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煤矿矿井水的净化处理技术研究
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作者 王彬 《山西化工》 CAS 2024年第10期198-199,208,共3页
煤矿矿井水主要成分为悬浮物和含盐量,为满足矿井排水的使用要求,应对矿井水进行净化处理,在矿井污水净化处理技术中,采用沉淀法对矿井水进行初步处理,再通过混凝沉淀法、过滤法和化学处理法等方法,对矿井水进行深度净化处理。基于此,... 煤矿矿井水主要成分为悬浮物和含盐量,为满足矿井排水的使用要求,应对矿井水进行净化处理,在矿井污水净化处理技术中,采用沉淀法对矿井水进行初步处理,再通过混凝沉淀法、过滤法和化学处理法等方法,对矿井水进行深度净化处理。基于此,本文首先针对煤矿矿井水及其特点进行介绍,同时对煤矿矿井水的净化处理技术方法进行研究,旨在为相关工作人员提供参考。 展开更多
关键词 煤矿开采 矿井井水 净化处理 应用
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脱稳蒸发结晶在魏墙煤矿中的应用研究
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作者 魏涛涛 《中国科技期刊数据库 工业A》 2024年第5期0078-0081,共4页
魏墙矿井是魏墙煤业公司经国家发改委批复的矿区生产项目,作为公司综合产业园一期启动的重点配套煤矿项目,其矿井生产能力达到700万t/年。在魏墙煤矿生产项目中,针对某些辅助生产的创新应用技术进行了充分研究,例如脱稳蒸发结晶技术,在... 魏墙矿井是魏墙煤业公司经国家发改委批复的矿区生产项目,作为公司综合产业园一期启动的重点配套煤矿项目,其矿井生产能力达到700万t/年。在魏墙煤矿生产项目中,针对某些辅助生产的创新应用技术进行了充分研究,例如脱稳蒸发结晶技术,在本文中,首先讨论脱稳蒸发结晶技术的实施技术背景与有价值意义,对魏墙煤矿公司采用脱稳蒸发结晶技术的成因进行分析,分析其应用价值意义。由于公司专门引入采用了脱稳蒸发结晶技术,新技术包含了预处理以及多次浓缩蒸发结晶工艺段,所以有必要展开全面分析。例如对于魏墙煤矿矿井深度处理环节的脱稳、浓缩及蒸发结晶技术工艺进行分析,就脱稳蒸发结晶技术在魏墙煤矿的应用展开深层次研究,希望工体该技术的实际应用价值。 展开更多
关键词 脱温蒸发结晶技术 魏墙煤矿 价值意义 矿井井水深度 实施策略
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Application of HEMS cooling technology in deep mine heat hazard control 被引量:46
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作者 HE Man-chao 《Mining Science and Technology》 EI CAS 2009年第3期269-275,共7页
This paper mainly deals with the present situation, characteristics, and countermeasures of cooling in deep mines.Given existing problems in coal mines, a HEMS cooling technology is proposed and has been successfully ... This paper mainly deals with the present situation, characteristics, and countermeasures of cooling in deep mines.Given existing problems in coal mines, a HEMS cooling technology is proposed and has been successfully applied in some mines.Because of long-term exploitation, shallow buried coal seams have become exhausted and most coal mines have had to exploit deep buried coal seams.With the increase in mining depth, the temperature of the surrounding rock also increases, resulting in ever increasing risks of heat hazard during mining operations.At present, coal mines in China can be divided into three groups, i.e., normal temperature mines, middle-to-high temperature mines and high temperature mines, based on our investigation into high temperature coal mines in four provinces and on in-situ studies of several typical mines.The principle of HEMS is to extract cold energy from mine water inrush.Based on the characteristics of strata temperature field and on differences in the amounts of mine water inrush in the Xuzhou mining area, we proposed three models for controlling heat hazard in deep mines:1) the Jiahe model with a moderate source of cold energy;2) the Sanhejian model with a shortage of source of cold energy and a geothermal anomaly and 3) the Zhangshuanglou model with plenty of source of cold energy.The cooling process of HEMS applied in deep coal mine are as follows:1) extract cold energy from mine water inrush to cool working faces;2) use the heat extracted by HEMS to supply heat to buildings and bath water to replace the use of a boiler, a useful energy saving and environmental protection measure.HEMS has been applied in the Jiahe and Sanhejian coal mines in Xuzhou, which enabled the temperature and humidity at the working faces to be well controlled. 展开更多
关键词 deep mine heat hazard mine classification mine water inrush heat hazard control model
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Study on the law of methane seepage in the wall of drainage roadway in mining seam-group
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作者 刘健 罗勇 +1 位作者 刘泽功 石必明 《Journal of Coal Science & Engineering(China)》 2005年第2期64-66,共3页
Based on the equation of the gas flow continuity and state, Darcy law and Langmuir equation, the law of methane seepage in the wall of drainage roadway was studied. The governing equation of methane one-way seepage in... Based on the equation of the gas flow continuity and state, Darcy law and Langmuir equation, the law of methane seepage in the wall of drainage roadway was studied. The governing equation of methane one-way seepage in the seam was founded. By solving the equation, the calculation of methane seepage velocity in the coal wall was worked out. The result has really applied worth and will give beneficial references to re-lated research, it provides preventing coal and gas outbursts with theoretical gist. 展开更多
关键词 drainage roadway methane seepage governing equation methane drainage
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