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污泥回流比和混合时间对用于将食物垃圾转化为沼气和能量回收的单级厌氧消化原型装置性能的影响。

Effects of sludge recirculation rate and mixing time on performance of a prototype single-stage anaerobic digester for conversion of food wastes to biogas and energy recovery.

作者信息

Ratanatamskul Chavalit, Saleart Tawinan

机构信息

Department of Environmental Engineering, Chulalongkorn University, Bangkok, 10330, Thailand.

Inter-Department of Environmental Science, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

Environ Sci Pollut Res Int. 2016 Apr;23(8):7092-8. doi: 10.1007/s11356-015-4448-0. Epub 2015 Apr 14.

DOI:10.1007/s11356-015-4448-0
PMID:25864735
Abstract

Food wastes have been recognized as the largest waste stream and accounts for 39.25 % of total municipal solid waste in Thailand. Chulalongkorn University has participated in the program of in situ energy recovery from food wastes under the Ministry of Energy (MOE), Thailand. This research aims to develop a prototype single-stage anaerobic digestion system for biogas production and energy recovery from food wastes inside Chulalongkorn University. Here, the effects of sludge recirculation rate and mixing time were investigated as the main key parameters for the system design and operation. From the results obtained in this study, it was found that the sludge recirculation rate of 100 % and the mixing time of 60 min per day were the most suitable design parameters to achieve high efficiencies in terms of chemical oxygen demand (COD), total solids (TS), and total volatile solid (TVS) removal and also biogas production by this prototype anaerobic digester. The obtained biogas production was found to be 0.71 m(3)/kg COD and the composition of methane was 61.6 %. Moreover, the efficiencies of COD removal were as high as 82.9 % and TVS removal could reach 83.9 % at the optimal condition. Therefore, the developed prototype single-stage anaerobic digester can be highly promising for university canteen application to recover energy from food wastes via biogas production.

摘要

食物垃圾已被公认为最大的废物流,占泰国城市固体废弃物总量的39.25%。朱拉隆功大学参与了泰国能源部(MOE)下属的食物垃圾原位能源回收项目。本研究旨在开发一种单级厌氧消化原型系统,用于朱拉隆功大学校园内食物垃圾的沼气生产和能源回收。在此,研究了污泥回流率和混合时间作为系统设计和运行的主要关键参数的影响。从本研究获得的结果来看,发现100%的污泥回流率和每天60分钟的混合时间是最适合的设计参数,能够在化学需氧量(COD)、总固体(TS)和总挥发性固体(TVS)去除以及该厌氧消化原型系统的沼气生产方面实现高效率。所获得的沼气产量为0.71立方米/千克COD,甲烷含量为61.6%。此外,在最佳条件下,COD去除效率高达82.9%,TVS去除率可达83.9%。因此,所开发的单级厌氧消化原型系统在大学食堂应用中极具前景,可通过沼气生产从食物垃圾中回收能源。

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