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A Combined Activated Sludge Anaerobic Digestion Model (CASADM) to understand the role of anaerobic sludge recycling in wastewater treatment plant performance

机译:一种联合活性污泥厌氧消化模型(CasaDm),用于了解厌氧污泥回收在污水处理厂性能中的作用

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摘要

abstract: The Combined Activated Sludge-Anaerobic Digestion Model (CASADM) quantifies the effects of recycling anaerobic-digester (AD) sludge on the performance of a hybrid activated sludge (AS)-AD system. The model includes nitrification, denitrification, hydrolysis, fermentation, methanogenesis, and production/utilization of soluble microbial products and extracellular polymeric substances (EPS). A CASADM example shows that, while effluent COD and N are not changed much by hybrid operation, the hybrid system gives increased methane production in the AD and decreased sludge wasting, both caused mainly by a negative actual solids retention time in the hybrid AD. Increased retention of biomass and EPS allows for more hydrolysis and conversion to methane in the hybrid AD. However, fermenters and methanogens survive in the AS, allowing significant methane production in the settler and thickener of both systems, and AD sludge recycle makes methane formation greater in the hybrid system.
机译:摘要:联合活性污泥厌氧消化模型(CASADM)量化了厌氧消化器(AD)回收污泥对混合活性污泥(AS)-AD系统性能的影响。该模型包括硝化,反硝化,水解,发酵,产甲烷作用以及可溶性微生物产物和细胞外聚合物(EPS)的生产/利用。一个CASADM实例表明,虽然混合操作不会使废水的COD和N发生很大变化,但混合系统却能增加AD中甲烷的产生并减少污泥的浪费,这两者都是由于混合AD中的实际固体保留时间为负值所致。增加的生物质和EPS的保留量允许在混合AD中进行更多的水解和转化为甲烷。但是,发酵罐和产甲烷菌在AS中得以幸存,这使两个系统的沉降器和增稠器中均产生大量甲烷,而AD污泥的再循环使混合系统中甲烷的形成更大。

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  • 年度 2013
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