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Optimization of the operation of packed bed bioreactor to improve the sulfate and metal removal from acid mine drainage

机译:优化填充床生物反应器的操作,以改善酸性矿山排水中的硫酸盐和金属去除

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The present study discusses the potentiality of using anaerobic Packed Bed Bioreactor (PBR) for the treatment of acid mine drainage (AMD). The multiple process parameters such as pH, hydraulic retention time (HRT), concentration of marine waste extract (MWE), total organic carbon (TOC) and sulfate were optimized together using Taguchi design. The order of influence of the parameters towards biological sulfate reduction was found to be pH > MWE > sulfate > HRT > TOC. At optimized conditions (pH - 7,20% (v/v) MWE, 1500 mg/L sulfate, 48 h HRT and 2300 mg/L TOC), 98.3% and 95% sulfate at a rate of 769.7 mg/ L/d. and 732.1 mg/L/d. was removed from the AMD collected from coal and metal mine, respectively. Efficiency of metal removal (Fe, Cu, Zn, Mg and Ni) was in the range of 94-98%. The levels of contaminants in the treated effluent were below the minimum permissible limits of industrial discharge as proposed by Bureau of Indian Standards (IS 2490:1981). The present study establishes the optimized conditions for PBR operation to completely remove sulfate and metal removal from AMD at high rate. The study also creates the future scope to develop an efficient treatment process for sulfate and metal-rich mine wastewater in a large scale.
机译:本研究讨论了使用厌氧填充床生物反应器(PBR)处理酸性矿山排水(AMD)的潜力。使用Taguchi设计一起优化了多个工艺参数,例如pH,水力停留时间(HRT),海洋废弃物提取物的浓度(MWE),总有机碳(TOC)和硫酸盐。发现参数对生物硫酸盐还原的影响顺序为pH> MWE>硫酸盐> HRT> TOC。在优化条件下(pH-7,20%(v / v)MWE,1500 mg / L硫酸盐,48 h HRT和2300 mg / L TOC),98.3%和95%硫酸盐的比率为769.7 mg / L / d 。和732.1 mg / L / d。分别从煤矿和金属矿山收集的AMD中移除。金属去除效率(Fe,Cu,Zn,Mg和Ni)在94-98%的范围内。处理过的废水中的污染物含量低于印度标准局(IS 2490:1981)提出的最低工业排放许可限值。本研究建立了PBR操作的最佳条件,以高速率完全去除AMD中的硫酸盐和金属。该研究还为大规模开发有效的处理硫酸盐和富含金属的矿山废水的方法创造了未来的范围。

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