地球化学和地电测量协同克里格法监测地下水水质

J. Zawadzki, P. Fabijańczyk, W. Treichel
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引用次数: 1

摘要

摘要研究了利用地质统计学方法监测地下水水质的可能性。波兰是世界上最大的铜生产国之一。然而,铜的开采和生产需要不断地保护自然环境。水库Żelazny Most位于波兰西南部,设计用于储存附近铜矿的浮选尾矿。它是世界上最大的工业垃圾场之一。该水库储存了大量的尾矿和工业用水。从垃圾场转移到地下水的水可能是氯化物、硫酸盐、重金属和其他有害物质的潜在污染源,这些物质在铜矿工业的矿石分离过程中使用,如洗涤剂和酚类。Żelazny大部分垃圾场周围的监测系统是为了追踪地下水中有害物质的浓度而设计的,包括测量井和气压计。它们被用来收集地下水样本进行化学分析。该研究的思路是利用土壤溶液电阻与地下水中总溶解固体浓度之间的相关性,通过cokriging方法将化学分析和地电测量提供的信息整合起来。从而获得了Żelazny Most排土场东部前景部分地下水中总溶解固体浓度的空间分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring of Groundwater Quality With Cokriging of Geochemical and Geoelectrical Measurements
Abstract The study presents the possibility of using geostatistical methods for monitoring groundwater quality. Poland is one of the largest copper producers in the world. However, the extraction and production of copper requires constant care for the natural environment. Reservoir Żelazny Most which is situated in South – Western Poland was designed to store flotation tailings out of nearby copper mines. It is one of the biggest industrial dumps in the world. The reservoir stores huge amounts of tailings and industrial water. Water migrating from dump to groundwater could be a potential source of contamination with chlorides, sulphates, heavy metals, and other hazardous substances used in ore separation process in the copper mining industry, like detergent and phenols. Monitoring system around Żelazny Most dump, which was designed to track harmful substances concentrations in groundwater, contains measuring wells and piezometers. They are used to collect groundwater samples for chemical analyses. The idea of the study was to integrate information provided by chemical analyses and geoelectrical measurements by cokriging method, utilizing correlation between electrical resistance of the soil solution and total dissolved solids concentration in groundwater. This enabled to obtain spatial distribution of total dissolved solids concentrations in groundwater at the part of eastern foreground of Żelazny Most dump.
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