北高加索矿区企业的工业废水和水资源

IF 0.2 Q4 FORESTRY
V. Dzaparov, Aleksandr Sakhnov, Igor Zdorovets, Semen Shokhov
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引用次数: 0

摘要

研究主题。本文致力于在工业废水污染水圈造成全球水资源质量恶化的威胁下保持全球水资源质量的问题。研究目的是建立水资源状态变化规律,对水质管理和水资源保护机制进行生态细化。研究方法包括对金属矿矿区水环境状况和矿山废水处理方法的文献资料进行归纳整理,对矿化废水进行电化学处理以恢复其质量的室内实验,对改善水环境状态的管理提出建议。研究成果及范围。指出了山地地形地区问题的一个显著特征。根据金属污染程度对矿山企业周边环境进行了排序。介绍了有色冶金设施污水状况的研究结果。总结了降水曲线法的研究成果。介绍了电化学处理矿化废水及其水质恢复的室内实验结果。指出了通过增加副产物产量来提高污水处理经济效益的方向。介绍了一种产生自中和剂的工艺。已经确定,在重金属污染的情况下,污染气泡的程度是由化学品的混合和稀释过程决定的。结论。水资源质量管理和工业废水污染防治应从建立其状态变化规律和山区地形控制机制入手。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Industrial effluents of mining enterprises of the North Caucasus and water resources
Subject of research. The article is devoted to the problem of preserving the quality of the global water resources under the threat of its deterioration caused by industrial effluents polluting the hydrosphere. Research objective is to establish the patterns of changes in water resources state and carry out the ecological detailing of the mechanism for managing water quality and protecting water resources. Methods of research include the generalization and systematization of reported data and literature on the aquatic environment condition in the metallic ore mining regions and methods of mine effluents treatment, laboratory experiments on electrochemical treatment of mineralized effluents to restore their quality, recommendations for improving the management of the aquatic environment state. Research results and scope. A distinctive feature of the problem for regions with mountainous terrain is indicated. The surroundings of mining enterprises were ranked according to metal pollution. The research results on the effluents state at non-ferrous metallurgy facilities are presented. The results of research by the precipitation curve method are summarized. The laboratory experiment results are shown on electrochemical treatment of mineralized effluents and their quality restoration. The direction is indicated of improving the economic efficiency of effluents treatment by increasing by-products output. A technology with the generation of self-neutralizing agents is recommended. It has been established that in the case of heavy metal pollution, the extent of the pollution bubble is determined by the processes of chemicals mixing and dilution. Conclusions. The management of water resources quality and industrial effluents pollution prevention should begin with the establishment of patterns of change in their state as well as with the control mechanism detailing in mountainous terrain.
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