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Efficacy of a solar concentrator to Inactivate E. coli and C. perfringens spores in latrine waste in Kenya

机译:太阳能集中器在肯尼亚厕所废物中灭活大肠杆菌和产气荚膜梭菌孢子的功效

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摘要

Alternative sanitation options are needed for effective waste management in low-income countries where centralized, large-scalewaste treatment is not easily achievable. A newly designed solar concentrator technology utilizes solar thermal energy to treat feces contained in drums. This pilot study assessed the efficacy of the new design to inactivate microbes in 13 treatment drums under field conditions in Kenya. Three-quarters of the drums contained <1000 E. coli/g of total solids following 6 h of solar thermal treatment and inactivation of thermotolerant C. perfringens spores ranged from <1.8 to >5.0 log(10). Nearly all (94%) samples collected from treatment drums achieved thermophilic temperatures (>50 degrees C) during the treatment period, however this alone did not ensure samples met the WHO E. coli guideline; higher, sustained thermophilic temperatures tended to be more effective in reaching this guideline. The newly designed solar concentrator was capable of inactivating thermotolerant, environmentally-stablemicroorganisms as, or possibly more, efficiently than a previous design. Additional data are needed to better characterize how temperature, time, and other parameters affect the ability of the solar concentrator to inactivate microbes in feces. (c) 2019 Elsevier B.V. All rights reserved.
机译:在难以实现集中,大规模废物处理的低收入国家,需要其他替代卫生措施来有效地进行废物管理。新设计的太阳能集中器技术利用太阳能来处理桶中的粪便。这项初步研究评估了该新设计在肯尼亚野外条件下灭活13个处理桶中微生物的功效。四分之三的桶在经过6 h的日光热处理和使耐热产气荚膜梭状芽孢杆菌的孢子失活后,其总固体含量<1000 E. coli / g,范围从<1.8到> 5.0 log(10)。从处理鼓中收集的几乎所有样品(94%)在处理期间达到了高温(> 50摄氏度),但是仅此一项并不能确保样品符合WHO大肠杆菌准则;更高的,持续的嗜热温度往往更有效地达到该指标。新设计的太阳能集中器能够使耐热的,对环境稳定的微生物失活,甚至比以前的设计更有效。需要更多数据来更好地表征温度,时间和其他参数如何影响太阳能集中器灭活粪便中微生物的能力。 (c)2019 Elsevier B.V.保留所有权利。

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