某农业活动区废弃金矿排土场微量元素污染物向水体迁移的研究

G. Okereafor, E. Makhatha, L. Mekuto, V. Mavumengwana
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引用次数: 2

摘要

在本研究中,选择了位于南非的布雷斯伯克雷特内的溪流,在本研究中进行了表征。由于采矿活动时间长,加上管理措施不力,在这一地区广泛分布着几个尾矿库。据报道,来自这些尾矿设施的金属和类金属污染是造成酸性矿山排水等环境危害的主要因素。随着这一地区农业活动的增加,对用于灌溉和饲养牲畜的水的一般质量进行评估是不可避免的。采用程序方法对尾矿与水体污染之间的关系进行了识别。分别采集了具有代表性的金尾矿底泥和水样。利用x射线荧光(XRF)和x射线衍射(XRD)对尾矿沉积物进行了矿物学表征,并利用电感耦合等离子体发射光谱法(ICP-OES)进行酸消解测定痕量金属含量。还对不同水源的样品进行了表征。对尾矿、水污染以及从长远来看对动物和人类可能产生的影响之间的联系有明确的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mobility of Trace Element Contaminants from Abandoned Gold Mine Dump to Stream Waters in an Agricultural Active Area
In this study, the selected streams within the Blesbokspruit located in South Africa were characterised in this study. Because of prolonged mining activities coupled with ineffective management practices, several mine tailing (MT) dumps are widely distributed in this area. Metals and metalloid contamination from these tailing facilities have been reported to be major contributors to environmental hazards such as acid mine drainage (AMD). With increased agricultural activities in this area, an assessment of the general quality of water being utilised for irrigation purposes and feeding of farm animals becomes inevitable. A procedural method was implemented in a bid to identify relations between tailing and stream water contamination. Representative gold tailing sediments and water samples were collected, respectively. With the aid of X-ray fluorescence (XRF) and X-ray diffraction (XRD), the mineralogical characterisation of the tailing sediments was successfully carried out, while acid digestion using inductively coupled plasma-optical emission spectrometry (ICP-OES) was utilised in the determination of trace metal contents. Samples of different water sources were also characterised. There was a clear description of the link between tailings, water contamination and possible implications to animals and humans in the long run.
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