USE OF MAGNETIC FIELDS FOR INTENSIFICATION OF COAL GASIFICATION PROCESS

IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY
V. Lozynskyi, V. Falshtynskyi, P. Saik, R. Dychkovskyi, B. Zhautikov, E. Cabana
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引用次数: 2

Abstract

Underground coal gasification is an alternative method for mining coal from thin and ultra-thin seams, which enables conversion of solid fossil fuels into combustible gases at the site of coal occurrence. At the same time, in the case when the coal seam thickness is critically small for the effective course of thermochemical reactions, it is necessary to intensify the gasification process. This paper studies one of the possible methods to intensify the process of underground coal gasification due to the influence of magnetic fields on the injected blast supplied into the gas generator gasification channel. Research tests conducted on a bench setup confirm the effectiveness of injected blast activation in a magnetic field by creating magnetic field inhomogeneity by placing permanent magnets and a discrete solid magnetized phase in a special device. For the first time, the dependence of changing growth of carbon participation during the solid fuel gasification process on changing magnetic field strength in the range of 0-600 E has been determined. It has been proven that the injected blast magnetization can significantly intensify the underground gasification process by increasing the carbon participation share in the fuel, which may be of practical importance for increasing the yield of combustible components.
利用磁场强化煤气化过程
煤炭地下气化是一种从薄煤层和超薄煤层开采煤炭的替代方法,它可以将固体化石燃料在煤炭赋存地转化为可燃气体。同时,当煤层厚度小于热化学反应有效进行的临界厚度时,有必要加强气化过程。本文研究了一种可能的方法,通过磁场对煤气发生炉气化通道注入的冲击波的影响来加强煤的地下气化过程。在台架上进行的研究测试证实了在磁场中注入爆破激活的有效性,通过在特殊装置中放置永磁体和离散固体磁化相来产生磁场不均匀性。首次确定了固体燃料气化过程中碳参与生长变化对0-600 E范围内磁场强度变化的依赖关系。实验证明,注入的爆破磁化可以通过增加燃料中的碳参与份额来显著强化地下气化过程,这对提高可燃组分的产量可能具有实际意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.50
自引率
15.40%
发文量
50
审稿时长
12 weeks
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