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首页> 外文期刊>Journal of Environmental Management >The NEWgenerator™ non-sewered sanitation system: Long-term field testing at an informal settlement community in eThekwini municipality,South Africa
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The NEWgenerator™ non-sewered sanitation system: Long-term field testing at an informal settlement community in eThekwini municipality,South Africa

机译:Newgenerator™非污水卫生系统:在南非Ethekwini Municipality的非正式结算社区的长期现场测试

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摘要

Globally, there is a dire need for a new class of advanced non-sewered sanitation systems (NSSS) to provide onsite wastewater treatment that is capable of meeting stringent discharge or reuse criteria. These systems need to be simple to operate and maintain, reliable, and resilient to unreliable electrical service. The NEWgenerator (NG) is a compact, automated, solar-powered wastewater treatment system comprised of three major treatment processes: anaerobic membrane bioreactor (AnMBR), nutrient capture system (NCS) with ion exchange and carbon sorption, and electrochlorination (EC). The NG system operated at an informal settlement community in South Africa over a 534 d period, treating high-strength blackwater (BW) and yellow water (YW) from a public toilet facility. Over three test stages (BW, BW + YW, BW) that included several periods of dormancy, the NG system was able to provide a high level of removal of total suspended solids (97.6 ± 3.1%), chemical oxygen demand (94.5 ± 5.0%), turbidity (96.3 ± 9.7%), color (92.0 ± 10.5%), total nitrogen (82.1 ± 24.0%), total phosphorus (43.0 ± 22.1%), E. coli (7.4 ± 1.5 LRV, not detected in effluent), and helminth ova (not detected in effluent). The treatment levels met most of the ISO 30500 NSSS standard for liquid effluent and local water reuse criteria. A series of maintenance events were successfully conducted onsite over the 534 d field trial: two membrane cleanings, two NCS regenerations, and granular activated carbon replacement. Desludging, a major pain point for onsite sanitation systems, was unnecessary during the field trial and thereby not performed. The AnMBR performed well, removing 94.5 ± 5.0% of the influent COD across all three stages. The high COD removal rate is attributed to the sub-micron separation provided by the ultrafiltration membrane. The NCS was highly efficient at removing total nitrogen, residual COD and color, but the regeneration process was lengthy and is a topic of ongoing research. The EC provided effective disinfection, but frequent prolonged run cycles due to power supply and water quality issues upstream limited the overall system hydraulic throughput. This extended field trial under actual ambient conditions successfully demonstrated the feasibility of using advanced NSSS to address the global water and sanitation crises.
机译:在全球范围内,有一种新的高级非污水卫生系统(NSSS)的需求,以提供能够满足严格排放或重用标准的现场废水处理。这些系统需要简单地操作和维护,可靠,并适应不可靠的电气服务。 NewGenerator(NG)是一种紧凑,自动化的太阳能废水处理系统,包括三个主要处理过程:厌氧膜生物反应器(ANMBR),具有离子交换和碳吸附的营养捕获系统(NCS),以及电氯化(EC)。 NG系统在南非的一个非正式结算界经营,超过534年的时间,从公共厕所设施处理高强度黑水(BW)和黄色水(YW)。在包含几个休眠期的三个测试阶段(BW,BW + YW,BW),NG系统能够提供高水平的去除总悬浮固体(97.6±3.1%),化学需氧量(94.5±5.0 %),浊度(96.3±9.7%),颜色(92.0±10.5%),总氮气(82.1±24.0%),总磷(43.0±22.1%),大肠杆菌(7.4±1.5 LRV,在流出物中未检测到) )和Helminth Ova(在流出物中未检测到)。治疗水平符合液体流出物和局部水再利用标准的大部分ISO 30500 NSSS标准。在534 D现场试验中成功进行了一系列维护事件:两个膜清洁,两个NCS再生和颗粒状活性炭替代品。在现场试验期间,在现场卫生系统的主要痛点,在现场卫生系统中是不必要的,从而不需要进行。 ANMBR表现良好,在所有三个阶段中除去94.5±5.0%的流动鳕鱼。高COD去除率归因于超滤膜提供的亚微米分离。 NCS在去除总氮气,残留鳕鱼和颜色时高效,但再生过程冗长,是持续研究的主题。 EC提供了有效的消毒,但由于电源和水质问题,频繁的长期运行周期上游限制了整体系统液压产量。在实际环境条件下的这种扩展现场试验成功地证明了使用高级NSSS解决全球水和卫生危机的可行性。

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