基于可持续发展和ESG战略的DTEK煤矿矿产原料资源综合开采新理念

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2023-03-30 DOI:10.33271/mining17.01.001
V. Bondarenko, I. Salieiev, I. Kovalevska, V. Chervatiuk, D. Malashkevych, M. Shyshov, Volodymyr Chernyak
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引用次数: 2

摘要

意图研究目的是以PJSC DTEK Pavlohraduhillia煤矿为例,开发一种复杂的煤矿矿产资源开采概念,过渡到清洁饮用水的多产品生产、甲烷的利用、岩石堆和污泥库的二次煤,矿山地下水和脱盐废物的相关原材料的低势能。方法。该研究采用综合方法,包括分析现有经验和可用的复杂煤矿开采技术,通过反渗透法对浓盐水进行热蒸馏的矿井水脱盐技术进行实验室研究,以及使用ElvaX实验室设备进行化学分析。调查结果。本文介绍了与煤矿开采有关的矿产原料资源综合分析的研究成果。已经确定了从岩石堆和污泥库的二次煤中可以产生的技术上可实现的能源潜力,总计为183.3 TJ。已经估计了甲烷气体利用的年热潜力,PJSC DTEK Pavlohraduhillia的矿山总计达到7.1 PJ。已经确定了从矿山综合体的排水装置中提取高达1.12 TJ/年的相关热能的可能性。针对Zakhidno Donbaska矿的实际情况,提出了一种反渗透制水工艺方案,采用绝热蒸发器多级蒸发的方法对脱盐盐水进行处理。独创性首次全面分析了与煤矿开采技术相关的能源流,以确定其联合使用的可能性,以满足矿山综合体的需求。根据矿山综合生产设施对清洁饮用水多产品生产、甲烷气体利用、矿山地下水潜在热能低和脱盐废物二次原料的适应程度,对矿产资源综合开采的前景进行了评估。实际意义。拟议的一套技术解决方案将确保PJSC DTEK Pavlohraduhillia煤矿企业的生产可持续发展和多样化,以及在从单一产品生产向创建符合ESG原则的多业务生产综合体过渡期间,煤矿城市的有效转型。建立既能生产煤炭,又能生产热能和相关矿产原料资源的多产品矿山综合体,应成为煤矿地区社会经济稳定发展的保障。
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A new concept for complex mining of mineral raw material resources from DTEK coal mines based on sustainable development and ESG strategy
Purpose. The research purpose is to develop a concept for complex mining of mineral resources from coal mines using the example of PJSC DTEK Pavlohradvuhillia mines with a transition to multi-product production of clean drinking water, utilization of methane, secondary coal from rock dumps and sludge reservoirs, low-potential thermal energy of mine groundwaters and associated raw materials from desalination waste. Methods. The research uses an integrated approach, which includes an analysis of existing experience and available complex coal mining technologies, laboratory studies of mine water desalination technology by the reverse osmosis method with thermal distillation of concentrated brine, and chemical analysis using ElvaX laboratory equipment. Findings. This paper presents the research results of a comprehensive analysis of mineral raw material resources related to coal mining. The technically achievable energy potential that can be produced from the secondary coal of rock dumps and sludge reservoirs has been determined, which in total is 183.3 TJ. The annual heat potential of methane gas utilization has been estimated, which in total of PJSC DTEK Pavlohradvuhillia’s mines reaches 7.1 PJ. The possibility of extracting up to 1.12 TJ/year of associated thermal energy from the water-drainage installation of mine complexes has been determined. For the conditions of the Zakhidno-Donbaska mine, the authors of the paper have developed a technological scheme for the water preparation process by the reverse osmosis with the desalination brine treatment by the method of multistage evaporation on adiabatic evaporators. Originality. For the first time, the energy flows related to coal mining technology have been comprehensively analyzed for the possibility of their joint use to cover the needs of the mine complex. The prospects for complex mining of mineral resources have been assessed based on the adaptation of the mine complex production facilities to the multi-product production of clean drinking water, utilization of methane gas, low-potential thermal energy from mine groundwaters and secondary raw materials of desalination waste. Practical implications. The proposed set of technological solutions will ensure the sustainable development and diversification of the production of PJSC DTEK Pavlohradvuhillia coal-mining enterprises, as well as the effective transformation of coal-mining cities during the period of transition from mono-product production to the creation of multi-business production complexes that comply with ESG principles. The creation of multi-product mine complexes capable of producing not only coal, but also heat and associated mineral raw material resources, should become a guarantee of stable social-economic development of coal-mining regions.
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Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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