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首页> 外文期刊>Water Science and Technology >The energy-saving anaerobic baffled reactor membrane bioreactor (EABR-MBR) system for recycling wastewater from a high-rise building
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The energy-saving anaerobic baffled reactor membrane bioreactor (EABR-MBR) system for recycling wastewater from a high-rise building

机译:节能厌氧折流板式膜生物反应器(EABR-MBR)系统,用于回收高层建筑中的废水

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摘要

A novel energy-saving anaerobic baffled reactor-membrane bioreactor (EABR-MBR) system has been developed as a compact biological treatment system for reuse of water from a high-rise building. The anaerobic baffled reactor (ABR) compartment had five baffles and served as the anaerobic degradation zone, followed by the aerobic MBR compartment. The total operating hydraulic retention time (HRT) of the EABR-MBR system was 3 hours (2 hours for ABR compartment and very short HRT of 1 hour for aerobic MBR compartment). The wastewater came from the Charoen Wisawakam building. The results showed that treated effluent quality was quite good and highly promising for water reuse purposes. The average flux of the membrane was kept at 30 l/(m(2)h). The EABR-MBR system could remove chemical oxygen demand, total nitrogen and total phosphorus from building wastewater by more than 90%. Moreover, it was found that phosphorus concentration was rising in the ABR compartment due to the phosphorus release phenomenon, and then the concentration decreased rapidly in the aerobic MBR compartment due to the phosphorus uptake phenomenon. This implies that phosphorus-accumulating organisms inside the EABR-MBR system are responsible for biological phosphorus removal. The research suggests that the EABR-MBR system can be a promising system for water reuse and reclamation for high-rise building application in the near future.
机译:作为一种紧凑的生物处理系统,已开发出一种新颖的节能厌氧折流板式膜生物反应器(EABR-MBR)系统,可用于高层建筑中的水再利用。厌氧折流板反应器(ABR)隔室有五个折流板,用作厌氧降解区,其后是有氧MBR隔室。 EABR-MBR系统的总工作液压保持时间(HRT)为3小时(ABR隔室为2小时,有氧MBR隔室为1小时的非常短的HRT)。废水来自Charoen Wisawakam大楼。结果表明,处理后的废水质量相当好,非常有希望用于水的再利用。膜的平均通量保持在30 l /(m(2)h)。 EABR-MBR系统可以将建筑废水中的化学需氧量,总氮和总磷去除90%以上。而且,发现由于磷释放现象,ABR隔室中的磷浓度升高,然后由于磷吸收现象,好氧MBR隔室中的磷浓度迅速降低。这意味着EABR-MBR系统内部的富磷生物负责生物除磷。研究表明,EABR-MBR系统在不久的将来可以成为用于高层建筑中水回用和再生的有前途的系统。

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