预测煤层危险性用矿物杂质硫含量的工程方法

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS
Y. Rudniev, E.M. Filatieva, M. Filatiev, V. Tarasov, M. Antoshchenko
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引用次数: 0

摘要

目的:建立一种测定矿物杂质中硫含量的工程方法,以预测采矿作业中煤层的危险特性。方法:研究方法和方法的发展是基于燃料可燃部分的硫含量与顿涅茨克和利沃夫-沃林盆地几乎所有煤层煤的总硫的密切相关依赖。有机质量与矿物杂质的比值由灰分产率表征。储层灰分与富集样的比值,以及总硫和可燃部分硫的含量信息,使计算矿物杂质中硫含量成为可能。发展该方法所需的所有初始数据都是通过几十年的标准方法在实验中建立起来的,并在有关煤炭消费质量的参考和规范性文件中给出。结果:整组煤层的总硫含量可能超过燃料可燃部分的硫含量,反之亦然。在第一个近似中,总硫含量与燃料可燃部分中存在的硫含量之间的差异是评估燃料条件不可燃部分中可能存在的硫含量的标准。该标准的负值表示可燃部分的硫含量占主导地位,而正值表示条件不可燃(矿物)杂质。根据可获得的燃料可燃部分总硫含量、储层灰分产率和富集样品的初始实验数据,提出了计算条件不可燃组分硫含量的依赖关系。对7组煤层进行了条件不燃部分硫含量计算值与拟合准则的相关性分析。种群的形成考虑到了浓缩过程可能产生的影响以及所建议标准的正值或负值。通过对所考虑的煤层组的经验依赖性分析,建立了计算测定化石煤条件不燃(矿物)杂质中硫的最可靠结果的必要条件。科学新颖性:根据提出的标准,首次建立了条件不燃(矿物)杂质中硫含量的经验依赖关系。实用价值:研究结果对于预测煤层因硫的变化而产生的危险性质的表现,对完善煤矿安全作业的监管框架是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering method for determining the sulfur of mineral impurities for the prediction of hazardous properties of coal seams
Purpose: develop an engineering method for determining sulfur in mineral impurities to predict the hazardous properties of mine seams in mining operations. Methodology: The research methodology and the development of the method are based on a close correlation dependence of the sulfur content in the combustible part of the fuel on the total sulfur for coals of almost all mine seams of the Donetsk and Lvov-Volyn basins. The ratios between the organic mass and mineral impurities are characterized by the yield of ash. The ratio of ash content of reservoir and enriched samples, as well as information about the content of total sulfur and sulfur in the combustible part, make it possible to estimate the sulfur content in mineral impurities by calculation. All the initial data necessary for the development of the method were established experimentally by standard methods over several decades and are given in the reference and regulatory documents on the consumer qualities of coals. Results: The percentage of total sulfur for the entire set of considered coal seams can either exceed the sulfur content in the combustible part of the fuel or vice versa. The difference between the content of total sulfur and its presence in the combustible part of the fuel is, in the first approximation, a criterion for assessing the possible sulfur content in the conditionally non-combustible part of the fuel. Negative values of the criterion indicate the predominant sulfur content in the combustible part, and positive values, in the conditionally non-combustible (mineral) impurities. Based on the available initial experimental data on the content of total sulfur in the combustible part of the fuel, the yield of ash from reservoir and enriched samples, dependencies are proposed for calculating the sulfur content in conditionally non-combustible components. Between the calculated values of the sulfur content in the conditionally non-combustible part and the proposed criterion, correlations are considered for seven sets of coal seams. The formation of the populations was done taking into account the possible influence of enrichment processes and positive or negative values of the proposed criterion. Based on the analysis of empirical dependences of the considered sets of coal seams, the necessary conditions were established for obtaining the most reliable results of the calculated determination of sulfur in conditionally non-combustible (mineral) impurities of fossil coals. Scientific novelty: For the first time, empirical dependences of the sulfur content in conditionally non-combustible (mineral) impurities were established according to the proposed criterion. Practical value: The results are necessary to improve the regulatory framework for the safety of mining operations in terms of predicting the manifestation of hazardous properties of coal seams due to the presence of sulfur varieties.
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
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60.00%
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