废水处理中生物固体厌氧共消化生产沼气

K. Dölle, M. Fritz
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引用次数: 0

摘要

随着世界人口的不断增长和对繁荣的不断追求,对能源的需求也在不断增长。沼气及其升级为生物甲烷是繁荣和可持续的能源,甚至允许使用天然气基础设施。使用不同细菌培养物进行废水处理的沼气生产可以分散,而且成本不高。本研究的目的是集中在一个商业活性污泥反应器的废水生物固体和细菌的共消化,以及用于处理化粪池系统污泥的习惯细菌。研究采用设计的实验室厌氧发酵系统,温度为35-40°C(95-104°F)。活性污泥反应器细菌的生物质-气体周转率平均为170 l/kg,化粪池系统生物细菌平均为100 l/kg。利用废水处理细菌作为厌氧发酵的基础,可被认为有利于污水处理厂内的沼气生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of Biogas from Anaerobic Co-digestion of Biosolids from Wastewater Treatment
With a growing global population and the constant striving for prosperity, comes a growing demand for energy. Biogas and its upgrading to biomethane are prosperous and sustainable energy sources that even allow the use of the natural gas infrastructure. Biogas production using different bacterial cultures for wastewater treatment can be decentralized and without high costs. This aim of this research is focused on the co-digestion of wastewater biosolids and bacteria from a commercial activated sludge reactor, and customary bacteria used for the treatment of septic systems sludge. The research was performed with a designed laboratory anaerobic fermentation system at 35-40°C (95-104°F). The biomass-gas turnover rate is on average 170 l/kg for activated sludge reactor bacteria and 100 l/kg septic system bio bacteria. The application of wastewater treatment bacteria as basis for anaerobic fermentation can be considered beneficial for biogas production within wastewater treatment plants.
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