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Synergistic interaction of ultraviolet light and zinc oxide photosensitizer for enhanced microbial inactivation in simulated wash-water

机译:紫外线和氧化锌光敏剂的协同相互作用增强模拟洗涤水中的微生物灭活

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摘要

Synergistic interaction of ultraviolet light (UV-A) and zinc oxide (ZnO) was investigated for enhanced inactivation of Escherichia coli BL21 and T7 bacteriophage in simulated wash-water. In the absence of organic content, UV-A (9.53 J/cm(2)) and 1 mM ZnO alone caused 3.9 and 0.7 log CFU/mL reductions respectively in logarithmic phase bacteria after 60 min, while a combined treatment caused 6 log CFU/mL reductions. Stationary-phase bacteria were more resistant and a combined treatment caused only 3.5 log CFU/mL reductions. Organic matter in the wash-water lowered the inactivation rates. Nevertheless, approximately 2-log reductions were observed at the highest organic load. T7 bacteriophage was not sensitive to UV-A alone. However, 1 mM photo-irradiated ZnO caused 6.00 log PFU/mL reductions after 60 min. Bacteriophage inactivation was also significantly lowered by organic matter. The reactive oxygen species generated from photo-irradiated ZnO were responsible for the microbial inactivation. UV-A irradiated ZnO is an attractive sanitation approach for fresh-produce washing.
机译:研究了紫外线(UV-A)和氧化锌(ZnO)的协同相互作用,以增强模拟洗涤水中大肠杆菌BL21和T7噬菌体的失活。在没有有机物的情况下,UV-A(9.53 J / cm(2))和1 mM ZnO分别在60分钟后分别导致对数期细菌的3.9和0.7 log CFU / mL降低,而联合处理导致6 log CFU / mL减少量。固定相细菌的耐药性更高,联合处理仅导致3.5 log CFU / mL降低。洗涤水中的有机物降低了失活率。然而,在最高有机负荷下观察到约2-log的减少。 T7噬菌体仅对UV-A不敏感。但是,在60分钟后,用1 mM光辐照的ZnO引起6.00 log PFU / mL的降低。噬菌体的失活也被有机物显着降低。由光辐照的ZnO产生的活性氧是微生物失活的原因。 UV-A辐照的ZnO是用于新鲜产品洗涤的一种有吸引力的卫生方法。

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