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Continuous-flow ultrasonic washing system for fresh produce surface decontamination.

机译:连续流超声波清洗系统可对新鲜农产品进行表面净化处理。

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A pilot-scale continuous-flow washing system with three pairs of ultrasonic transducers operating at 25, 40, and 75 kHz was designed and fabricated, and used to investigate the efficacy of ultrasound treatment for produce sanitization. A uniform ultrasound distribution in the channel was achieved, as shown by pitting on aluminum foil and log reduction of Escherichia coli O157:H7 population on spinach held at different locations in the channel. The inactivation normalized by acoustic power density for one-minute treatments at 25, 40, and 75 kHz was 0.056, 0.061, and 0.057 log CFU/(W/L), respectively. "Blockage" reduces the exposure of "screened" leaves to ultrasound, and results in significantly lower microbial count reduction. Compared to treatment with chlorine alone, combined treatment with chlorine and ultrasound in the continuous-flow system achieved additional log reductions of 1.0 and 0.5 CFU/g for E. coli cells inoculated on spinach, for washing in single-leaf and batch-leaf modes, respectively. Industrial relevance: Continuous-flow ultrasonic washing of fresh produce has the potential to provide the produce industry with a means to significantly enhance microbial safety. However, care must be taken to minimize the screening/blockage of ultrasound by produce leaves, minimize the variance in the residence-time distribution, and assure a near-uniform acoustic field distribution in the washing facility
机译:设计并制造了具有三对分别在25、40和75 kHz下运行的超声换能器的中试规模连续流洗涤系统,该系统用于研究超声处理对产品消毒的功效。通过在铝箔上点蚀并在保持在通道中不同位置的菠菜上大肠杆菌O157:H7种群的对数减少,可以看出通道中的超声分布均匀。对于25、40和75 kHz的一分钟治疗,通过声功率密度归一化的失活分别为0.056、0.061和0.057 log CFU /(W / L)。 “阻塞”减少了“筛分”的叶片暴露于超声的程度,并导致微生物数量的减少。与仅用氯处理相比,在连续流系统中用氯和超声波进行联合处理可使菠菜接种的大肠杆菌细胞以单叶和分叶模式洗涤时,log分别降低了1.0和0.5 CFU / g。 , 分别。工业相关性:新鲜农产品的连续流超声清洗有潜力为农产品工业提供一种显着提高微生物安全性的手段。但是,必须注意尽量减少农产品叶片对超声的屏蔽/阻碍,最大程度地减少停留时间分布的变化,并确保清洗设备中的声场分布接近均匀

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