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提高废水污泥和橄榄废物的厌氧消化效率:共消化和超声/微波污泥预处理的协同作用。

Enhancement of anaerobic digestion efficiency of wastewater sludge and olive waste: Synergistic effect of co-digestion and ultrasonic/microwave sludge pre-treatment.

机构信息

Bogazici University, Institute of Environmental Sciences, 34342, Bebek, Istanbul, Turkey.

Bogazici University, Institute of Environmental Sciences, 34342, Bebek, Istanbul, Turkey.

出版信息

Waste Manag. 2015 Dec;46:182-8. doi: 10.1016/j.wasman.2015.08.020. Epub 2015 Aug 25.

Abstract

This study investigates the effect of ultrasonic and microwave pre-treatment on biogas production from the anaerobic co-digestion of olive pomace and wastewater sludges. It was found that co-digestion of wastewater sludge with olive pomace yielded around 0.21 L CH4/g VS added, whereas the maximum methane yields from the mono-digestion of olive pomace and un-pretreated wastewater sludges were 0.18 and 0.16L CH4/g VS added. In the same way, compared to mono-digestion of these substrates, co-digestion increased methane production by 17-31%. The microwave and ultrasonic pre-treatments applied to sludge samples prior to co-digestion process led to further increase in the methane production by 52% and 24%, respectively, compared to co-digestion with un-pretreated wastewater sludge. The highest biogas and methane yields were obtained from the co-digestion of 30 min microwave pre-treated wastewater sludges and olive pomace to be 0.46 L/g VS added and 0.32 L CH4/g VS added, respectively.

摘要

本研究考察了超声和微波预处理对橄榄渣和废水污泥厌氧共消化产沼气的影响。结果发现,废水污泥与橄榄渣共消化的产甲烷量约为 0.21 L CH4/g VS 添加,而橄榄渣和未经预处理的废水污泥的最大甲烷产量分别为 0.18 和 0.16 L CH4/g VS 添加。同样,与这些基质的单消化相比,共消化使甲烷产量增加了 17-31%。与未经预处理的废水污泥共消化相比,微波和超声预处理分别使污泥样品在共消化过程中的甲烷产量增加了 52%和 24%。从 30 分钟微波预处理的废水污泥和橄榄渣的共消化中获得了最高的沼气和甲烷产量,分别为 0.46 L/g VS 添加和 0.32 L CH4/g VS 添加。

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