制氢
氢氧化物
催化作用
氢
水解
化学
合金
无机化学
反应速率
氢气储存
化学工程
有机化学
工程类
作者
Tong Zheng,Jingqi Zhang,Yang Tang,Pingyu Wan,Qipeng Yuan,Hanjun Hu,Frédéric Coulon,Qing Hu,Xiao Jin Yang
标识
DOI:10.1002/ceat.202000590
摘要
Abstract Hydrogen is becoming an important clean energy and layered doubled hydroxide (LDH) is of great interest for many applications, including water treatment, environmental remediation, and chemical catalysis. The production of high‐purity hydrogen and LDH by the hydrolysis of Mg‐Al alloys is reported. The effects of initial pH, reaction temperature, reaction time, and alloy's Mg/Al mass ratio on the rate of hydrogen generation and the purity of LDH are evaluated and the solid hydrolysis products are characterized by different techniques. The initial rate of hydrogen generation increases with decreasing initial pH and increasing reaction temperature and Mg/Al ratio while the purity of LDH increases with Mg/Al ratio, reaction temperature and time. This study may provide a new, green, and sustainable approach for storage of hydrogen and material for water treatment.
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