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Biogas Production by Co-Digestion of Canteen Food Waste and Domestic Wastewater under Organic Loading Rate and Temperature Optimization

机译:在有机负荷率和温度优化下共同消化食堂食物垃圾和生活废水产生沼气

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The objective of this study was to characterize biogas production performance from the co-digestion of food waste and domestic wastewater under mesophilic (35 ± 1 °C) and thermophilic (55 ± 1 °C) conditions. The food waste used as a co-substrate in this study was collected from a main canteen at the Hatyai campus of Prince of Songkla University, Songkhla Province, Thailand. The optimum co-digestion ratio and temperature conditions in a batch experiment were selected for a semi-continuous experiment. Organic loading rates (OLRs) of 0.66, 0.33, and 0.22 g volatile solid (VS) L ?1 d ?1 were investigated in a semi-continuous experiment by continuously stirring a tank reactor (CSTR) for biogas production. The highest biomethane potential (BMP, 0.78 ml CH 4 mg ?1 VS removal) was achieved with a ratio of food waste to domestic wastewater of 10:90 w / v at a mesophilic temperature. An OLR of 0.22 g VS L ?1 d ?1 of co-digestion yielded positive biogas production and organic removal. The findings of this study illustrate how biogas production can be used for operating feed conditions and control for anaerobic co-digestion of domestic wastewater and food waste from a university canteen.
机译:这项研究的目的是通过在中温(35±1°C)和嗜热(55±1°C)条件下共同消化食物垃圾和生活废水来表征沼气生产性能。本研究中用作共同底物的餐厨垃圾是从泰国宋卡府宋卡王子大学哈合校区的一个主要食堂收集的。在半连续实验中,选择了批量实验中的最佳共消化比例和温度条件。通过连续搅拌罐式反应器(CSTR)进行沼气生产,在半连续实验中研究了0.66、0.33和0.22 g挥发性固体(VS)L?1 d?1的有机负荷率(OLRs)。在中温温度下,食物垃圾与生活废水的比例为10:90 w / v,可实现最高的生物甲烷潜力(BMP,0.78 ml CH 4 mg≤1VS去除)。共消化的OLR为0.22 g VS L?1 d?1,产生了积极的沼气产生和有机物去除。这项研究的结果说明了如何将沼气生产用于操作饲料条件,以及如何控制大学食堂对生活废水和食物垃圾的厌氧共消化。

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