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Effects of temperature and HRT on performance of a novel insulated anaerobic filter (IAF) system incorporated with the waste heat input for building wastewater treatment

机译:温度和HRT对结合废热输入的新型隔热厌氧过滤器(IAF)系统性能的影响,用于建筑废水处理

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Effects of temperature and hydraulic retention time (HRT) on the performance of the novel insulated anaerobic filter system (IAF) incorporated with the waste heat input in treating building wastewater were investigated. In this study, an electric heater was used to simulate the waste heat input from air conditioner to the IAF system. The wastewater was collected from an office building in Phitsanulok province, Thailand. The HRTs of IAF system were varied to 9,18 and 27 h, whereas the water temperatures were raised from 30 ℃ to 35 ℃, 40 ℃ and 45 ℃ by electric heating to the IAF tank with the covered insulator. From the results, it was found that the IAF system with HRT 27 h and water temperature 35 ℃ had the highest removal efficiencies for SS, COD, TKN and TP at 67.71, 61.35, 51.20 and 20.08%, respectively per applied heat energy of 4.70 Wh. The predominant bacteria and Archaea species in the system were Uncultured Flavobacterium sp. and Uncultured Methanosaeta sp. The performance index of the IAF system was developed in this study as the highest treatment performance per lowest energy consumption. Therefore, the IAF system incorporated with waste heat input can be a challenging on-site wastewater treatment system for further usage of renewable energy from waste heat as well as environmental conservation.
机译:研究了温度和水力停留时间(HRT)对结合了余热输入的新型隔热厌氧滤池系统(IAF)处理建筑废水的性能的影响。在这项研究中,使用电加热器来模拟从空调向IAF系统输入的废热。废水是从泰国彭世洛府的一栋办公楼收集的。 IAF系统的HRT分别为9,18和27 h,而电加热到带有绝缘层的IAF水箱中,水温从30℃升高到35℃,40℃和45℃。从结果可以看出,HRT 27 h和水温35℃的IAF系统对SS,COD,TKN和TP的去除效率最高,分别为每施加热量4.70分别为67.71、61.35、51.20和20.08%。 Wh。该系统中的主要细菌和古细菌是未培养的黄杆菌属。和未培养的甲烷菌在这项研究中,IAF系统的性能指标被确定为最低能耗下的最高治疗性能。因此,结合废热输入的IAF系统对于进一步利用废热中的可再生能源以及保护环境而言,可能是具有挑战性的现场废水处理系统。

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