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首页> 外文期刊>Journal of environmental sciences >Feasibility of bioleaching combined with Fenton oxidation to improve sewage sludge dewaterability
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Feasibility of bioleaching combined with Fenton oxidation to improve sewage sludge dewaterability

机译:结合Fenton氧化进行生物浸提以提高污水污泥脱水能力的可行性

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A novel joint method of bioleaching with Fenton oxidation was applied to condition sewage sludge. The specific resistance to filtration (SRF) and moisture of sludge cake (MSC) were adopted to evaluate the improvement of sludge dewaterability. After 2-day bioleaching, the sludge pH dropped to about 2.5 which satisfied the acidic condition for Fenton oxidation. Meanwhile, the SRF declined from 6.45 x 10(10) to 2.07 x 10(10) s(2)/g, and MSC decreased from 91.42% to 87.66%. The bioleached sludge was further conditioned with Fenton oxidation. From an economical point of view, the optimal dosages of (HO2)-O-2 and Fe2+ were 0.12 and 0.036 mol/L, respectively, and the optimal reaction time was 60 min. Under optimal conditions, SRF, volatile solids reduction, and MSC were 3.43 x 10(8) s(2)/g, 36.93%, and 79.58%, respectively. The stability and settleability of sewage sludge were both improved significantly. Besides, the results indicated that bioleaching-Fenton oxidation was more efficient in dewatering the sewage sludge than traditional Fenton oxidation. The sludge conditioning mechanisms by bioleaching-Fenton oxidation might mainly include the flocculation effects and the releases of extracellular polymeric substances-bound water and intercellular water. (C) 2014 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:一种新型的芬顿氧化生物浸出联合方法被用于处理污泥。通过对滤饼的抗滤性(SRF)和污泥饼的水分(MSC)来评估污泥脱水性的提高。经过两天的生物浸提后,污泥的pH降至约2.5,这满足了Fenton氧化的酸性条件。同时,SRF从6.45 x 10(10)/ g降至2.07 x 10(10)s(2)/ g,MSC从91.42%降至87.66%。生物浸出的污泥进一步用Fenton氧化处理。从经济角度考虑,(HO2)-O-2和Fe2 +的最佳用量分别为0.12和0.036 mol / L,最佳反应时间为60分钟。在最佳条件下,SRF,挥发性固体减少量和MSC分别为3.43 x 10(8)s(2)/g、36.93%和79.58%。污水污泥的稳定性和可沉降性均得到明显提高。此外,结果表明,生物浸提-Fenton氧化法比传统的Fenton氧化法更能有效地脱水污泥。通过生物浸提-Fenton氧化进行污泥调节的机制可能主要包括絮凝作用以及结合水和细胞间水的细胞外聚合物的释放。 (C)2014中国科学院生态环境研究中心。由Elsevier B.V.发布

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