Gas content and gas-dynamic characteristics potash stratum VI in Belaruskali’s Mine 2

IF 0.4 Q4 MINING & MINERAL PROCESSING Eurasian Mining Pub Date : 2023-06-30 DOI:10.17580/em.2023.01.17
S. Andreiko, N. Litvinovskaya, D. Bobrov
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Abstract

The problem of gas-dynamic phenomena is still urgent and relevant for the Starobin deposit of potash salts. Different types of phenomena are encountered on all mining levels. Thus, potash stratum III, which is the main working layer, is recognized as hazardous in terms of gas-dynamic phenomena of various types, and potash stratum I is considered hazardous due to sudden failure of mine floor rocks accompanied by gas emission. The data on the gas-dynamic hazard of potash stratum IV are yet unavailable, since this stratum remains off-balance, no work is carried out on this layer, and no relevant studies have been conducted. The solution to the problem of gas-dynamic phenomena always begins with the study of the gas content and gas-dynamic characteristics. Only after that, one can make recommendations on mining operation safety, and can select the most effective and least expensive ways to predict and prevent gas-dynamic phenomena. This article presents the studies into the gas content and gas-dynamic characteristics of free gases in potash stratum IV. The studies were carried out during getting access to potash stratum IV via a ramp and during development driving. In addition to individual data, the summary studies of the gas content and initial rate of gas release as the most significant characteristics are also presented. An assumption is made about the most hazardous areas of underground openings, where the accumulation of free gas is likely to happen. The suitable methods for preventing gas-dynamic phenomena during development driving in the conditions of potash stratum IV are considered. As the preliminary recommendations, it is proposed to perform drilling of degassing holes in the floor of underground openings, at interfaces and in the places of expansions the best process-oriented and most effective method.
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Belaruskali’s Mine 2钾盐地层VI含气量及气体动力学特征
气体动力学现象问题对于Starobin钾盐矿床来说仍然是一个紧迫而相关的问题。在所有开采层面上都会遇到不同类型的现象。因此,从各种类型的气体动力学现象来看,作为主要工作层的钾盐层III被认为是危险的,而钾盐层I则由于底板岩石突然破裂并伴有气体排放而被认为是有害的。钾盐地层IV的气体动力学危险性数据尚不可用,由于该地层仍处于不平衡状态,因此没有对该层进行任何工作,也没有进行任何相关研究。气体动力学现象问题的解决往往始于对气体含量和气体动力学特性的研究。只有这样,人们才能对采矿作业安全提出建议,并选择最有效、最便宜的方法来预测和预防气体动力学现象。本文对钾盐地层IV中游离气体的含气量和气体动力学特征进行了研究。研究是在通过斜坡进入钾盐地层IV期间和开发驱动期间进行的。除了个别数据外,还介绍了气体含量和初始气体释放速率作为最重要特征的总结研究。对地下开口最危险的区域进行了假设,在那里可能会发生游离气体的积聚。考虑了在含钾地层IV的条件下,防止开发驱动过程中出现气体动力学现象的合适方法。作为初步建议,建议在地下开口的地板、接口和膨胀处钻除气孔,这是面向最佳工艺和最有效的方法。
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来源期刊
Eurasian Mining
Eurasian Mining MINING & MINERAL PROCESSING-
CiteScore
2.70
自引率
28.60%
发文量
21
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