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Getting rid of chemical analysis - Mine water management with indicator parameters

机译:摆脱化学分析 - 用指示器参数进行化学分析 - 矿山水管理

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Mine water management within the 1 B Mine Pool of the Sydney, Nova Scotia, Canada coal field is conducted by means of 10 wells. Depending on the infiltration rate between 1 and 10 of those pumps are in operation. Because the pump wells are drilled into different depths, the mineralisation of the pumped mine water differs with a trend to lower mineralisation in the shallower wells. In order to pump only water with low Fe-concentrations the mine water is analysed on a 6-monthly plan. Based on the analytical results the sequence in which the pumps are turned on is determined. The mine operator needed a cheaper but precise method to determine the turn-on-sequence of the pumps. A hydrogeochemical investigation of the mine water in the 10 wells at different flow rates was initiated. Based on statistical investigations, the electrical conductivity and temperature of the mine water were identified as an indicator parameter for the Fe-concentration. In combination with the flow rates of the pumps, the lowest Fe-concentration possible at the discharge pipe is estimated using on-site parameters.
机译:矿井水管理在悉尼悉尼,新斯科舍省,加拿大煤炭领域的矿山池煤田是通过10个井进行的。根据这些泵的1到10之间的渗透速率在运行中。由于泵井被钻入不同的深度,所以泵浦矿井水的矿化与较浅的井中的矿化趋势不同。为了仅泵送低Fe浓度的水,在6月的计划中分析矿水。基于分析结果,确定泵接通的顺序。矿井操作员需要更便宜但精确的方法来确定泵的导通序列。启动了在不同流速下10孔中矿井水的水力代化学研究。基于统计研究,将矿井水的电导率和温度鉴定为Fe浓度的指示剂参数。结合泵的流速,使用现场参数估计排出管的最低的Fe浓度。

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