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Evaluation and optimization of a new microbial enhancement plug-flow ditch system for the pretreatment of acid mine drainage: semi-pilot test

机译:用于酸性矿山排水预处理的新型微生物增强塞流沟系统的评估和优化:半中试

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摘要

Acid mine drainage (AMD) is typically characterized by low pH, a high concentration of sulfate and dissolved heavy metals. Therefore, it is of practical significance to promote the transformation of soluble Fe and SO42? into iron hydroxysulfate minerals by biomineralization of Acidithiobacillus ferrooxidans. This enhances the lime neutralization efficiency of AMD by reducing the production of ferric hydroxide and waste gypsum. In this study, a new microbial enhanced plug-flow ditch reaction system was developed for the pretreatment of AMD on a semi-pilot scale. System stability under different hydraulic retention times (HRTs) was examined and the effects of microbe enhancement-lime neutralization technology and direct lime neutralization technology were compared. The bio-oxidation efficiency of Fe2+ (5 g L?1) reached 100% in some parts of the system when HRT was 3 and 2 days, and the time taken to reach steady state was 6 and 4 days, respectively. When the HRT was 1 day, the reaction system had operated for 4 days before the equilibrium was lost. At the optimum HRT (2 days) and after the system was stable, the average precipitation rate of total Fe was 53.62% and the average removal rate of As(III) was 17.27%. Following microbial enhanced pretreatment, the amount of lime required and waste residues generated for AMD neutralization decreased by 75.00% and 85.25%, respectively. This result supports the application of microbial enhancement-lime neutralization passive treatment technology for AMD.
机译:酸性矿山排水(AMD)通常具有低pH值,高浓度的硫酸盐和溶解的重金属的特征。因此,促进可溶性Fe和SO 4 2? 向羟基硫酸铁的转化具有现实意义。亚铁硫代氧化亚铁细菌的生物矿化矿物。通过减少氢氧化铁和废石膏的产生,可以提高AMD的石灰中和效率。在这项研究中,开发了一种新的微生物增强的塞流沟反应系统,用于半试规模的AMD预处理。研究了在不同水力停留时间(HRT)下的系统稳定性,并比较了微生物强化石灰中和技术和直接石灰中和技术的效果。 Fe 2 + (5 g L ?1 )的部分生物氧化效率达到100%当HRT为3天和2天时,系统达到稳定状态所需的时间分别为6天和4天。当HRT为1天时,反应系统已运行4天,直到失去平衡。在最佳HRT(2天)和系统稳定之后,总Fe的平均沉淀率为53.62%,As( III )的平均去除率为17.27%。经过微生物强化预处理后,AMD中和所需的石灰量和产生的废渣量分别减少了75.00%和85.25%。该结果支持了微生物强化石灰中和被动处理技术在AMD中的应用。

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