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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Escherichia coli, Listeria and Salmonella by single and multiple wavelength ultraviolet-light emitting diodes]]>
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Escherichia coli, Listeria and Salmonella by single and multiple wavelength ultraviolet-light emitting diodes]]>

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This study compared the inactivation efficacy and performance of UV-LEDs emitting at 259, 268, 275, 289, and 370?nm against a low pressure mercury lamp at 253.7?nm for the foodborne pathogens,E.coli,ListeriaandSalmonella. Action spectra were determined for three pathogenic and three non-pathogenic strains and compared with UV absorbance of their bacterial DNA. The lethality of UV wavelengths correlated with bacterial DNA absorbance. At an equivalent UV dose (7?mJ·cm?2), UV-LEDs emitting at 259 and 268?nm achieved the highest log count reductions out of the tested wavelengths. Refrigeration (4?°C) increased irradiance of the 268?nm UV-LEDs while not affecting reduction ofListeriacompared to 25°C. Combining 259 and 289?nm UV-LED wavelengths at an equivalent UV dose had a synergistic effect on reduction ofE.coliandListeria, yielding a 1.2 and 0.6 log higher reduction, respectively, than the expected additive effect.Industrial relevanceUV-LED treatment at 259, 268, and 275?nm can either equal or, in most cases, surpass the inactivation efficacy of traditional LPM lamps at 253.7?nm. Further, the determined action spectra can be used to identify the optimum inactivation wavelength for common foodborne pathogens and hence increase processing efficiency. In some cases, inactivation efficacy can be improved by combining UV wavelengths in order to achieve a synergistic effect. The effectiveness of UV-LED treatment at refrigeration temperatures validates their use in cold environments. Overall, UV-LEDs have strong potential within the food industry due to their advantages and possibilities for incorporation into a wide variety of treatment systems.
机译:该研究比较了在259,268,275,289和370?NM处发射的uV-LED的灭活功效和性能,在253.7℃下为低压汞灯,用于食物中的病原体,E.coli,histeriaandsalmonella。测定三种致病和三种非致病菌菌株的动作光谱,并与其细菌DNA的UV吸光度进行比较。 UV波长的致死性与细菌DNA吸光度相关。在等效的UV剂量(7?MJ·Cm·2)中,在259和268°发射的UV-LED达到最高的数量计数从测试的波长达到。制冷(4?°C)增加268〜NM紫外线LED的辐照度,同时不会影响逆向施加到25°C的情况下。组合259和289?NM UV-LED波长在等效紫外剂量上对抑制性的抑制性效应进行了协同作用,分别比预期的添加剂效果分别更高的降低。259的工业相关性效应治疗。 268和275?NM可以等于或在大多数情况下,超过253.7纳米的传统LPM灯的灭活效果。此外,所确定的动作光谱可用于鉴定常见的食物载体病原体的最佳灭活波长,从而提高加工效率。在一些情况下,通过组合UV波长以实现协同效应,可以改善灭活功效。制冷温度下紫外线led治疗的有效性验证了它们在寒冷环境中的应用。总体而言,由于它们的优缺点和掺入各种治疗系统的优缺点,因此,UV-LED在食品行业中具有很强的潜力。

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