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Evaluation of an innovative approach based on prototype engineered wetland to control and manage boron (B) mine effluent pollution

机译:基于原型湿地的控制和管理矿山废水污染的创新方法的评估

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A major environmental problem associated with boron (B) mining in many parts of the world is B pollution, which can become a point source of B mine effluent pollution to aquatic habitats. In this study, a cost-effective, environment-friendly, and sustainable prototype engineered wetland was evaluated and tested to prevent B mine effluent from spilling into adjoining waterways in the largest B reserve in the world. According to the results, average B concentrations in mine effluent significantly decreased from 17.5 to 5.7 mg l(-1) after passing through the prototype with a hydraulic retention time of 14 days. The results of the present experiment, in which different doses of B had been introduced into the prototype, also demonstrated that Typha latifolia (selected as donor species in the prototype) showed a good resistance to alterations against B mine effluent loading rates. Moreover, we found that soil enzymes activities gradually decreased with increasing B dosages during the experiment. Boron mass balance model further showed that 60 % of total B was stored in the filtration media, and only 7 % of B was removed by plant uptake. Consequently, we suggested that application of the prototype in the vicinity of mining site may potentially become an innovative model and integral part of the overall landscape plan of B mine reserve areas worldwide.
机译:在世界许多地方,与硼(B)开采相关的主要环境问题是B污染,这可能成为B矿山废水对水生生境的主要污染源。在这项研究中,评估并测试了一种经济高效,环境友好且可持续的原型工程湿地,以防止B矿井污水溢出到世界上最大的B保护区中相邻的水道中。根据结果​​,经过水力停留时间为14天的原型后,矿山废水中的平均B浓度从17.5降低至5.7 mg l(-1)。本实验的结果(其中已将不同剂量的B引入原型中)还表明,香蒲(原型中被选作供体物种)对B矿废水负荷率显示出良好的抗性。此外,我们发现在实验过程中,土壤酶活性随着B剂量的增加而逐渐降低。硼质量平衡模型进一步表明,总B中有60%的B被存储在过滤介质中,而只有7%的B被植物吸收而被去除。因此,我们建议在矿区附近应用原型可能成为全球B矿储备区总体景观规划的创新模型和组成部分。

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