首页> 外文期刊>Journal of Environmental Management >A modified MBR system with post advanced purification for domestic water supply system in 180-day CELSS: Construction, pollutant removal and water allocation
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A modified MBR system with post advanced purification for domestic water supply system in 180-day CELSS: Construction, pollutant removal and water allocation

机译:在180天的CELSS中,用于家庭供水系统的经过事前净化的改良MBR系统:施工,污染物去除和水分配

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Water supply was vital to people's life, especially inside Controlled Ecological Life Support System (CELSS) for long-term space exploration. A platform of 4-person-180-day integrated experiment inside a CELSS including 6 cabins called 'SPACEnter' was established in Shenzhen, China. Based on this platform, a Membrane Bio-Reactor (MBR) system configuring post advanced purification, including I-MBR, II-MBR, nanofiltration (NF), reverse osmosis (RO), ion-exchange (IE), polyiodide disinfection (PI) and mineralization (MC) stages, used as a Domestic Water Supply System (DWSS) to guarantee crew's daily life was constructed. The performance of DWSS to treat the real plant cabin's condensate water was examined during continuously 180-day experiment. The long-term operation results showed that, though the influent pollutant load changed as the experiment processing, the system exhibited stable performance on pollutants removal with average effluent TOC 0.5 mg/L, NH4+-N 0.02 mg/L, NO3--N 0.25 mg/L, NO2--N 0.001 mg/L, and displayed good capacity for controlling the trace metal ions and microorganism. The effluent through such modified MBR system was sufficiently allocated as hygiene water and potable water, and the average value was 39.69 and 10.93 L/d, respectively. The consumption of the modified MBR process was within the designed allowable scope. The outcomes of this study will be helpful for facilitating future applications of MBR as bio-based water supply technology in the CELSS.
机译:供水对于人们的生活至关重要,尤其是在长期太空探索的受控生态生命支持系统(CELSS)内部。在中国深圳建立了包括6个舱位在内的CELSS内部的4人180天综合实验平台。基于该平台的膜生物反应器(MBR)系统配置了后期纯化,包括I-MBR,II-MBR,纳滤(NF),反渗透(RO),离子交换(IE),聚碘化物消毒(PI) )和矿化(MC)阶段,用作住宅供水系统(DWSS)以确保船员的日常生活。在连续180天的实验过程中,检查了DWSS处理真实植物舱室冷凝水的性能。长期运行结果表明,尽管进水污染物负荷随着实验过程的变化而变化,但该系统在去除污染物方面仍表现出稳定的性能,平均出水TOC <0.5 mg / L,NH4 + -N <0.02 mg / L,NO3-- N <0.25 mg / L,NO2--N <0.001 mg / L,显示出良好的控制痕量金属离子和微生物的能力。经过这种改进的MBR系统的废水被充分分配为卫生用水和饮用水,其平均值分别为39.69和10.93 L / d。修改后的MBR流程的使用量在设计的允许范围内。这项研究的结果将有助于促进MBR作为CELSS中基于生物的供水技术的未来应用。

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