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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Removal of chemical and microbiological contaminants from domestic greywater using a recycled vertical flow bioreactor (RVFB)
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Removal of chemical and microbiological contaminants from domestic greywater using a recycled vertical flow bioreactor (RVFB)

机译:使用循环垂直流式生物反应器(RVFB)去除生活污水中的化学和微生物污染物

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Reuse of domestic greywater (GW) for non-potable purposes is emerging as an important approach to the management and conservation of water resources,particularly in rural and developing areas where small-scale decentralized treatments are suited.Recently,researchers at Ben-Gurion University (Israel) have developed a modular system - the recycled vertical flow bioreactor (RVFB) - for the removal of chemical contaminants from GW.We report on the removal of chemical contaminants,indicator organisms,and opportunistic pathogens from GW using this system.Synthetic GW,enriched with wastes from a dining hall,was added to experimental RVFB systems.The greywater was recirculated for 2-3 days at which time half of the water was removed from each system and replaced with fresh synthetic GW.Removal of chemical and microbiological contaminants was determined by comparing influent to effluent samples obtained after 8 and 72 h treatment in the systems.GW treatment using the RVFB system reduced effluent concentrations for NO3-N,total ammonia nitrogen,NO2-N,total suspended solids,boron,and anionic surfactants to below the levels considered acceptable for either recreation or irrigation.Reduction in chemical contaminants was associated with a significant increase in the number of both heterotrophic bacteria and surfactant-degrading bacteria within the RVFB.Escherichia coli,Staphylococcus aureus,and Pseudomonas aeruginosa were present at the beginning of each treatment cycle.Treatment using the RVFB system resulted in final E.coli concentrations that met the USEPA water quality criteria for recreational water.Viable S.aureus and P.aeruginosa were consistently present in samples obtained at the end of the 72 h treatment period.The survival of these non-enteric opportunistic pathogens underscores the need for the consideration of additional indicator organisms to monitor and assure the safe reuse of GW.
机译:作为非饮用水目的的家庭灰水(GW)的使用正在成为一种重要的水资源管理和保护方法,尤其是在农村地区和发展中地区,适合采用小型分散式处理方法。最近,本古里安大学的研究人员(以色列)开发了一个模块化系统-循环垂直流式生物反应器(RVFB)-用于从GW去除化学污染物。我们报告了使用该系统从GW去除化学污染物,指示生物和机会病原体的信息。在餐厅的RVFB系统中添加了富含食堂废料的废水。将灰水再循环2-3天,然后从每个系统中去除一半的水,并用新鲜的合成GW代替。去除化学和微生物污染物通过比较进水与系统中处理8和72小时后获得的污水样品来确定。使用RVFB系统进行的GW处理减少了污水NO3-N,总氨氮,NO2-N,总悬浮固体,硼和阴离子表面活性剂的t浓度降至休闲或灌溉可接受的水平以下。化学污染物的减少与水的数量显着增加有关RVFB内同时存在异养细菌和降解表面活性剂的细菌在72小时治疗期结束时获得的样品中始终存在活的金黄色葡萄球菌和铜绿假单胞菌。这些非肠道机会性病原体的生存突显了需要考虑使用其他指示生物进行监测和监测的必要性。确保GW的安全重用。

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