矿井水处理工艺选择的数据支持

B. Zobnin, Alexander A. Surin
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摘要

本文运用数学模型对酸性矿井水处理技术的实施方案进行了分析。提出了含金属矿山水处理的工艺方案,该方案包括两个阶段。第一阶段是将矿井水处理到所需的程度,以提取固体不溶性沉积物进行进一步处理,在安装在矿井出水地点的移动技术综合体中实施。采用等离子体离心式转化方法,在固定配合物中对单个金属粉末进行选择性萃取。在第一步中,矿井水中所含的金属离子应完全回收,最大限度地节约能源。从矿井水中完全提取有用成分的条件是各种金属氢氧化物开始沉淀和完全沉淀所对应的pH值,这取决于金属的性质、在溶液中的浓度、温度、杂质含量。工艺制度必须是可管理的,以确保在矿井水流率和成分浓度变化的情况下,其原料的质量是适当的。该工艺模式必须易于管理,以保证在矿井排水和配料浓度变化的情况下,其原料质量的充分性。关键词:工艺综合体,矿井水,处理,建模
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Data Support in the Choice of Mine Water Treatment Technology
Mathematical modeling is used in this work in the analysis of options for the implementation of acid mine water treatment technology. Ta technological scheme of metal-bearing mine water treatment is proposed and includes two stages. The first stage, the treatment of mine water to the required degree to extract solid insoluble sediment for further processing, is implemented in a mobile technological complex installed in places of mine water outpouring. Selective extraction of individual metal powders is delivered in a stationary complex in applying the centrifugal conversion method using plasmatron. In the first step, the metal ions contained in the mine water should be complete recovered with maximum energy-saving. The condition for complete extraction of useful components from mine waters is pH values corresponding to the beginning of precipitation of hydroxides of various metals and complete precipitation, which depend on the nature of metals, their concentration in solution, temperature, impurity content. The process regime must be manageable to ensure its adequacy in the quality of raw materials under conditions of changing mine water flow rates and concentrations of ingredients. The technological mode must be manageable to ensure its adequacy in the raw material quality under changing mine water discharges and concentrations of ingredients. Keywords: technological complex, mine water, treatment, modeling
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