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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Efficiency of two constructed wetland systems for wastewater treatment: removal of bacterial indicators and enteric viruses
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Efficiency of two constructed wetland systems for wastewater treatment: removal of bacterial indicators and enteric viruses

机译:两种构造的湿地系统效率进行废水处理:除去细菌指标和肠道病毒

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摘要

BACKGROUND Pathogenic microorganisms at the effluents of treatment plants entail a potential risk to public health. Enteric viruses such as adenoviruses (AdVs) and enteroviruses (EVs) are responsible for many waterborne diseases. Wastewater treatment methods eliminate successfully the load of indicators but other pathogens such as viruses have been detected in high concentrations at the effluents of wastewater plants. In this perspective, two constructed wetlands (CWs) systems (S1 and S2) were employed and fed with primary wastewater. S1 consists of a free water surface (FWS) wetland and a horizontal subsurface flow (HSSF) wetland working in series, while S2 consists only of the HSSF. Also, both systems included a sand filter (SF) after the HSSF. RESULTS Results showed that these low-cost systems are capable of eliminating effectively the bacterial indictors (total coliforms, Escherichia coli, Enterococci) achieving removal rates of almost 99% for S1 (3.2-4 Log units) and 89-98% for S2 (1.9-2.7 Log units). Regarding viruses, AdVs, EVs and phages were detected at all sampling points and during all seasons, and they were only partly removed in S1 and/or S2. For example, the virus load was decreased by 2.5 Log units for AdVs and 3.4 Log units for EVs in the case of S1, while the respective values were 4.3 and 1.9 Log units for S2. CONCLUSIONS Generally, CWs eliminated successfully the bacterial load, while the remaining virus load was significant, thus strengthening the argument that viruses could be a reliable indicator for fecal contamination. (c) 2019 Society of Chemical Industry
机译:背景技术治疗厂污水的病原微生物需要对公共卫生的潜在风险。肠病毒(ADVS)和肠病病毒(EVS)等肠道病毒负责许多水性疾病。废水处理方法成功消除了指标的负荷,但其他病原体如病毒已经在废水植物的流出物中检测到病毒。在这种观点中,使用两种构造的湿地(CWS)系统(S1和S2)并用原发性废水供给。 S1由一个自由水表面(FWS)湿地和含有串联工作的水平地下流量(HSSF)湿地,而S2仅由HSSF组成。此外,两个系统包括在HSSF之后的沙滤器(SF)。结果结果表明,这些低成本系统能够有效地消除细菌标记器(总大肠杆菌,大肠杆菌,肠球菌),实现S1(3.2-4对数单位)的去除率近99%,S2(39-98%) 1.9-2.7日志单位)。关于病毒,在所有采样点和所有季节中检测到病毒,EVS和噬菌体,并且它们仅在S1和/或S2中分离。例如,在S1的情况下为EVS的ADVS和3.4对数单位减少了病毒负载。结论一般来说,CWS成功消除了细菌负荷,而剩余病毒载荷显着,从而加强病毒可能是粪便污染的可靠指标的论点。 (c)2019年化学工业协会

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