镧
催化作用
制氢
蒸汽重整
镍
化学工程
烧结
离解(化学)
氧气
金属
空间速度
材料科学
焦炭
氢
氧化镧
无机化学
兴奋剂
化学
冶金
有机化学
光电子学
工程类
选择性
作者
Zhourong Xiao,Chan Wu,Li Wang,Jisheng Xu,Qiancheng Zheng,Lun Pan,Ji‐Jun Zou,Xiangwen Zhang,Guozhu Li
标识
DOI:10.1016/j.apcatb.2021.119884
摘要
Abstract Stable and efficient hydrogen production has always been the focus of industry, and steam reforming of ethanol (SRE) is one of the most robust, renewable and cheap technologies. To develop excellent SRE catalysts highly resisting coke formation and metal sintering, La, Tb, and Zr have been doped as a third metal into Ni-CeO2 catalyst using a sol-gel method. The size and dispersion of Ni nanoparticles, surface oxygen vacancies and metal-supported interaction have been finely tuned, with which the catalytic performance is closely associated. La-doped ceria supported Ni (Ni-CeLa0.20) exhibited superior catalytic performance, which is ascribed to its large Ni active surface area, abundant oxygen vacancies and suitable metal-supported interaction. DFT calculations showed that the doping of La into Ni-CeO2 can promote the generation of oxygen vacancies and facilitate the dissociation of water. On Ni-CeLa0.20, complete conversion of ethanol and stable hydrogen production have been maintained in the 3000-min test. The coke deposition is only 0.48 mgc/gcat h at 600 °C under the GHSV of 55920 mL/gcat∙h.
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