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Performance of coiled tube ultraviolet reactors to inactivate Escherichia coli W1485 and Bacillus cereus endospores in raw cow milk and commercially processed skimmed cow milk

机译:盘管式紫外线反应器可灭活生牛奶和商业加工脱脂牛奶中的大肠杆菌W1485和蜡状芽孢杆菌内生孢子

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摘要

Two coiled tube reactors were designed to investigate the influence of Reynolds number (Re) and diameter of fluid carrying tube on UV-C inactivation of Escherichia coli W1485 and Bacillus cereus endospores in raw cow milk (RCM) and skimmed cow milk (SCM) at room temperature. UV reactors were constructed using perfluoroalkoxy (PFA) tubing having internal diameters of 1.6 and 3.2 mm and each had a residence time of 11.3 s. Four levels of Re were tested for each milk type, each tube size and each bacteria type. Inactivation efficiency increased as the Re increased in both the reactors for both types of milk. The inactivation of both bacteria was higher in the 1.6 mm UV reactor than the 3.2 mm UV reactor. Maximum reduction of 7.8 log10 CFU/ml of E. coli was achieved in SCM in the 1.6 mm UV reactor corresponding to the Re of 532 and higher, whereas the maximum reduction of E. coli in RCM was 4.1 log10 CFU/ml at the highest level of Re (713) tested. For B. cereus, the maximum reduction was 2.72 log10 CFU/ml in 1.6 UV reactor, in SCM at Re of 1024; whereas the maximum reduction of B. cereus in RCM was 2.65 log10 CFU/ml at Re value of 713. Inactivation efficiency of both bacteria was more in SCM than RCM. The coiled tube reactor design provided adequate mixing and UV-C dosage for efficient disinfection of E. coli cells in milk.
机译:设计了两个盘管反应器,以研究雷诺数(Re)和载液管直径对生乳(RCM)和脱脂乳(SCM)中大肠杆菌W1485和蜡状芽孢杆菌内孢子的UV-C灭活的影响。室内温度。使用内径为1.6和3.2 mm的全氟烷氧基(PFA)管构造UV反应器,每个管的停留时间为11.3 s。对于每种牛奶类型,每种试管尺寸和每种细菌类型,测试了四个含量的Re。在两种类型的牛奶中,随着两个反应器中Re的增加,灭活效率也随之提高。在1.6 mm的UV反应器中,两种细菌的​​失活均高于3.2 mm的UV反应器。在1.6 mm紫外线反应器中的SCM中,大肠杆菌的最大减少量达到7.8 log10 CFU / ml,对应于Re为532或更高,而RCM中的大肠杆菌的最大减少量最高为4.1 log10 CFU / ml。 Re(713)水平测试。对于蜡状芽孢杆菌,在SCM中Re为1024时,在1.6 UV反应器中最大减少量为2.72 log10 CFU / ml。而RCM上蜡状芽胞杆菌的最大减少量为2.65 log10 CFU / ml,Re值为713。两种细菌在SCM中的灭活效率均高于RCM。盘管反应器设计提供了充分的混合和UV-C剂量,可有效消毒牛奶中的大肠杆菌细胞。

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