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Development and Evaluation of a Reflective Solar Disinfection Pouch for Treatment of Drinking Water

机译:反射式太阳能消毒水袋的研制与评价

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摘要

A second-generation solar disinfection (SODIS) system (pouch) was constructed from food-grade, commercially available packaging materials selected to fully transmit and amplify the antimicrobial properties of sunlight. Depending upon the season, water source, and challenge organism, culturable bacteria were reduced between 3.5 and 5.5 log cycles. The system was also capable of reducing the background presumptive coliform population in nonsterile river water below the level of detection. Similar experiments conducted with a model virus, the F-specific RNA bacteriophage MS2, indicated that the pouch was slightly less efficient, reducing viable plaques by 3.5 log units in comparison to a 5.0 log reduction of enterotoxigenic Escherichia coli O18:H11 within the same time period. These results suggest that water of poor microbiological quality can be improved by using a freely available resource (sunlight) and a specifically designed plastic pouch constructed of food-grade packaging materials.
机译:第二代太阳能消毒(SODIS)系统(袋装)由食品级的,可商购的包装材料制成,这些包装材料经选择可完全透射和增强日光的抗菌性能。根据季节,水源和攻击生物,可培养细菌减少了3.5至5.5个对数周期。该系统还能够将非无菌河水中的背景假定大肠菌群数量降低到检测水平以下。用模型病毒F特异性RNA噬菌体MS2进行的类似实验表明,与在同一时间内将产肠毒素的大肠杆菌O18:H11减少5.0 log相比,该袋的效率降低了一些,将活菌斑减少了3.5 log单位。期。这些结果表明,可以通过使用免费的资源(阳光)和由食品级包装材料制成的专门设计的塑料袋来改善微生物质量较差的水。

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