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首页> 外文期刊>Journal of Cleaner Production >Roofing rainwater cleaner production using pilot-scale electrocoagulation coupled with a gravity-driven membrane bioreactor (EC-GDMBR): Water treatment and energy efficiency
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Roofing rainwater cleaner production using pilot-scale electrocoagulation coupled with a gravity-driven membrane bioreactor (EC-GDMBR): Water treatment and energy efficiency

机译:屋顶雨水清洁剂采用先导型电凝,加上重力驱动膜生物反应器(EC-GDMBR):水处理和能源效率

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摘要

A pilot-scale electrocoagulation method coupled with gravity-driven membrane bioreactor (EC-GDMBR) was conducted to roof rainwater cleaner production for long-term (120 days) operation. The utilization efficiency of roofing rainwater energy, water production efficiency, and water purification mechanism were systematically investigated. The permeate flux of the EC-GDMBR was stabilized at 17.0-20.0 L/(m(2).h), 24.6 L/(m(2).h) at given roofing rainwater heads of 0.4 and 0.6 m, respectively. Characterization of floc particle size showed that the large particle flocs (similar to 145 mu m) produced by the EC system enabled the stabilization flux improvement. A combined removal pathway (i.e., coagulation, adsorption, biodegradation, and coprecipitation) of the EC-GDMBR was found for particulate matter, ammonia nitrogen (NH3-N), total phosphorus (TP), organic substances, and heavy metal (i.e., Cr, Zn, and Cu) removal within synthetic or actual rainwater. In particular, EC could sweep the vast majority of bacteria deposited on the GDMBR, and the intensive biological activity of biofilms was demonstrated by analysis of bacterial abundance, extracellular polymeric substances (EPS), assimilable organic carbon (AOC), adenosine triphosphate (ATP), and confocal laser scanning microscopy (CLSM). Thus, a lower bacterial number (100 cells/mL) within the effluent enabled us to ensure the biological safety of cleaner product water. Furthermore, a large amount of Nitrospira (10 %-12%) and Hyphomicrobium (2 %-3%) in the aggregates formed biofilms, clarifying the NH3-N and TP removal mechanism by microbial community analysis. In summary, the novel process is capable of roofing rainwater energy utilization considering building height and effective clean water purification.
机译:通过重力驱动膜生物反应器(EC-GDMBR)耦合的先导尺度电凝率方法,以便长期(120天)运行屋顶雨水清洁剂生产。系统地研究了屋顶雨水能量,水生产效率和净水机制的利用效率。在给定屋顶雨水头部的0.4和0.6米的屋顶雨水头处,EC-GDMBR的渗透通量稳定在17.0-20.0升/(m(2).h),24.6升/(m(2).h)。絮凝粒度的表征显示,EC系统产生的大粒子絮状物(类似于145μm),使得稳定性通量改善。发现EC-GDMBR的组合去除途径(即,凝血,吸附,生物降解和共沉淀和共沉淀和共沉淀)用于颗粒物质,氨氮(NH 3-N),总磷(TP),有机物质和重金属(即, Cr,Zn和Cu)在合成或实际雨水内移除。特别是,EC可以扫除沉积在GDMBR上的绝大多数细菌,通过分析细菌丰度,细胞外聚合物物质(EPS),腺苷三磷酸腺苷(ATP)的密集生物膜的密集生物活性。和共聚焦激光扫描显微镜(CLSM)。因此,流出物中的低细菌数(&lt 19 ml)使我们能够确保清洁剂产品水的生物安全性。此外,聚集体中大量的氮氮(10%-12%)和官参(2%-3%)形成生物膜,通过微生物群落分析阐明NH3-N和TP去除机制。总之,考虑到建筑高度和有效的清洁水净化,该新方法能够屋顶雨水能量利用。

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