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Manganese Removal from Metal Refinery Wastewater Using Mn(II)-Oxidizing Bacteria

机译:使用Mn(II) - 氧化细菌从金属炼油厂废水中去除锰

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There is a growing interest in the use of Mn(II)-oxidizing bacteria to treat Mn-containing metal refinery wastewaters instead of using conventional chemical approaches since the former could reduce the cost of alkaline agents and oxidants to remove Mn(II) as Mn oxides at alkaline pH. The Mn level was found naturally dropped in the industrial metal refinery wastewater treatment system, where the formation of Mn-enriched sludge was apparent. This observation motivated us to investigate the possible involvement of microbially mediated reactions. From the sludge sample, Pseudomonas sp. strain SK3 was successfully isolated and tested for its Mn(II)-oxidation characteristics. Strain SK3 completely removed 100 ppm Mn(II) within 42 hours as birnessite ((Na, Ca, K)_(0.6)(Mn~(IV), Mn~(III))_2O_4·1.5H_2O) under optimized conditions. Copper ions were found to be an important factor in promoting Mn(II) oxidation. Changes in the Mn(IV)/Mn(III) ratio during bacterial Mn(II)-oxidation indicated the involvement of 2-step one-electron transfer reactions in the formation of biogenic birnessite with Mn(III) as intermediate. Characteristics of strain SK3 were compared with those of a well-known Mn(II)-oxidizing bacterium, Pseudomonas putida strain MnB1. Strain SK3 displayed more robust Mn(II) oxidation capabilities under various severe conditions, showing its ideal characteristics for use in the industrial water treatment process.
机译:在使用Mn(II) - 氧化细菌以治疗含Mn金属炼油废水的兴趣日益增长而不是使用常规化学方法,因为前者可以降低碱性试剂和氧化剂的成本,以除去Mn(II)作为Mn碱性pH下的氧化物。在工业金属炼油废水处理系统中发现了MN水平天然掉落,其中富含Mn的污泥的形成是显而易见的。这种观察结果激发了我们调查微生物介导反应的可能参与。来自污泥样本,假单胞菌SP。成功分离出菌株SK3并测试其Mn(II) - 氧化特性。在优化条件下,应变SK3在42小时内完全除去42小时内的((Na,Ca,K)_(MN〜(IV),Mn〜(III))_ 2O_4·1.5H_2O)在40小时内除去100ppm mn(ii)。发现铜离子是促进Mn(II)氧化的重要因素。细菌Mn(II) - 氧化期间Mn(IV)/ Mn(III)比的变化表明,2步单电转移反应在形成生物生物酸盐中的形成中作为中间体。将菌株SK3的特征与众所周知的Mn(II) - 氧化细菌进行比较,假单胞菌普赖达菌株MNB1。菌株SK3在各种严重条件下显示出更强大的Mn(ii)氧化能力,显示其在工业水处理过程中使用的理想特性。

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