碱金属
氢化物
甲烷化
材料科学
甲烷
锂(药物)
无机化学
氢化锂
钾
金属
二氧化碳
化学
有机化学
离子键合
离子
内分泌学
医学
作者
Juan Zhao,Yujun Sheng,Yun‐Lei Teng,Bao‐Xia Dong
出处
期刊:Green Materials
[Thomas Telford Ltd.]
日期:2020-10-28
卷期号:9 (3): 120-130
标识
DOI:10.1680/jgrma.20.00029
摘要
This paper aims to investigate the influence of the grain size and the alkali metal hydride (AH, where A = lithium (Li), sodium (Na) or potassium (K))/carbon dioxide (CO 2 ) mole ratio on carbon dioxide reduction-conversion to methane (CH 4 ) through alkali metal hydrides at an intermediate temperature. The result of this investigation shows that the grain size and AH (A = Li, Na or K)/carbon dioxide mole ratio have a considerable effect on the methane mole percentage and output. Compared with the original sample, when the lithium or potassium hydride sample is milled for 2 h, the mole percentage and output of methane increase. When the time for which the lithium or potassium hydride sample is milled is increased from 2 to 48 h, the mole percentage and output of methane change very little. For the sodium hydride and carbon dioxide system, the grain size of the sample has little effect on the methane mole percentage and output. In brief, alkali metal hydride milled for 2 h is enough for the methanation reaction. In consideration of the AH/carbon dioxide mole ratio, the effects on different reaction systems are not consistent. Activated alkali metal hydrides can effectively convert carbon dioxide to methane under various AH/carbon dioxide mole ratios, and the higher the mole ratio of AH/carbon dioxide, the better the methanation of alkali metal hydride with carbon dioxide.
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