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Biological Water Covers - A Preliminary Assessment

机译:生物水覆盖物-初步评估

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Natural oxidation of sulphide minerals in mine wastes leads to the production of acid mine drainage which is environmentally undesirable. One preferred method to minimize the oxidation of mine residues is to store them under a water cover. Although efficient, water covers might not always stop the oxidation. Inclusion of a biologically active organic layer on top of tailings was considered to further improve the effectiveness of the water cover. The capacity of the organic layer to act as an oxygen barrier and metals confiner was verified with laboratory tests.Diffusion cells were used to assess the capacity of organic materials to consume oxygen and prevent upward diffusion of zinc into the water column. A mixture of algae and duckweed was tested as an organic layer with sand used as a control. The results showed that the organic layer could completely consume oxygen and retain metals. Zinc concentrations in the surface water of the diffusion cells did not exceed 1 mg/L whereas in the control cells, concentrations were up to 10 mg/L. In Organic cells inoculated with sulphate-reducing bacteria, the Zn concentration in the surface water has been maintained to less than 0.5 mg/L.
机译:矿山废料中硫化物矿物的自然氧化导致酸性矿山排水的产生,这在环境上是不希望的。使矿渣的氧化最小化的一种优选方法是将其存储在水盖下。尽管有效,但水覆盖可能并不总是能够阻止氧化。人们认为在尾矿顶部包含生物活性有机层可进一步改善水覆盖的有效性。通过实验室测试验证了有机层充当氧气阻挡层和金属限制剂的能力。扩散池用于评估有机材料消耗氧气的能力并防止锌向上扩散到水柱中。将藻类和浮萍的混合物测试为有机层,并用沙子作为对照。结果表明,有机层可以完全消耗氧并保留金属。扩散池表面水中的锌浓度不超过1 mg / L,而对照池中的锌浓度最高为10 mg / L。在用硫酸盐还原菌接种的有机细胞中,地表水中的Zn浓度一直保持在0.5 mg / L以下。

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