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首页> 外文期刊>The American Journal of Tropical Medicine and Hygiene >Laboratory assessment of a gravity-fed ultrafiltration water treatment device designed for household use in low-income settings.
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Laboratory assessment of a gravity-fed ultrafiltration water treatment device designed for household use in low-income settings.

机译:为低收入家庭设计的重力式超滤水处理设备的实验室评估。

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摘要

Interventions to improve water quality, particularly when deployed at the household level, are an effective means of preventing endemic diarrheal disease, a leading cause of mortality and morbidity in the developing world. We assessed the microbiologic performance of a novel water treatment device designed for household use in low-income settings. The device employs a backwashable hollow fiber ultrafiltration cartridge and is designed to mechanically remove enteric pathogenic bacteria, viruses, and protozoan cysts from drinking water without water pressure or electric power. In laboratory testing through 20,000 L (approximately 110% of design life) at moderate turbidity (15 nephelometric turbidity unit [NTU]), the device achieved log(10) reduction values of 6.9 for Escherichia coli, 4.7 for MS2 coliphage (proxy for enteric pathogenic viruses), and 3.6 for Cryptosporidium oocysts, thus exceeding levels established for microbiological water purifiers. With periodic cleaning and backwashing, the device produced treated water at an average rate of 143 mL/min (8.6 L/hour) (range 293 to 80 mL/min) over the course of the evaluation. If these results are validated in field trials, the deployment of the unit on a wide scale among vulnerable populations may make an important contribution to public health efforts to control intractable waterborne diseases.
机译:改善水质的干预措施,特别是在家庭中部署时,是预防流行性腹泻病的有效手段,而腹泻病是发展中国家死亡和发病的主要原因。我们评估了设计用于低收入家庭中使用的新型水处理设备的微生物学性能。该设备采用可回洗的中空纤维超滤滤芯,设计用于从饮用水中机械去除肠道病原性细菌,病毒和原生动物的囊肿,而无需水压或电。在中等浊度(15浊度浊度单位[NTU])下,通过20,000 L(约占设计寿命的110%)的实验室测试中,该设备对大肠杆菌的log(10)降低值分别为6.9,对MS2噬菌体的log(10)降低值为4.7(肠溶替代品)致病性病毒)和隐孢子虫卵囊的3.6,从而超过了微生物净水器的水平。通过定期清洁和反冲洗,该设备在评估过程中以143 mL / min(8.6 L / hour)(293至80 mL / min的范围)的平均速率产生处理过的水。如果这些结果在现场试验中得到验证,那么在脆弱人群中大规模部署该部门可能对控制顽固性水传播疾病的公共卫生工作做出重要贡献。

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