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Evaluation of a portable in-house greywater treatment system for potential water- reuse in urban areas

机译:对便携式内部灰水处理系统进行评估,以实现城市地区潜在的中水回用

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摘要

This study aims at improving greywater reuse potential. An advanced physical filtration system named as GAC-MI-ME was developed to attain multi-grade effluents for versatile reuse of greywater. It consists of a matrix of treatment trains including coarse filtration, microfiltration, activated carbon, ultrafiltration, ultraviolet, and reverse osmosis. A preliminary set of experiments were conducted to characterize the greywater originating from shower, washbasin, and laundry. The samples were subsequently treated through GAC-MI-ME system. It was observed that the activated carbon along with microfiltration and coarse filtration played vital roles as pre-filtration for ultrafiltration and reverse osmosis. The contaminant load distributions of GAC-MI-ME system were observed with an average of 90.4% turbidity and 53.2% of biochemical oxidation demand (BOD5) as the pre-filtration, whereas the effluents at ultrafiltration and reverse osmosis showed unrestricted water reuse possibilities. The GAC-MI-ME system can be envisioned as advancement to the conventionally applied greywater treatments.
机译:这项研究旨在提高中水回用的潜力。开发了一种名为GAC-MI-ME的先进物理过滤系统,以获得多级废水,以实现灰水的多用途回用。它由一系列的处理流程组成,包括粗滤,微滤,活性炭,超滤,紫外线和反渗透。进行了一组初步的实验,以表征源自淋浴,洗脸池和衣物的中水。样品随后通过GAC-MI-ME系统进行处理。观察到,活性炭以及微滤和粗滤在超滤和反渗透的预过滤中起着至关重要的作用。预过滤时,GAC-MI-ME系统的污染物负荷分布平均为90.4%的浊度和生化氧化需求(BOD5)的53.2%,而超滤和反渗透的废水显示出无限制的水回用可能性。可以预想GAC-MI-ME系统是对常规应用的灰水处理的改进。

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