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Effect of Ozonation and Sonication on Biochemical Methane Potential of Biosludge from Textile Mill Effluent

机译:臭氧化和超声处理对纺织厂废水中生物污泥生化甲烷潜力的影响

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The aim of this study was to justify the method to determine biochemical methane potential (BMP) of biosludges and investigate the effect of ozonation and sonication on the biosludge from textile mill effluent to its biodegradability and toxicity. This study revealed that the exented anaerobic toxicity assay at a chemical oxygen demand (COD) concentration in the assay of about 1,500 mg/L was the appropiate technique to determine BMP of the biosludge. Moreover, it was found that the biodegradability of biosludge was satisfactorily increased by both of ozonation and sonication. The use of ozone dose of 0.005 g O3/g COD and 0.01 O3/g COD increased the biodegradability from 62% to 69% and 76%, respectively. While for sonication on frequency 51 kHz ±6%, 120 W for 30 and 60 min increased the biodegradability from 62% to 68% and 73%, respectively.
机译:这项研究的目的是证明确定生物污泥的生化甲烷潜力(BMP)的方法,并研究臭氧化和超声处理对纺织厂废水中生物污泥对其生物降解性和毒性的影响。这项研究表明,在化学需氧量(COD)浓度约为1,500 mg / L的情况下,广泛的厌氧毒性试验是确定生物污泥BMP的适当技术。此外,发现通过臭氧化和超声处理均令人满意地提高了生物污泥的生物降解性。臭氧剂量为0.005 g O3 / g COD和0.01 O3 / g COD的可生物降解性分别从62%增加到69%和76%。在51 kHz±6%的频率下进行超声处理时,120 W分别持续30分钟和60分钟,可生物降解性分别从62%增加到68%和73%。

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