气凝胶
催化作用
甲醇
蒸汽重整
化学工程
材料科学
选择性
焦耳加热
制氢
氢
微型反应器
碳纤维
纳米技术
化学
复合材料
有机化学
复合数
工程类
作者
Guangkai Hu,Jiangyu Wang,Shuaiwei Wang,Xin Zhang,Bin Yu,Tao Huang,Meifang Zhu,Han‐Qing Yu
标识
DOI:10.1016/j.ijhydene.2023.07.185
摘要
Conventional Cu-based catalysts are affected by disadvantages, such as uneven temperature distribution, non-uniformity of mass and heat transfer, slow heating rate, and difficult replacement. To address these, a three-dimensional (3D) Zn-incorporated Joule-heated carbon nanofiber aerogel (CNFA)-supported Cu catalyst, was prepared via a facile one-pot method. The optimized catalyst, Cu10–Zn10/CNFA, exhibited an 83.1% conversion of CH3OH and 0.01% selectivity of CO at 250 °C. This improvement was due to Zn species acting as both an isolating agent, which inhibited thermal transmigration and aggregation of Cu-containing nanoparticles during heat treatment, and a combining agent, which provided numerous Cu–ZnO interfaces that enabled strong interactions between Cu and ZnO, which improved the activity and stability of the methanol steam reforming (MSR) reaction. This study reveals the feasibility of utilizing Joule-heated CNFA-supported catalysts for MSR reactions and opens a new avenue for designing and fabricating 3D-ordered porous catalysts related to this transformation.
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