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使用反射器增强太阳能加热和太阳波长对饮用水源进行消毒的协同效应。

Use of reflectors to enhance the synergistic effects of solar heating and solar wavelengths to disinfect drinking water sources.

作者信息

Rijal G K, Fujioka R S

机构信息

Metropolitan Water Reclamation District of Greater Chicago, 6001 W. Pershing Road, Cicero, Illinois 60804, USA.

出版信息

Water Sci Technol. 2003;48(11-12):481-8.

Abstract

Aluminum reflectors were added to solar units designed to inactivate faecal microorganisms (faecal coliform, E. coli, enterococci, FRNA coliphage, C. perfringens) in stream water and diluted sewage by the two mechanisms (solar heat, solar UV) known to inactivate microorganisms. During sunny conditions, solar units with and without reflectors inactivated E. coli to <1 CFU/100 ml to meet drinking water standards. Solar units with reflectors disinfected the water sooner by increasing the water temperature by 8-10 degrees C to 64-75 degrees C. However, FRNA coliphages were still detected in these samples, indicating that this treatment may not inactivate pathogenic human enteric viruses. During cloudy conditions, reflectors only increased the water temperature by 3-4 degrees C to a maximum of 43-49 degrees C and E. coli was not completely inactivated. Under sunny and cloudy conditions, the UV wavelengths of sunlight worked synergistically with increasing water temperatures and were able to disinfect microorganisms at temperatures (45-56 degrees C), which were not effective in inactivating microorganisms. Relative resistance to the solar disinfecting effects were C. perfringens > FRNA coliphages > enterococci > E. coli > faecal coliform.

摘要

铝制反射器被添加到太阳能装置中,这些装置旨在通过已知的两种使微生物失活的机制(太阳热、太阳紫外线)来使溪流水和稀释污水中的粪便微生物(粪大肠菌群、大肠杆菌、肠球菌、FRNA噬菌体、产气荚膜梭菌)失活。在阳光充足的条件下,有反射器和没有反射器的太阳能装置都能将大肠杆菌灭活至<1 CFU/100 ml,以达到饮用水标准。带有反射器的太阳能装置通过将水温提高8 - 10摄氏度至64 - 75摄氏度,更快地对水进行消毒。然而,在这些样本中仍检测到FRNA噬菌体,这表明这种处理可能无法使致病性人类肠道病毒失活。在多云条件下,反射器仅将水温提高3 - 4摄氏度,最高达到43 - 49摄氏度,大肠杆菌没有被完全灭活。在晴天和多云条件下,阳光中的紫外线波长与水温升高协同作用,能够在一些对微生物失活无效的温度(45 - 56摄氏度)下对微生物进行消毒。对太阳能消毒效果的相对抗性为:产气荚膜梭菌>FRNA噬菌体>肠球菌>大肠杆菌>粪大肠菌群。

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