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Evaluation of Solar Disinfection of E. coli Under Sub-Saharan Field Conditions Using a 25 Litre Borosilicate Glass Batch Reactor Fitted with a Compound Parabolic Collector.

机译:使用装有复合抛物线收集器的25升硼硅酸盐玻璃间歇反应器,在撒哈拉沙漠以南的田野条件下评估大肠杆菌的太阳能消毒能力。

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摘要

The bacterial inactivation efficacy of a solar water disinfection (SODIS) reactor consisting of a 25L borosilicate glass tube fitted with a compound parabolic collector (BGTR-CPC) was assessed under equatorial weather conditions in Uganda. The SODIS BGTR-CPC was tested over a 17-month period in Sub-Saharan conditions in Kampala, Uganda. The BGTR-CPC was filled with natural water from a nearby protected well. A wild strain of Escherichia coli isolated from local natural water was added to the reactor to give a starting population of between 105 and 107 CFU/100ml. This spiked water was exposed to natural sunlight. Satisfactory bacterial inactivation (log10 reduction values u3e6 units or inactivation to below the limit of detection (/100ml.)) was observed for 11 of 13 experiments. Rainfall and overcast/cloudy conditions were factors on both of the occasions when incomplete inactivation was observed. In conclusion, the use of CPC SODIS technology is suitable for treating drinking water both at household level and institutional level in Sub-Saharan and other similar tropical climates if careful consideration of the cloud cover and rainfall is taken into account.
机译:在乌干达的赤道天气条件下,评估了由装有复合抛物线收集器(BGTR-CPC)的25L硼硅酸盐玻璃管组成的太阳能水消毒(SODIS)反应器的细菌灭活效果。 SODIS BGTR-CPC在乌干达坎帕拉的撒哈拉以南地区进行了17个月的测试。 BGTR-CPC充满了来自附近受保护井的天然水。从本地天然水中分离出的野生大肠杆菌菌株被添加到反应器中,起始种群为105至107 CFU / 100ml。这种加标的水暴露在自然阳光下。在13个实验中的11个实验中观察到令人满意的细菌失活(log10降低值 u3e6单位或失活至检测限以下(/ 100毫升))。在观察到不完全灭活的两种情况下,降雨和阴天/阴天都是因素。总之,如果认真考虑云量和降雨,使用CPC SODIS技术既适合处理撒哈拉以南地区和其他类似热带气候的家庭水平的饮用水,又适合机构水平的饮用水。

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