首页> 外文期刊>Journal of Environmental Management >Treated acid mine drainage and stream recovery: Downstream impacts on benthic macroinvertebrate communities in relation to multispecies toxicity bioassays
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Treated acid mine drainage and stream recovery: Downstream impacts on benthic macroinvertebrate communities in relation to multispecies toxicity bioassays

机译:经过处理的酸性矿山排水和流回收:与多物种毒性生物测定有关的对底栖大型无脊椎动物群落的下游影响

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摘要

The success and long term effectiveness of extensive and expensive engineering solutions to restore streams impacted by Acid Mine Drainage (AMD) is rarely tested. Concentrations of pollutants were measured in water along a longitudinal gradient from a stretch of the Tweelopie stream, South Africa, that receives pH-treated acid mine drainage (AMD) from an abandoned gold mine. The biotoxic effects of treated AMD were determined through macroinvertebrate biotic indices (SASS5) and a battery of toxicity bioassays. These included the L. saliva, A. cepa, D. magna toxicity and Ames mutagenicity tests, as well as an in vitro human liver cancer cell line HepG2. Even though the Tweelopie stream was moderately to severely degraded by multiple anthropogenic stressors, the impact of the treated AMD was masked by the improvement in the system downstream after mixing with the domestic wastewater effluent receiving stream, and subsequent further dilution as a result of the karst springs downstream. The general improvement of the system downstream was clearly shown by the decrease in the ecotoxicity and mutagenicity in relation to the in-stream macroinvertebrates. PCA multivariate analysis successfully displayed associations between the different environmental variables and the decrease in toxicity and subsequent ecosystem improvement downstream. This study indicated that environmental management of AMD remediation should consider long term assessment strategies, including multiple factors, to promote biological ecosystem recovery.
机译:很少测试广泛而昂贵的工程解决方案来恢复受酸性矿山排水(AMD)影响的流水的成功和长期有效性。在南非Tweelopie溪流的一段沿纵向梯度测量的水中污染物浓度,该溪流从废弃的金矿中接受pH值处理的酸性矿井排水(AMD)。通过大型无脊椎动物生物指数(SASS5)和一系列毒性生物测定法确定治疗过的AMD的生物毒性作用。这些措施包括唾液乳杆菌,cep,D。magna毒性和Ames致突变性测试,以及体外人肝癌细胞系HepG2。即使Tweelopie流由于多种人为压力源而被中度至严重降解,但与生活污水接收流混合后,下游系统的改善掩盖了处理过的AMD的影响,并由于岩溶而进一步稀释向下游弹跳。相对于上游无脊椎动物,生态毒性和诱变性的降低清楚地表明了下游系统的总体改善。 PCA多变量分析成功显示了不同环境变量与毒性降低和下游生态系统改善之间的关联。这项研究表明,AMD治理的环境管理应考虑包括多种因素在内的长期评估策略,以促进生物生态系统的恢复。

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