Gao Xu, Lu Yan-Hua, Guo Jin-Song
Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, Chongqing University, Chongqing 400045, China.
Huan Jing Ke Xue. 2009 May 15;30(5):1475-80.
An energy balance analysis method with auto calorimeter being adopted was introduced to determine calorific values of sludge samples in influent and effluent of uncoupling tank in an anoxic (A) + oxic-settling-anaerobic (OSA) process and a reference system. The affiliation of sludge amount change and its energy content were studied, as well as potential of excess sludge reduction was evaluated through modifying performance of uncoupling tank. The characteristi s and causes of sludge reduction in OSA system were deduced according to energy and matter balance analysis. Results show that when the hydraulic retention time (HRT) of uncoupling tank are 5.56 h, 7.14 h and 9 h, the excess sludge reduction of whole A + OS Asystem are 1.236 g/d, 0.771 g/d and 0.599 g/d respectively. Energy content of sludge flows into and out of the uncoupling tank changes, the specific calorific value of sludge in effluent is inclined to be higher than that in influent with the HRT of the tank increasing: there isn't any significant difference of sludge calorific values between influent and effluent at 5.56 h, while the differences are in 99-113 J/g at 7.14 h, and 191-329 J/g at 9 h. Sludge in uncoupling tank would decay and longer HRT will result in more attenuation. It could be concluded that excess sludge reduction of A + OSA system is caused by both of sludge decay in uncoupling tank and sludge proliferation in AO reaction zone.
介绍了一种采用自动量热仪的能量平衡分析方法,以测定缺氧(A)+好氧沉淀-厌氧(OSA)工艺和解耦池进、出水污泥样品以及参考系统中的热值。研究了污泥量变化及其能量含量的关系,并通过改善解耦池性能评估了剩余污泥减量潜力。根据能量和物质平衡分析推导了OSA系统污泥减量的特征和原因。结果表明,当解耦池水力停留时间(HRT)分别为5.56 h、7.14 h和9 h时,整个A+OSA系统的剩余污泥减量分别为1.236 g/d、0.771 g/d和0.599 g/d。进出解耦池的污泥能量含量发生变化,随着解耦池HRT增加,出水污泥的比热值倾向于高于进水:在5.56 h时进出水污泥热值无显著差异,而在7.14 h时差异为99 - 113 J/g,在9 h时差异为191 - 329 J/g。解耦池中的污泥会发生衰减,HRT越长衰减越严重。可以得出结论,A+OSA系统的剩余污泥减量是由解耦池中污泥的衰减和AO反应区中污泥的增殖共同导致的。