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电极间隙对脉冲电场处理器杀菌效果的影响
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作者 田野 樊文硕 +2 位作者 卢伟健 张冠军 常正实 《高电压技术》 EI CAS CSCD 北大核心 2024年第4期1760-1768,共9页
脉冲电场是新型非热杀菌技术,杀菌效率高、有效保留液体食品的营养成分,具有广阔的应用前景。电极间隙作为脉冲电场杀菌处理器的关键指标,决定处理器的电场分布和杀菌效果。为了获得最佳间隙参数,提升杀菌效果,为此设计了共场型脉冲电... 脉冲电场是新型非热杀菌技术,杀菌效率高、有效保留液体食品的营养成分,具有广阔的应用前景。电极间隙作为脉冲电场杀菌处理器的关键指标,决定处理器的电场分布和杀菌效果。为了获得最佳间隙参数,提升杀菌效果,为此设计了共场型脉冲电场处理器,电极间距分别为3、5和7 mm,针对固定电导率(等效鲜榨柚子汁电导率)的2种典型细菌(金黄色葡萄球菌和大肠杆菌)菌悬液,研究了脉冲电场的杀菌效果。研究发现,3 mm电极间距所能施加最大电压为18 kV,5、7 mm的可达30 kV;处理时间为120 s时,3种间隙的杀菌效率均可达99.99%。因此,综合考虑电源性能、设备能耗和处理能力,首选3 mm电极间距为处理器的应用参数。评估外施电压幅值对杀菌效果的影响,发现细菌存活量的下降趋势可根据其下降速率分为“慢-快-慢”3个阶段。结合菌悬液上清液蛋白质含量的上升趋势,充分说明了电穿孔应为脉冲电场的主要杀菌机制。 展开更多
关键词 脉冲电场杀菌 电极间隙 处理器结构 杀菌效果 电穿孔
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Structure optimization of pulsed electric field processor and its sterilization effect
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作者 田野 樊文硕 +2 位作者 卢伟健 张冠军 常正实 《Food Quality and Safety》 SCIE CAS CSCD 2024年第1期92-104,共13页
Pulsed electric field(PEF)technology is a highly promising non-thermal processing technique,which holds great potential for sterilizing liquid food.The effectiveness of this treatment depends on two crucial factors:pu... Pulsed electric field(PEF)technology is a highly promising non-thermal processing technique,which holds great potential for sterilizing liquid food.The effectiveness of this treatment depends on two crucial factors:pulse parameters and the structure of the processor.In this study,we focus on optimizing the shape of insulators within the PEF processor to improve the sterilization effect.This research provides a reliable technical reference for designing industrial equipment.The numerical simulation of multi-physics fields was employed to analyze the temperature,electric field,and fluid field distributions for different insulators.Ultimately,the geometric structure of the insulator was optimized by embedding a 0.7-mm arc.Sterilization experiments were then conducted on Escherichia coli and Staphylococcus aureus suspensions with conductivities similar to those of real grapefruit juice.The sterilization effect of the processor with the optimized structure and the maximum applied voltage was examined at the same driving frequency.The results indicate that compared to the original structure,there is an increase in withstanding voltage by 5–10 kV while maintaining significantly improved bactericidal effects at the same applied voltage.Furthermore,we preliminarily discussed the sterilization mechanism by combining electroporation theory with the electroporation threshold of S.aureus. 展开更多
关键词 Pulsed electric field multi-physics field simulation cellular transmembrane voltage electroporation.
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