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中温与高温温度共相厌氧消化与污泥单级中温及高温消化的比较

Mesophilic and thermophilic temperature co-phase anaerobic digestion compared with single-stage mesophilic- and thermophilic digestion of sewage sludge.

作者信息

Song Young-Chae, Kwon Sang-Jo, Woo Jung-Hui

机构信息

Division of Civil and Environmental System Engineering, Korea Maritime University, 1, Dongsam-Dong, Yeongdo-Gu, Busan 606-791, South Korea.

出版信息

Water Res. 2004 Apr;38(7):1653-62. doi: 10.1016/j.watres.2003.12.019.

Abstract

The performance of thermophilic and mesophilic temperature co-phase anaerobic digestions for sewage sludge, using the exchange process of the digesting sludge between spatially separated mesophilic and thermophilic digesters, was examined, and compared to single-stage mesophilic and thermophilic anaerobic digestions. The reduction of volatile solids from the temperature co-phase anaerobic digestion system was dependent on the sludge exchange rate, but was 50.7-58.8%, which was much higher than 46.8% of single-stage thermophilic digestion, as well as 43.5% of the mesophilic digestion. The specific methane yield was 424-468 mL CH(4) per gram volatile solids removed, which was as good as that of single-stage mesophilic anaerobic digestion. The process stability and the effluent quality in terms of volatile fatty acids and soluble chemical oxygen demand of the temperature co-phase anaerobic digestion system were considerably better than those of the single-stage mesophilic anaerobic processes. The destruction of total coliform in the temperature co-phase system was 98.5-99.6%, which was similar to the single-stage thermophilic digestion. The higher performances on the volatile solid and pathogen reduction, and stable operation of the temperature co-phase anaerobic system might be attributable to the well-functioned thermophilic digester, sharing nutrients and intermediates for anaerobic microorganisms, and selection of higher substrate affinity anaerobic microorganisms in the co-phase system, as a result of the sludge exchange between the mesophilic and thermophilic digesters.

摘要

采用空间分离的中温与高温消化池之间消化污泥的交换工艺,对污水污泥进行高温与中温共相厌氧消化性能进行了研究,并与单级中温及高温厌氧消化进行了比较。共相厌氧消化系统中挥发性固体的减少量取决于污泥交换率,为50.7% - 58.8%,远高于单级高温消化的46.8%以及中温消化的43.5%。每去除1克挥发性固体的比甲烷产量为424 - 468毫升CH₄,与单级中温厌氧消化相当。共相厌氧消化系统在挥发性脂肪酸和溶解性化学需氧量方面的工艺稳定性和出水水质明显优于单级中温厌氧工艺。共相系统中总大肠菌群的杀灭率为98.5% - 99.6%,与单级高温消化相近。共相厌氧系统在挥发性固体和病原体减少方面表现更优以及运行稳定,可能归因于功能良好的高温消化池,为厌氧微生物共享营养物质和中间产物,以及由于中温与高温消化池之间的污泥交换,在共相系统中选择了对底物亲和力更高的厌氧微生物。

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