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Bioactivation and bioaugmentation of a passive reactor for acid mine drainage treatment

机译:酸性矿泉排水处理无源反应器的生物活化和生物沉积

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Interest in passive remediation technologies used for acid mine drainage (AMD) treatment has been increasing considerably in the last decade. Although passive systems involving sulfate reducing activity offer many advantages, treatment performance still needs to be improved. Therefore, the application of bioactivation and bioaugmentation techniques on these systems was investigated. Bioactivation of a granular peat moss (GPM) was performed in 0.751 laboratory batch reactors with a sulfate-reducing bacteria (SRB) consortium. Bioactivation increased the average sulfate reduction rate from 69 to 167 mg/l.d. Three 9 1 columns were filled with a mixture of organic substrates, inorganic materials and a culture medium. The first column was inoculated with the bioactivated consortium, the second with a non-bioactivated sediment and the third was a control. Synthetic AMD was fed in a continuous mode. Results obtained after 60 days show similar sulfate and metal removal in all reactors with slightly higher performance in the inoculated and bioactivated columns.
机译:在过去十年中,对酸性矿区排水(AMD)治疗的被动修复技术的兴趣在很大程度上增加。虽然涉及硫酸盐减少活动的被动系统提供了许多优点,但仍需要改善治疗性能。因此,研究了对这些系统的生物活化和生物沉积技术的应用。在0.751实验室间歇式反应器中进行颗粒状泥炭苔藓(GPM)的生物活化,其具有硫酸盐还原细菌(SRB)联盟。生物活化增加了69至167mg / L.D的平均硫酸盐降低率。用有机基质,无机材料和培养基的混合物填充三个9 1柱。第一栏用生物活化的联盟接种,第二个柱具有非生物活化沉积物,第三个柱是对照。合成AMD以连续模式送入。在60天后获得的结果显示在接种和生物活化柱中具有略微较高性能的所有反应器中类似的硫酸盐和金属去除。

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