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Methane yield enhancement via electroporation of organic waste

机译:通过有机废物的电穿孔提高甲烷收率

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摘要

An experimental study with pulsed electric field (PEF) pre-treatment was conducted to investigate its effect on methane production. PEF pre-treatment converts organic solids into soluble and colloidal forms, increasing bioavailability for anaerobic microorganisms participating in methane generation process. The substrates tested were landfill leachate and fruit/vegetable. Three treatment intensities of 15, 30, and 50 kW h/m~3 were applied to investigate the influence of pre-treatment on methane production via biochemical methane potential test. Threshold treatment intensity was found to be around 30 kW h/m~3 for landfill leachate beyond which the methane production enhanced linearly with increase in intensity. Methane production of the landfill leachate significantly increased up to 44% with the highest intensity. The result of pulsed electric field pre-treatment on fruit/vegetable showed that 15 kW h/m~3 was the intensity by which the highest amount of methane (up to 7%) was achieved. Beyond this intensity, the methane production decreased. Chemical oxygen demand removals were increased up to 100% for landfill leachate and 17% for fruit/vegetable, compared to the untreated slurries. Results indicate that the treatment intensity has a significant effect on the methane production and biosolid removal.
机译:进行了脉冲电场(PEF)预处理的实验研究,以研究其对甲烷产生的影响。 PEF预处理将有机固体转化为可溶性和胶体形式,从而提高了参与甲烷生成过程的厌氧微生物的生物利用度。测试的底物是垃圾渗滤液和水果/蔬菜。通过生化甲烷电势测试研究了三种处理强度分别为15、30和50 kW h / m〜3,以研究预处理对甲烷产生的影响。垃圾渗滤液的阈值处理强度约为30 kW h / m〜3,超过此阈值,甲烷产量随强度的增加而线性增加。垃圾渗滤液的甲烷产量以最高的强度显着提高至44%。对水果/蔬菜进行脉冲电场预处理的结果表明,达到15 kW h / m〜3是达到最高甲烷含量(最高7%)的强度。超过此强度,甲烷产量下降。与未处理的泥浆相比,垃圾渗滤液的化学需氧量去除率提高了100%,水果/蔬菜的去除了17%。结果表明,处理强度对甲烷生成和生物固体去除有显着影响。

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