农村太阳能消毒水处理系统/约旦

Yasmeen Smadi, Emad Alsood, Mohammad Aljaradin
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引用次数: 11

摘要

本研究旨在评估太阳能在处理农村地区人类活动造成的坝湖饮用水潜在污染方面的效率。监测水质参数包括温度、pH、电导率、总悬浮物、总氮、总磷、NH4-N、NO3-N、HCO3、Cl-、Na+、Mg2+、Ca2+、SAR、B、K+、SO42-和大肠杆菌。在夏季和冬季(灌装期)采集样品。结果显示,暴露在太阳辐射下,微生物数量迅速减少。在不同条件下测试的细菌群落在8小时后达到98%以上的减少。然而,在实验过程中,失活速率是不同的,主要受水浊度和温度的影响。结果表明,浊度影响水的消毒效率,且暴露时间越长,消毒效率越高,说明在高浊度和恶劣天气条件下,必须增加暴露时间以补偿这些因素的影响。系统中的水在进入储罐之前应至少暴露8小时。如果扩大规模,所提出的方法可能成为太阳能水消毒技术的重要工具,特别是在偏远和农村地区。利用太阳能对受污染的水进行消毒,肯定会减少水处理中氯化和/或过滤的使用,降低处理成本,同时也保护了环境。
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A Solar Disinfection Water Treatment System for Rural Areas / Jordan
The present study was conducted to assess the efficiency of solar energy in treating any potential pollution of drinking water in dam lakes caused by human activity in rural areas. The water quality parameters include temperature, pH, conductivity, total suspended solids, total nitrogen, total phosphorus, NH4-N, NO3-N, HCO3, Cl-, Na+, Mg2+, Ca2+, SAR, B, K+, SO42-, and E-coli were monitored. Samples was collected during the summer and winter (during the filling period). The results showed a rapid decrease in microbial counts upon exposure to solar radiation. More than 98% reductions were achieved after 8 hours for the bacterial communities tested under different conditions. The rate of inactivation, however, varied and was mainly affected by water turbidity and temperature during the experiments. The results indicated that turbidity affected the efficiency of water disinfection, and the efficiency improves with longer exposure duration, implying that in high turbidity and severe weather conditions, exposure time must be increased to compensate for the effects of these factors. The water in the system should be exposed to at least eight hours before leaving to the storage tanks. When scaled up, the proposed method could be a vital tool in solar water disinfection technologies, particularly in isolated and rural locations. Using solar energy to disinfect polluted water will certainly reduce the usage of chlorination and or filtration in water treatment, reducing treatment costs while also protecting the environment.
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