Fugitive methane emissions and technologies for their reduction in Kuzbass coal mining

Q4 Engineering Gornaya Promyshlennost Pub Date : 2023-01-15 DOI:10.30686/1609-9192-2022-6-54-59
O. Tailakov, E. A. Utkaev, M. Makeev
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Abstract

A retrospective analysis of methane emissions in underground and surface coal mining, as well as subsequent activities with coal mined in underground conditions in Kuzbass, is presented. Modern technologies for processing of coalbed methane, which is brought to the surface by ventilation and degassing systems of coal mines, to obtain chemical products, thermal and electrical energy, are considered. It is shown that a rational option for the utilization of degassing methane is its use as a fuel in gas generators; to reduce emissions of ventilation methane, it is necessary to improve and introduce technologies for regenerative thermal oxidation of depleted methane-air mixtures. Based on the use of discount factor analysis, an assessment of the economic efficiency of utilization of degassed and ventilation air methane was made. It has been established that it is economically feasible to obtain heat and electricity by utilizing of degassed methane, the positive economic effect of ventilation air methane processing projects is achieved by using additional incentives, including the sale of emission reduction units, taking into account the prices of the main energy resources. It is substantiated that the utilization of coalmine methane facilitates reduction of the carbon footprint of the coal mining industry. The obtained results can be used to select and implement rational technologies for capturing and processing coal methane in underground coal mining.
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库兹巴斯煤矿的无组织甲烷排放及其减少技术
对库兹巴斯地下和地表煤矿开采中的甲烷排放以及随后在地下条件下开采的煤炭活动进行了回顾性分析。考虑了通过煤矿通风和脱气系统将煤层气带到地表以获得化学产品、热能和电能的现代处理技术。研究表明,利用脱气甲烷的合理选择是将其用作气体发生器的燃料;为了减少通风甲烷的排放,有必要改进和引入贫甲烷空气混合物的再生热氧化技术。利用折现因子分析法,对除气通风甲烷利用的经济效益进行了评价。已经证实,利用脱气甲烷获取热量和电力在经济上是可行的,通风空气甲烷处理项目的积极经济效果是通过使用额外的激励措施来实现的,包括出售减排装置,同时考虑到主要能源的价格。事实证明,煤矿甲烷的利用有助于减少煤矿业的碳足迹。研究结果可用于选择和实施合理的煤矿井下煤层气捕获和处理技术。
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来源期刊
Gornaya Promyshlennost
Gornaya Promyshlennost Engineering-Industrial and Manufacturing Engineering
CiteScore
1.10
自引率
0.00%
发文量
100
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