首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Increased biogas production at wastewater treatment plants through co-digestion of sewage sludge with grease trap sludge from a meat processing plant
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Increased biogas production at wastewater treatment plants through co-digestion of sewage sludge with grease trap sludge from a meat processing plant

机译:通过共同消化来自肉类加工厂的污水污泥和油脂捕集污泥,提高废水处理厂的沼气产量

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The feasibility of co-digesting grease trap sludge from a meat-processing plant and sewage sludge was studied in batch and reactor experiments at 35 degrees C. Grease trap sludge had high methane production potential (918 m(3)/tVS(added)), but methane production started slowly. When mixed with sewage sludge, methane production started immediately and the potential increased with increasing grease trap sludge content. Semi-continuous co-digestion of the two materials was found feasible up to grease trap sludge addition of 46% of feed volatile solids (hydraulic retention time 16 d; maximum organic loading rate 3.46 kgVS/m(3) d). Methane production was significantly higher and no effect on the characteristics of the digested material was noticed as compared to digesting sewage sludge alone. At higher grease trap sludge additions (55% and 71% of feed volatile solids), degradation was not complete and methane production either remained the same or decreased. (c) 2008 Elsevier Ltd. All rights reserved.
机译:在35摄氏度的分批和反应器实验中研究了共同消化来自肉类加工厂的油脂捕集器污泥和污水污泥的可行性。油脂捕集器污泥具有很高的甲烷生产潜力(918 m(3)/ tVS(添加)) ,但甲烷生产开始缓慢。当与污水污泥混合时,甲烷立即开始生产,并且潜力随着油脂捕集器污泥含量的增加而增加。两种材料的半连续共消化被认为是可行的,直到添加了46%的进料挥发性固体的油脂捕集器污泥(水力停留时间为16 d;最大有机负荷率为3.46 kgVS / m(3)d)。与仅消化污水污泥相比,甲烷的生产量要高得多,并且对消化物的特性没有影响。在较高的油脂捕集阱污泥添加量(进料挥发性固体的55%和71%)下,降解不完全,甲烷生成量保持不变或降低。 (c)2008 Elsevier Ltd.保留所有权利。

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