首页> 外文期刊>River Research and Applications >FATE, TRANSPORT AND EFFECTS OF POLLUTANTS ORIGINATING FROM ACID MINE DRAINAGE IN THE OLIFANTS RIVER, SOUTH AFRICA
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FATE, TRANSPORT AND EFFECTS OF POLLUTANTS ORIGINATING FROM ACID MINE DRAINAGE IN THE OLIFANTS RIVER, SOUTH AFRICA

机译:南非奥利凡特河酸性矿山排泄物中污染物的命运,迁移和影响

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摘要

Concentrations of pollutants were measured in water, sediment and algal samples collected along a longitudinal gradient from a stretch of the Olifants River, South Africa, that receives acid mine drainage (AMD) from the Klipspruit River. The effects of AMD were determined through macroinvertebrate biotic indices (SASS5) and multivariate analysis of macroinvertebrate communities. The acidic Klipspruit River caused increased concentrations of total Al, Fe and Mn in the Olifants River. Upon mixing of the Klipspruit with that from the alkaline Olifants River, Al and Fe precipitate rapidly, leading to lower concentrations in the dissolved phase and higher concentrations in the suspended phase and in sediment at sites in close proximity to the confluence. Similarly, filamentous algae accumulated high concentrations of Al, Fe and Zn immediately after the confluence. Mn remains in the dissolved phase, and sediment and algal concentrations increase with increasing distance downstream. Metal speciation analysis indicate that Al is rapidly converted from more toxic forms (e.g. Al~(3+) and Al(OH)~(2+)) to less toxic forms (e.g. Al(OH)_3(aq) and Al(OH)~(4-)). In contrast, Mn remains in the soluble Mn~(2+) form. Macroinvertebrate metrics and community structure showed clear signs of deterioration in water quality in the Olifants River downstream of the point of AMD input. While total TDS concentrations at all sites fall within ranges likely to affect macroinvertebrates, the relative composition of major ions changes as a result of AMD input, which may also account for the observed changes in macroinvertebrate communities. Further downstream, the Wilge River discharges into the Olifants River and significantly improves water quality downstream of the confluence. Future mining and development activities in the Wilge catchment should be carefully managed and monitored so as to ensure sufficient flows of acceptable quality to prevent further deterioration of water quality in the Olifants River and downstream reservoirs.
机译:在南非奥利凡特河的一段沿纵向梯度收集的水,沉积物和藻类样品中测量了污染物的浓度,该奥利芬特河从克利普斯普鲁特河接受酸性矿井排水(AMD)。通过大型无脊椎动物生物指数(SASS5)和大型无脊椎动物群落的多元分析来确定AMD的作用。酸性的克利普斯普鲁特河导致Olifants河中总Al,Fe和Mn浓度增加。将Klipspruit与来自碱性Olifants河中的Klipspruit混合后,Al和Fe迅速沉淀,导致溶解相中的浓度较低,而悬浮相中和汇合处附近的沉积物中的浓度较高。同样,丝状藻类在汇合后立即积累了高浓度的Al,Fe和Zn。锰保留在溶解相中,沉积物和藻类浓度随下游距离的增加而增加。金属形态分析表明,Al从高毒性形式(例如Al〜(3+)和Al(OH)〜(2+))迅速转变为低毒性形式(例如Al(OH)_3(aq)和Al(OH) )〜(4-))。相反,Mn以可溶的Mn〜(2+)形式保留。大型无脊椎动物的指标和群落结构清楚地显示出AMD投入点下游的Olifants河水质恶化的迹象。尽管所有位点的总TDS浓度都在可能影响大型无脊椎动物的范围内,但由于AMD输入,主要离子的相对组成发生了变化,这也可能解释了大型无脊椎动物群落中观察到的变化。在更下游,威尔基河排入奥利凡茨河,并显着改善了汇合处下游的水质。应该认真管理和监视Wilge流域将来的采矿和开发活动,以确保有足够的可接受质量的水流,以防止Olifants河和下游水库的水质进一步恶化。

著录项

  • 来源
    《River Research and Applications》 |2015年第10期|1354-1364|共11页
  • 作者单位

    CSIR, Natural Resources and Environment, PO Box 395, Pretoria, 0001, South Africa;

    CSIR, Natural Resources and Environment, Pretoria, South Africa ,Department of Paraclinical Sciences, Faculty of Veterinary Science, University of Pretoria, Onderstepoort, South Africa;

    CSIR, Natural Resources and Environment, Pretoria, South Africa;

    CSIR, Natural Resources and Environment, Pretoria, South Africa;

    CSIR, Natural Resources and the Environment, Stellenbosch, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    acid mine drainage; metals; salinity; macroinvertebrates; fate; transport;

    机译:酸性矿山排水金属;盐度;大型无脊椎动物命运;运输;

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