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Light wavelength-dependent E. coli survival changes after simulated solar disinfection of secondary effluent

机译:二级出水的模拟太阳能消毒后,光波长依赖性大肠杆菌存活率变化

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摘要

In this study, the photoreactivation and the modification of dark repair of E. coli in a simulated secondary effluent were investigated after initial irradiation in different conditions. The simulated solar exposure of the secondary wastewater was followed by exposure to six different low-intensity fluorescent lamps (blacklight blue, actinic blacklight, blue, green, yellow and indoor light) up to 8 h. When phoreactivation was monitored, blue and green color fluorescent light led to an increased bacterial regrowth. Blacklight lamps further inactivated the remaining bacteria, while yellow and indoor light led to an accelerated growth of healthy cells. Exposure to fluorescent lamps was followed by long term dark storage, to monitor the bacterial repair in the dark. The response was correlated with the pre-exposure dose of applied solar irradiation and at a lesser extent with the fluorescent light dose. Bacteria which have undergone extensive exposure had no response neither under fluorescent light nor during dark storage. Finally, the statistical treatment of the data allowed to suggest a linear model, non-selective in terms of the fluorescent light applied. The estimation of the final bacterial population was well predicted (R-sq~75%) and the photoreactivation risk was found more important cultivable cells
机译:在这项研究中,在不同条件下进行初始辐照后,研究了模拟次级废水中大肠杆菌的光活化和暗修复的改性。模拟二次废水在太阳下的暴露,然后暴露于六种不同的低强度荧光灯(黑光蓝,光化黑光,蓝,绿,黄和室内光)下长达8小时。当监测phoreactivation时,蓝色和绿色荧光灯导致细菌再生增加。黑光灯进一步灭活了残留的细菌,而黄色和室内的光则加速了健康细胞的生长。暴露于荧光灯后,长期黑暗保存,以监测黑暗中的细菌修复。该响应与所施加的太阳辐射的预暴露剂量相关,而在较小程度上与荧光剂量相关。受到大量暴露的细菌在荧光灯下和黑暗存储下均无反应。最后,对数据的统计处理可以提出一个线性模型,就所施加的荧光而言是非选择性的。最终细菌种群的估计得到了很好的预测(R-sq〜75%),并且发现了光活化风险更重要的可培养细胞

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