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Anaerobic digestion of co-mingled municipal solid waste and sewage sludge

机译:厌氧消化城市生活垃圾和污泥的混合

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This study evaluated the technical feasibility of the anaerobic co-digestion process in the context of typical North American solid waste. Using biological activity tests, an optimal mixture was identified with 25% organic fraction of municipal solid waste (OFMSW) and 75% sewage sludge (65% raw primary sludge (RAW), 35% thickened WAS (TWAS)) based on biogas production. Also, based on the rate of biogas production, the most anaerobically biodegradable components of the OFMSW were paper and grass. The TWAS and the newspaper were found to be the least biodegradable components. Lab-scale testing indicated that alkaline pretreatment increased the biodegradability of the sewage sludge/OFMSW mixture the most, as compared to the untreated control. Thermochemically pretreated feedstocks inhibited anaerobic biodegradability as compared to the control, whereas the anaerobic biodegradability of thermally pretreated feed was not found to be significantly different from that of the control. Empirical models were developed based on alkaline dose, feed total solids concentration and particle size far biogas production and removal of TS and VS. All three experimental factors were found to be significant with respect to the response variables studied. (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 5]
机译:这项研究评估了典型北美固体废物环境下厌氧消化过程的技术可行性。使用生物活性测试,根据沼气生产,确定了最佳混合物,该混合物具有25%的城市固体废物(OFMSW)和75%的污水污泥(65%的原始一级污泥(RAW),35%的增稠WAS(TWAS))。同样,根据沼气的产生速度,OFMSW中最厌氧的可生物降解成分是纸和草。 TWAS和报纸被发现是生物降解最少的成分。实验室规模的测试表明,与未处理的对照相比,碱预处理最大程度地提高了污水污泥/ OFMSW混合物的生物降解能力。与对照相比,热化学预处理的原料抑制了厌氧生物降解性,而热处理前的饲料的厌氧生物降解性与对照没有显着差异。基于碱性剂量,饲料总固体浓度和颗粒尺寸(远至沼气产生以及TS和VS的去除)建立了经验模型。发现所有三个实验因素对所研究的响应变量均具有重要意义。 (C)1998由Elsevier Science Ltd.出版。保留所有权利。 [参考:5]

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