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Enhancement of Biogas Production Efficiency Using Appropriate Low-Temperature Pretreatments of Municipal Treatment Plants' Excess Sludge

机译:通过适当的低温预处理市政处理厂的剩余污泥提高沼气生产效率

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Excess sludge in municipal plants normally contains high amounts of organic compounds (chemical oxygen demand [COD] of about 60,000 mg/L) and is capable of producing biogas. Anaerobic digestion is one of current methods to produce biogas. Municipal treatment plants' excess sludge contains high amounts of microbial cells with robust walls which inhibit microorganisms' access to the cells' organic content. This decreases biogas production efficiency as well as prolongs the time of anaerobic digestion process. In this study, a combination of the low-temperature pretreatment techniques was used to increase biogas production efficiency in Isfahan South treatment plant. Through the mentioned techniques, which involve chemical, alkaline, microwave, and mechanical pretreatments, the cells' external structure is decomposed, and microorganisms' access to organic content is facilitated. All the experiments were carried out in two stages. The results of the first stage show that the highest amount of biogas efficiency is 365 mL/g COD for the sample under alkaline pretreatment by NaOH at 20 degrees C and pH = 12. The results of the second stage demonstrate that the highest rates of biogas production efficiency are obtained in samples under chemical pretreatment by KOH on secondary sludge at an ambient temperature (22 degrees C), and under 2400 H2O2 oxidation, respectively. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38:e13072, 2019
机译:城市工厂中的过量污泥通常包含大量有机化合物(化学需氧量[COD]约为60,000 mg / L),并且能够产生沼气。厌氧消化是目前生产沼气的方法之一。市政处理厂的剩余污泥中含有大量微生物细胞,这些微生物的细胞壁坚固,从而抑制了微生物获取细胞中有机物的途径。这降低了沼气的生产效率,并延长了厌氧消化过程的时间。在这项研究中,低温预处理技术的组合用于提高伊斯法罕南部处理厂的沼气生产效率。通过涉及化学,碱性,微波和机械预处理的上述技术,细胞的外部结构被分解,并且微生物获得有机物的途径更加便利。所有实验分两个阶段进行。第一阶段的结果表明,在NaOH于20摄氏度和pH = 12的条件下进行碱性预处理时,样品的沼气效率最高,为365 mL / g COD。第二阶段的结果表明,沼气的利用率最高分别在环境温度(22摄氏度)和2400 H2O2氧化条件下,通过KOH在二级污泥上进行化学预处理的样品中获得了生产效率。 (c)2018年美国化学工程师学会Environ Prog,38:e13072,2019

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