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Thermal Energy Interchange During Anaerobic Methane Fermentation of Waste Organic Substrates

机译:废弃有机底物厌氧甲烷发酵过程中的热能交换

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摘要

An experimental calorimeter-type anaerobic fermentation system was developed to evaluate the extent of thermal energy interchange during anaerobic digestion of waste organic solids at 36 C. Results over a period of 184 days indicated that the energy released during conversion of the waste substrate was utilized primarily for the production of CH4 and that any excess released as heat during normal digestion was not sufficient to overcome heat losses from the system. The more exothermic response observed during retarded digestion was attributed to the accumulation of volatile acids and associated reduction in gas yields. After combustion of the CH4 produced during digestion, between 2,370 and 3,950 kcal per lb of volatile solids converted per day was available for heating the process and maintaining optimal temperature conditions.
机译:开发了一个实验量热计式厌氧发酵系统,以评估在36 C下厌氧消化有机有机废物过程中的热能交换程度。184天的结果表明,主要利用了废物底物转化过程中释放的能量对于CH4的生产来说,在正常消化过程中作为热量释放的任何过量热量都不足以克服系统的热量损失。在延迟消化过程中观察到的更多的放热反应归因于挥发性酸的积累和气体产率的降低。消化过程中产生的CH4燃烧后,每天每磅所转化的挥发性固体介于2370和3950 kcal之间,可用于加热过程并保持最佳温度条件。

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