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Design Development and Performance Evaluation of Solar Heating System for Disinfection of Domestic Roof-Harvested Rainwater

机译:屋顶采收雨水消毒用太阳能供热系统的设计开发与性能评估

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摘要

A box-type solar heater was designed, constructed, and used to determine the effect of solar heating on quality of domestic roof-harvested rainwater (DRHRW). During testing, naturally contaminated DRHRW was harvested in Ibadan, Nigeria, and released into the system at 93.96 Lh−1 (2.61 × 10−5 m3 s−1) in a continuous flow process. Water temperatures at inlet, within the heating chamber, and at outlet from the heating chamber and solar radiation were monitored at 10 min interval. Samples were collected at both inlet to and outlet from the heating chamber at 10 min interval for microbiological analysis. The highest plate stagnation temperature, under no-load condition, was 100°C. The solar water heater attained a maximum operational temperature of 75°C with 89.6 and 94.4% reduction in total viable count and total coliform count, respectively, while Escherichia coli and Staphylococcus aureus were completely eradicated at this temperature. The solar heater developed proved to be effective in enhancing potability of DRHRW in Ibadan, Nigeria. This may be an appropriate household water treatment technology for developing countries, hence, a way of resolving problem of low quality water for potable uses.
机译:设计,建造了一个箱型太阳能加热器,用于确定太阳能加热对家用屋顶采收雨水(DRHRW)的质量的影响。在测试期间,在尼日利亚伊巴丹收获了天然污染的DRHRW,并以93.96 Lh −1 (2.61×10 −5 m 3 s -1 )在连续流过程中。以10分钟的间隔监测加热室入口,加热室内以及加热室出口的水温和太阳辐射。在进出加热室的入口和出口处以10分钟的间隔采集样品,以进行微生物分析。空载条件下的最高印版停滞温度为100°C。该太阳能热水器的最高工作温度达到75°C,总生存数和总大肠菌群数分别减少了89.6和94.4%,而在此温度下大肠杆菌和金黄色葡萄球菌被完全清除。事实证明,开发的太阳能加热器可有效提高DRHRW在尼日利亚伊巴丹的可饮用性。对于发展中国家来说,这可能是一种合适的家用水处理技术,因此,是解决饮用水中劣质水的一种方法。

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