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Biodegradation Of Cyanide Containing Effluents By Scenedesmus Obliquus

机译:斜生栅藻对废水中氰化物的生物降解

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Biological degradation of cyanide has been shown a viable and robust process for degrading cyanide in mining process wastewaters. Several algal cultures can effectively degrade cyanide as carbon and/or nitrogen source for their growth. In this study, cyanide effluent degradation by Scenedesmus obliquus was examined. Gold mill effluents containing WAD cyanide concentration of 77.9 mg/L was fed to batch unit to examine the ability of S. obliquus for degrading cyanide. Cyanide was reduced down to 6 mg/L in 77 h. Microbial growth and metal uptake of Zn, Fe and Cu was examined during cyanide degradation. The cells well adapted to high pH and the effluent contained cyanide and the metals. It is important that Zn level reduced down 50%, of the starting concentration. pH was kept at 10.3 to prevent loss of cyanide as HCN, due its volatile nature. The bio treatment process was considered to be successful in degrading cyanide in the mine process water.
机译:氰化物的生物降解已被证明是一种用于降解采矿废水中氰化物的可行且稳定的方法。几种藻类培养物可以有效降解氰化物作为其生长的碳源和/或氮源。在这项研究中,研究了斜栅藻对氰化物废水的降解。将含WAD氰化物浓度为77.9 mg / L的金厂废水进料至分批装置,以检查斜生链霉菌降解氰化物的能力。在77小时内将氰化物降至6 mg / L。在氰化物降解期间检查了锌,铁和铜的微生物生长和金属吸收。电解池非常适合高pH值,废水中含有氰化物和金属。重要的是,锌含量应降低至起始浓度的50%。由于其挥发性,pH值应保持在10.3,以防止氰化物作为HCN损失。生物处理工艺被认为可以成功地降解矿山生产用水中的氰化物。

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