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添加食物垃圾对节能型好氧颗粒污泥工艺处理城市污水的影响。

Impact of food waste addition in energy efficient municipal wastewater treatment by aerobic granular sludge process.

机构信息

Civil Engineering Faculty, Department of Environmental Engineering, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey.

National Research Center On Membrane Technologies, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey.

出版信息

Environ Sci Pollut Res Int. 2024 Apr;31(20):29304-29320. doi: 10.1007/s11356-024-32997-5. Epub 2024 Apr 4.

Abstract

Recently, one of the main purposes of wastewater treatment plants is to achieve a neutral or positive energy balance while meeting the discharge criteria. Aerobic granular sludge (AGS) technology is a promising technology that has low energy and footprint requirements as well as high treatment performance. The effect of co-treatment of municipal wastewater and food waste (FW) on the treatment performance, granule morphology, and settling behavior of the granules was investigated in the study. A biochemical methane potential (BMP) test was also performed to assess the methane potential of mono- and co-digestion of the excess sludge from the AGS process. The addition of FW into wastewater enhanced the nutrient treatment efficiency in the AGS process. BMP of the excess sludge from the AGS process fed with the mixture of wastewater and FW (195 ± 17 mL CH/g VS) was slightly higher than BMP of excess sludge from the AGS process fed with solely wastewater (173 ± 16 mL CH/g VS). The highest methane yield was observed for co-digestion of excess sludge from the AGS process and FW, which was 312 ± 8 mL CH/g VS. Integration of FW as a co-substrate in the AGS process would potentially enhance energy recovery and the quality of effluent in municipal wastewater treatment.

摘要

最近,污水处理厂的主要目的之一是在满足排放标准的同时实现能量的收支平衡或正平衡。好氧颗粒污泥(AGS)技术是一种很有前途的技术,它的能源和占地面积要求低,处理性能高。本研究考察了城市污水和食物垃圾(FW)共处理对AGS 工艺处理性能、颗粒形态和颗粒沉降行为的影响。还进行了生化甲烷潜能(BMP)测试,以评估 AGS 工艺剩余污泥的单独和共消化的甲烷潜能。FW 的添加提高了 AGS 工艺中营养物质的处理效率。AGS 工艺中用废水和 FW 的混合物培养的剩余污泥的 BMP(195±17 mL CH/g VS)略高于仅用废水培养的剩余污泥的 BMP(173±16 mL CH/g VS)。AGS 工艺剩余污泥与 FW 的共消化的甲烷产率最高,为 312±8 mL CH/g VS。将 FW 作为共基质集成到 AGS 工艺中可能会增强城市污水处理厂的能量回收和出水质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f2e/11058935/a42fc87cdbfe/11356_2024_32997_Fig2_HTML.jpg

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