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Methane production and solids destruction in an anaerobic solid waste reactor due to post-reactor caustic and heat treatment

机译:由于后反应器的苛性和热处理,厌氧固体废物反应器中的甲烷生产和固体破坏

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This study was undertaken to determine the feasibility of caustic and heat treatment of sludge from a dry anaerobic reactor (DAR) with respect to increased methane production and solids destruction. The DAR was operated semi-continuously at 55 degrees C on sized-reduced municipal solid waste at a solids retention time of 15 days. A respirometer was employed to monitor the extent and rate of methane production from anaerobic biodegradation of DAR sludge that was treated with caustic and heat. Results indicate that caustic and heat treatment at 50 degrees C and 175 degrees C increased methane production by 22% and 52%, respectively. Also, volatile solids destruction increased from 46% to 58% and 83%, respectively. Based on these results, economic analysis for a full-scale 105 kg/d facility suggests that annual project revenue for 50 degrees C and 175 degrees C treatment is estimated at
机译:进行这项研究是为了确定从干式厌氧反应器(DAR)进行的污泥进行苛性和热处理的可行性,以提高甲烷的产生和固体破坏能力。 DAR在55摄氏度下对尺寸缩小的城市固体废物进行半连续操作,固体保留时间为15天。使用呼吸计来监测经碱和热处理的DAR污泥厌氧生物降解产生甲烷的程度和速率。结果表明,在50摄氏度和175摄氏度进行苛性碱和热处理可以分别将甲烷生成量提高22%和52%。另外,挥发性固体的破坏率分别从46%增加到58%和83%。根据这些结果,对105千克/天的大型设施进行的经济分析表明,估计50摄氏度和175摄氏度处理的年度项目收入为

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