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UV-C treatment of soymilk in coiled tube UV reactors for inactivation of Escherichia coli W1485 and Bacillus cereus endospores

机译:螺旋管紫外线反应器中豆浆的UV-C处理,用于灭活大肠杆菌W1485和蜡状芽孢杆菌内生孢子

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摘要

Coiled tube UV reactors were used to investigate the influence of tube diameter (1.6 mmID, and 3.2 mmID) and Reynolds number (Re) to inactivate Escherichia coli W1485 and Bacillus cereus spores in raw soymilk (RSM). Four levels of Re (343, 686, 1029 and 1372) were tested in RSM inoculated separately with each bacterium and treated in the UV reactors at a constant residence time of 11.3 s with UV-C dose of 11.187 mJ/ cm2 at 253.7 nm. Inactivation efficiency of both microorganisms increased with Re. Maximumreductions of 5.6 log10 CFU/ml of E. coli and 3.29 log10 CFU/ml of B. cereus spores were achieved in the 1.6 mm ID UV reactor. Inactivation efficiency was higher in the 1.6 mm ID UV reactor than the 3.2 mm ID UV reactor for both the organisms. Effect of UV-C light on lipid oxidation of untreated RSM, measured as malondialdehyde and other reactive substances (MORS) content, was much higher (95 nmol/ml) than the UV-treated (58 nmol/ml) and thermally pasteurized (55 nmol/ml) RSM during the storage period of 7 days. The UV-C treatment can be effectively used for reducing E. coli cells and B. cereus spores in soymilk without compromising its quality.
机译:使用螺旋管式紫外线反应器研究管直径(1.6 mmID和3.2 mmID)和雷诺数(Re)对未加工豆浆(RSM)中的大肠杆菌W1485和蜡状芽孢杆菌孢子的灭活作用。在分别接种每种细菌的RSM中测试了四个水平的Re(343、686、1029和1372),并在UV反应器中以11.3 s的恒定停留时间在253.7 nm处以11.187 mJ / cm2的UV-C剂量处理。两种微生物的灭活效率均随Re的增加而增加。在1.6 mm内径的UV反应器中,最大减少量为5.6 log10 CFU / ml的大肠杆菌和3.29 log10 CFU / ml的蜡状芽孢杆菌。对于这两种生物,在1.6 mm内径的UV反应器中的灭活效率都比3.2 mm内径的UV反应器高。以丙二醛和其他反应性物质(MORS)含量衡量,UV-C光对未经处理的RSM脂质氧化的影响(95 nmol / ml)比经UV处理(58 nmol / ml)和热巴氏灭菌(55 nmol)高得多。在7天的储存期间内(nmol / ml)RSM。 UV-C处理可以有效地用于减少豆浆中的大肠杆菌细胞和蜡状芽孢杆菌孢子,而不会影响其质量。

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