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An integrated algal sulphate reducing high rate ponding process for the treatment of acid mine drainage wastewaters

机译:集成的硫酸盐还原高速率捕集工艺,用于处理酸性矿山排水废水

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Acid mine drainage pollution may be associated with large water volume flows and exceptionally long periods of time over which the drainage may require treatment. While the use and role of sulphate reducing bacteria has been demonstrated in active treatment systems for acid mine drainage remediation, reactor size requirement and the cost and availability of the carbon and electron donor source are factors which constrain process development. Little attention has focussed on the use of waste stabilisation ponding processes for acid mine drainage treatment. Wastewater ponding is a mature technology for the treatment of large water volumes and its use as a basis for appropriate reactor design for acid mine drainage treatment is described including high rates of sulphate reduction and the precipitation of metal sulphides. Together with the co-disposal of organic wastes, algal biomass is generated as an independent carbon source for SRB production. Treatment of tannery effluent in a custom-designed high rate algal ponding process, and its use as a carbon source in the generation and precipitation of metal sulphides, has been demonstrated through piloting to the implementation of a full-scale process. The treatment of both mine drainage and zinc refinery wastewaters are reported. A complementary role for microalgal production in the generation of alkalinity and bioadsorptive removal of metals has been utilised and an Integrated 'Algal Sulphate Reducing Ponding Process for the Treatment of Acidic andMetal Wastewaters' (ASPAM) has been described.
机译:酸性矿山的排水污染可能与大量的水流以及可能需要处理的排水时间过长有关。虽然硫酸盐还原菌的用途和作用已在用于酸性矿山排水修复的主动处理系统中得到证实,但反应堆尺寸要求以及碳和电子供体来源的成本和可用性是制约工艺发展的因素。很少有人关注将废物稳定化沉浸工艺用于酸性矿山排水处理。废水收集是一种用于处理大量水的成熟技术,并描述了其作为酸性矿山排水处理的适当反应器设计的基础的用途,其中包括硫酸盐的高还原率和金属硫化物的沉淀。与有机废物的共同处置一起,产生了藻类生物质,作为用于SRB生产的独立碳源。通过试行全面过程的实施,已证明了按定制设计的高速率藻类收集工艺处理制革厂废水,以及将其用作金属硫化物的生成和沉淀中的碳源。据报道,矿山排水和锌精炼厂废水均得到处理。已经利用微藻生产在碱度的产生和金属的生物吸附去除中的补充作用,并且已经描述了一种集成的“用于处理酸性和金属废水的藻类硫酸盐还原池工艺”(ASPAM)。

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