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Treated Greywater Reuse for Hydroponic Lettuce Production in a Green Wall System: Quantitative Health Risk Assessment

机译:绿墙系统中处理过的中水回用在水培生菜生产中的应用:健康风险定量评估

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The scarcity and pollution of freshwater are extremely crucial issues today, and the expansion of water reuse has been considered as an option to reduce its impact. This study aims to assess the efficiency of an integrated greywater treatment system and hydroponic lettuce production as a part of a green wall structure, and to evaluate the health risk associated with the production and consumption of lettuce through a quantitative microbial risk assessment (QMRA) and a chemical health risk assessment. The study was conducted based on the unique configuration of a source separation system; an on-site greywater treatment system; a green wall structure as a polishing step; and hydroponic lettuce production in the green wall structure. The final effluent from the system was used to grow three lettuce varieties by adding urine as a nutrient solution. Both water samples and plant biomass were collected and tested for Escherichia coli ( E. coli ) and heavy metals contamination. The system has gained a cumulative 5.1 log 10 reduction of E. coli in the final effluent and no E. coli found in the plant biomass. The estimated annual infection risk for Cryptosporidium , Campylobacter , and Norovirus was 10 ?6 –10 ?8 , 10 ?8 –10 ?10 , and 10 ?10 –10 ?11 respectively. These results indicate that the system attained the health-based targets, 10 ?6 disability adjusted life years (DALYs) per person per year. Similarly, the health risk index ( HRI ) and targeted hazard quotient ( THQ ) results did not exceed the permissible level, thus the chemical health risk concern was insignificant.
机译:淡水的稀缺性和污染是当今极为关键的问题,扩大水的再利用被认为是减少其影响的一种选择。这项研究旨在评估灰水处理系统和水培生菜作为绿墙结构的一部分的效率,并通过定量微生物风险评估(QMRA)评估与生菜生产和消费相关的健康风险。化学健康风险评估。该研究是基于源分离系统的独特配置进行的。现场的灰水处理系统;绿墙结构作为抛光步骤;以及在绿色墙壁结构中进行水培生菜生产。该系统的最终废水通过添加尿液作为营养液用于种植三个生菜品种。收集水样和植物生物量,并进行大肠杆菌(E. coli)和重金属污染的测试。该系统在最终流出物中的大肠杆菌累积减少了5.1 log 10,在植物生物质中未发现大肠杆菌。隐孢子虫,弯曲杆菌和诺如病毒的估计年度感染风险分别为10?6 –10?8、10?8 –10?10和10?10 –10?11。这些结果表明,该系统达到了基于健康的目标,即每人每年10?6残疾调整生命年(DALYs)。同样,健康风险指数(HRI)和目标危险商(THQ)结果也未超过允许的水平,因此对化学健康风险的关注微不足道。

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