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采用统一的高速厌氧消化系统同时处理污水污泥和食物垃圾。

Simultaneous treatment of sewage sludge and food waste by the unified high-rate anaerobic digestion system.

作者信息

Kim H W, Han S K, Shin H S

机构信息

Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, 373-1 Guseong-dong, Yuseong-gu, Daejeon 305-701, Korea.

出版信息

Water Sci Technol. 2006;53(6):29-35. doi: 10.2166/wst.2006.166.

Abstract

This study aimed to evaluate the performance of the unified high-rate anaerobic digestion (UHAD) system treating co-substrate of sewage sludge and food waste. A 24-hr operating sequence consisted of four steps including fill, react, settle, and draw. The effects of co-substrate and organic loading rate (OLR) on the performance were investigated to verify the system applicability. In each OLR, the UHAD system showed higher CH4 recovery (> 70%), CH4 yield (0.3 L CH4/g VSadded) and CH4 production rate (0.6 L CH4/L/d) than the control system. In the specific methanogenic activity (SMA) tests on thermophilic biomass of the UHAD system, the average SMA of acetate (102 mL CH4/gVSS/d) was much higher than those of butyrate (85 mL CH4/g SS/d) and propionate (42 mL CH4/gVSS/d). It was demonstrated that the UHAD system for co-digestion resulted in higher methane yield and methane production rate due to sequencing batch operation, thermophilic digestion, and co-digestion. The enhanced performance could be attributed to longer retention time of active biomass, faster hydrolysis, higher CH4 conversion rate, and balanced nutrient conditions of co-substrate in the UHAD system. Consequently, this optimized unification could be a viable option for the simultaneous treatment of two types of OFMSW with high stability.

摘要

本研究旨在评估一体化高速厌氧消化(UHAD)系统处理污水污泥和食物垃圾共基质的性能。一个24小时的运行序列包括填充、反应、沉淀和排水四个步骤。研究了共基质和有机负荷率(OLR)对性能的影响,以验证该系统的适用性。在每个OLR条件下,UHAD系统的甲烷回收率(>70%)、甲烷产量(0.3 L CH4/g VS添加量)和甲烷产生速率(0.6 L CH4/L/d)均高于对照系统。在对UHAD系统嗜热生物质的比产甲烷活性(SMA)测试中,乙酸盐的平均SMA(102 mL CH4/gVSS/d)远高于丁酸盐(85 mL CH4/g SS/d)和丙酸盐(42 mL CH4/gVSS/d)。结果表明,由于序批式运行、嗜热消化和共消化,用于共消化的UHAD系统具有更高的甲烷产量和甲烷产生速率。性能的提高可归因于UHAD系统中活性生物质的保留时间更长、水解更快、甲烷转化率更高以及共基质的营养条件更平衡。因此,这种优化的一体化方法可能是同时稳定处理两种有机易腐生活垃圾的可行选择。

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