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Hydrogen Fermentation and Methane Production from Sludge with Pretreatments

机译:预处理后污泥的氢气发酵和甲烷生产

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Excess wastewater sludge collected from the recycling stream of the wastewater treatment process of the food industry is biomass that has a high potential to produce energy. This work examined the anaerobic digestion of wastewater sludge using a Clostridium strain isolated from the sludge as the seed sludge. Four pretreatments (acidification, basification, freezing/thawing, and sterilization) were applied on wastewater sludge, and their effects on biogas yields were examined. The suspension pH and the presence of strains in seed sludge and sludge substrate significantly affected the fermentation process for wastewater sludge. The pretreatment using basification, freezing and thawing, and sterilization enhanced methane production. A critical pH of above 5.5 was needed to initiate the methanogenesis stage. Acidification could yield control of the fermentation process of wastewater sludge to separate into two sequential stages.
机译:从食品工业废水处理过程的循环流中收集的过量废水污泥是生物质,具有产生能源的巨大潜力。这项工作使用从污泥中分离出的梭状芽胞杆菌菌株作为种子污泥,研究了废水污泥的厌氧消化。对废水污泥进行了四种预处理(酸化,碱化,冷冻/融化和灭菌),并检查了它们对沼气产量的影响。悬浮液的pH值以及种子污泥和污泥基质中菌株的存在显着影响废水污泥的发酵过程。使用碱化,冷冻和解冻以及灭菌的预处理提高了甲烷的产生。需要超过5.5的临界pH值才能启动甲烷生成阶段。酸化可以控制废水污泥的发酵过程,使其分为两个连续的阶段。

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