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雷尼镍作为高效氨硼烷水解制氢催化剂研究

杨天璇 武美霞 王俊丽 陈宁 唐昌强 李江 尚建鹏 郭永 李作鹏

燃料化学学报(中英文)2025,Vol.53Issue(4):555-564,中插1-中插2,12.
燃料化学学报(中英文)2025,Vol.53Issue(4):555-564,中插1-中插2,12.DOI:10.1016/S1872-5813(24)60492-5

雷尼镍作为高效氨硼烷水解制氢催化剂研究

Raney Ni as a high-performance catalyst for the hydrolysis of ammonia borane to produce hydrogen

杨天璇 1武美霞 1王俊丽 1陈宁 1唐昌强 1李江 1尚建鹏 1郭永 1李作鹏1

作者信息

  • 1. 山西大同大学化学与化工学院山西省清洁能源材料联合实验室,山西 大同 037009
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摘要

Abstract

Ammonia borane(AB)has received much attention as an environmentally friendly,non-toxic,room temperature stable hydrogen storage material with high hydrogen content of 19.6%.However,its hydrolysis for hydrogen production at room-temperature is kinetically slow and requires precious metal catalysts.In this work,it is found that the prepared Raney Ni W-r treated with high concentration of NaOH(6.25 mol/L)at 110 ℃ exhibited excellent catalytic performance for AB hydrolysis at room temperature.The Raney Ni W-r can promote the AB complete hydrolysis within 60 s under basic condition at small sized trials,even higher than that of the 20%Pt/C catalyst.Its apparent activation energy at room temperature is only 26.6 kJ/mol and the turnover frequency(TOF)value is as high as 51.42 min-1.Owing to its high density and magnetic properties,the catalyst is very easy for magnetic separation.Furthermore,possible mechanism of the hydrolytic reaction of AB based on experimental results is proposed.As a well-established industrial catalyst,Raney Ni has been prepared on a large scale at low cost.This study provides a promising pathway for the large-scale preparation of low-cost and recyclable catalysts for AB hydrolysis.

关键词

氨硼烷/水解/雷尼镍/产氢

Key words

ammonia borane/hydrolysis/Raney Ni/hydrogen production

分类

化学化工

引用本文复制引用

杨天璇,武美霞,王俊丽,陈宁,唐昌强,李江,尚建鹏,郭永,李作鹏..雷尼镍作为高效氨硼烷水解制氢催化剂研究[J].燃料化学学报(中英文),2025,53(4):555-564,中插1-中插2,12.

基金项目

The project was supported by the National Natural Science Foundation of China(21908135),Natural Science Foundation of Shanxi Datong University(2022K23),Graduate Research Innovation and Practice Innovation Projects of Shanxi Datong University(23CX31),Postgraduate Educational Reform and Research Program of Shanxi Datong University(23JG07). (21908135)

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