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Biological Cr(VI) reduction in indigenous sludge cultures from Gauteng, South Africa

机译:南非豪登省土著污泥文化中生物六价铬的减少

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The Cr(VI) reducing capability of an acclimated indigenous culture cultivated from primary sludge was evaluated in batch and packed-bed bioreactor systems. Performance evaluation was carried out in unmodified cultures, cultures modified by substituting terminal organisms in the consortium by a known Cr(VI)-reducing organism (Escherichia coli ATCC 33456), and pure cultures of Cr(Vi)-reducing organisms. A high Cr(VI) reduction rate was observed in modified cultures and in the pure culture of the Cr(VI)-reducing bacteria (Bacillus sp.). Furthermore, the Bacillus sp. pure culture outperformed both the unmodified and modified consortium cultures in reducing Cr(VI). Abiotic Cr(VI) reduction activity was evaluated in heat-killed and azide (N-3(-)) inactivated control cultures. No significant Cr(VI) reduction was observed in the controls. This study is part of the continuing research to identify synergistic culture systems for treating toxic compounds from polluted environments.
机译:在分批和填充床生物反应器系统中评估了从原始污泥培养的适应性本土文化对Cr(VI)的还原能力。在未修饰的培养物中进行性能评估,用已知的还原Cr(VI)的生物(大肠杆菌ATCC 33456)代替财团中的末端生物进行修饰的培养物,以及还原Cr(Vi)的生物的纯培养物。在修饰的培养物和还原Cr(VI)的细菌(芽孢杆菌)的纯培养物中观察到了较高的Cr(VI)还原率。此外,芽孢杆菌属。在减少Cr(VI)方面,纯培养优于未修饰和修饰的联合体培养。在热灭活和叠氮化物(N-3(-))灭活的对照培养物中评估了非生物Cr(VI)的还原活性。在对照中未观察到明显的Cr(VI)还原。这项研究是持续研究的一部分,该研究旨在确定用于处理污染环境中有毒化合物的协同培养系统。

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