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首页> 外文期刊>LWT-Food Science & Technology >Inactivation of bacteria and murine norovirus in untreated groundwater using a pilot-scale continuous-flow intense pulsed light (IPL) system
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Inactivation of bacteria and murine norovirus in untreated groundwater using a pilot-scale continuous-flow intense pulsed light (IPL) system

机译:使用中试规模连续流强脉冲光(IPL)系统灭活未经处理的地下水中的细菌和鼠诺如病毒

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The objective of this study was to characterize the inactivation effects of a pilot-scale continuous-flow intense pulsed light (IPL) system on microorganisms in untreated groundwater used in the food industry. The inactivation effects of laboratory- and pilot-scale IPL systems on murine norovirus (MNV), a human norovirus surrogate, were also investigated. Flow rates of 40, 32, 20 and 12 l/min were tested (corresponding to 89,113, 179, and 290 s of treatment time in a chamber, respectively). A 290-s pilot-scale IPL treatment at an energy dose of 14.02 J/cm(2) resulted in a 4.79-log reduction of Escherichia coli C600 in water with an initial count of 10(5)-10(6) CFU/ml, while a 270-s treatment at an energy dose of 13.05 J/cm(2) resulted in a 2.91-log inactivation of aerobic and facultative anaerobic heterotrophs in untreated groundwater with the initial count of 4.5 x 10(4) CFU/ml. An 89-s treatment at a dose of 4.30 J/cm(2) resulted in a 3.35-log inactivation of MNV in water with the initial count of 10(3)-10(4) PFU/ml. The energy dose and the inactivation level showed linearity for this system. These trends should form the basis of a large-scale IPL-based water management system with improved energy efficiency. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是表征食品工业中未经处理的地下水中试规模的连续流强脉冲光(IPL)系统对微生物的灭活作用。还研究了实验室规模和中试规模的IPL系统对鼠诺如病毒(MNV)(一种人类诺如病毒替代品)的灭活作用。测试了40、32、20和12 l / min的流速(分别对应于处理室中的89,113、179和290 s处理时间)。能量剂量为14.02 J / cm(2)的290 s中试规模IPL处理导致水中的大肠杆菌C600减少4.79对数,初始计数为10(5)-10(6)CFU / ml,而能量剂量为13.05 J / cm(2)的270 s处理导致未处理的地下水中需氧和兼性厌氧异养菌的失活率为2.91 log,初始计数为4.5 x 10(4)CFU / ml 。剂量为4.30 J / cm(2)的89 s处理导致水中的MNV失活3.35对数,初始计数为10(3)-10(4)PFU / ml。该系统的能量剂量和失活水平显示出线性。这些趋势应构成基于IPL的大型水管理系统的基础,并提高能源效率。 (C)2015 Elsevier Ltd.保留所有权利。

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