RWGS reaction.
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