催化作用
镍
分解
多孔性
氨
空间速度
化学工程
材料科学
氢
制氢
基质(化学分析)
无机化学
化学
复合材料
冶金
有机化学
选择性
工程类
作者
Yingqiu Gu,Yinglan Ma,Zhouyang Long,Shuang Zhao,Ying Wang,Weichao Zhang
标识
DOI:10.1016/j.ijhydene.2020.11.003
摘要
Nickel based materials are the most potential catalysts for COx-free hydrogen production from ammonia decomposition. However, the facile synthesis of supported Ni-based catalysts with small size Ni particles, high porosity and good structural stability is still of great demand. In this work, uniform small-sized Ni particles supported into porous alumina matrix ([email protected]2O3) are synthesized by a simple one-pot method and used for ammonia decomposition. The Ni content is controlled from 5 at.% to 25 at.%. Especailly, the [email protected]2O3 catalyst shows the best catalytic performance. With a GHSV of 24,000 cm3gcat−1h−1, 93.9% NH3 conversion is achieved at 600 °C and nearly full conversion of NH3 is realized at 650 °C. The hydrogen formation rate of 25NiAl catalyst reaches 3.6 mmol gcat−1min−1 at 400 °C and 7.8 mmol gcat−1min−1 at 450 °C. The enhanced activity observed on [email protected]2O3 catalyst can be attributed to the structural characteristic that large amounts of uniform-sized small (7.2 ± 0.9 nm) Ni particles are highly dispersed into porous alumina matrix. The aggregation of active metallic Ni particles during the high temperature reaction can be effectively prevented by the porous alumina matrix due to the strong interaction between them, thus ensuring a good catalytic performance.
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