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Feasibility of Co-Treating Olive Mill Wastewater and Acid Mine Drainage

机译:共处理橄榄磨废水和酸性矿喷射的可行性

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Previous tests using a growth medium and olive mill wastewater (OMWW) have shown that it supplies carbon and electron donors suitable for sulphate reducing bacteria (SRB). We assessed the co-treatment of acid mine drainage (AMD) and OMWW using SRB-enriched bioreactors and identified the most abundant bacterial populations present under optimized conditions. The process requires a neutralizing agent to create optimal pH conditions for successful removal of the AMD's main contaminants. Concentrations of SO42-, Al, Fe, Cu, Zn, and Mn decreased to below Portugal's maximum admissible values for irrigation waters, and all but Mn were reduced to less than Portugal's emission limit values (ELVs) for wastewater discharges. Phenol concentrations-the main pollutants in OMWW-dropped to values between 1/10 and 1/5 their initial concentrations in batch tests using mixtures of AMD and OMWW, and to 1/2 their initial concentrations in flow-through tests. The final total phenol concentrations were still above the ELV for wastewater discharges, but phenols are not regulated in irrigation waters, and OMWW is used by some producers to irrigate soils. Six main SRB groups were identified as likely having a fundamental role in the bioremediation process: the generaDesulfovibrio,Sulfurospirillum, andAcetobacterand the familiesSphingomonadaceae,Prevotellaceae, andDeferribacteraceae.
机译:先前使用生长培养基和橄榄磨废水(OMWW)的试验表明,它提供适用于硫酸盐还原细菌(SRB)的碳和电子供体。我们评估了使用SRB富集的生物反应器的酸性矿渗流(AMD)和OMWW的共处理,并确定了在优化条件下存在的大量细菌群体。该过程需要中和剂来创造最佳pH条件以成功去除AMD的主要污染物。 SO42-,Al,Fe,Cu,Cu,Zn和Mn的浓度降低至葡萄牙的最大可允许值的灌溉水域,而MN的所有情况降低至少于葡萄牙的排放限值(ELV),用于废水排放。苯酚浓度 - 综合污染物中的污染物在1/10和1/5之间的值,其初始浓度在批量试验中使用AMD和OMWW的混合物进行批量试验,并在流通测试中的初始浓度为1/2。最终的总酚浓度仍然高于ELV的废水排出,但酚类在灌溉水域中不受调节,一些生产者使用OMWW来灌溉土壤。六个主要的SRB组是在生物修复过程中具有基本作用的可能性:Generadesulfoviro,Sulfurospirulum,Andacetobacterand The Familiessphingomonadaceae,Frvotellaceae,Anddeferribacteraceae。

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