煤炭工业甲烷制氢

IF 0.5 Q4 CHEMISTRY, MULTIDISCIPLINARY
Е. Matus, I. Ismagilov, E. Mikhaylova, Z. Ismagilov
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引用次数: 3

摘要

煤炭工业甲烷是一种化石原料,可以作为热电生产的能源载体,也是化工行业获取有价值产品的原料。为了保证煤矿的安全开采、合理的环境管理和遏制全球变暖,发展和改进煤炭工业甲烷的捕获和利用方法是很重要的。本文综述了煤炭工业甲烷和煤炭制氢的科学依据和有前景的技术。讨论了不同甲烷浓度和甲烷空气比的各类煤炭工业甲烷(通风空气甲烷- VAM、煤矿甲烷- CMM、废弃矿井甲烷- AMM、煤层气- CBM)的催化转化技术。介绍了几种高效制氢催化剂的研究结果。混合方法处理天然煤和煤炭工业甲烷的巨大潜力已被证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogen Production from Coal Industry Methane
Coal industry methane is a fossil raw material that can serve as an energy carrier for the production of heat and electricity, as well as a raw material for obtaining valuable products for the chemical industry. To ensure the safety of coal mining, rational environmental management and curbing global warming, it is important to develop and improve methods for capturing and utilizing methane from the coal industry. This review looks at the scientific basis and promising technologies for hydrogen production from coal industry methane and coal production. Technologies for catalytic conversion of all types of coal industry methane (Ventilation Air Methane – VAM, Coal Mine Methane – CMM, Abandoned Mine Methane – AMM, Coal-Bed Methane – CBM), differing in methane concentration and methane-to-air ratio, are discussed. The results of studies on the creation of a number of efficient catalysts for hydrogen production are presented. The great potential of hybrid methods of processing natural coal and coal industry methane has been demonstrated.
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来源期刊
Eurasian Chemico-Technological Journal
Eurasian Chemico-Technological Journal CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
1.10
自引率
20.00%
发文量
6
审稿时长
20 weeks
期刊介绍: The journal is designed for publication of experimental and theoretical investigation results in the field of chemistry and chemical technology. Among priority fields that emphasized by chemical science are as follows: advanced materials and chemical technologies, current issues of organic synthesis and chemistry of natural compounds, physical chemistry, chemical physics, electro-photo-radiative-plasma chemistry, colloids, nanotechnologies, catalysis and surface-active materials, polymers, biochemistry.
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