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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Fast flow-through non-thermal pasteurization using constant radiofrequency electric fields.
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Fast flow-through non-thermal pasteurization using constant radiofrequency electric fields.

机译:使用恒定射频电场快速流通非热巴氏灭菌。

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Pulsed electric field technologies have captured the attention of researchers on food pasteurization because of their non-thermal inactivation mechanism, which results in fresh-like products. Nevertheless, high voltage pulsing required by these technologies implies complex and costly generators. Here, as an alternative, it is proposed a method, partially inherited from research on cell electroporation for gene transfection, in which the liquid to be treated flows at high speed through a miniature chamber where the electric field is permanently applied. In particular, it is proposed that the constantly applied electric field consists of an AC signal (>100 kHz) so that electrochemical by-products are minimized. The method, while being compatible with batch processing, will allow use of lower voltages and will avoid the pulsation requirement. The proposal is accompanied by a numerical study and an in vitro study which demonstrate its feasibility. Industrial relevance: This paper describes an electroporation based method for non-thermal pasteurization of liquids that, in comparison to existing pulsed electric field technologies, does not require high voltage pulsed generators. The method consists in circulating the liquid at high speed through a miniature chamber where an AC electric field of moderate magnitude is permanently applied. By combining several miniature chambers in parallel and in series batch processing will be possible. Here it is analyzed and demonstrated the performance of a single miniature chamber.
机译:脉冲电场技术由于其非热灭活机理而引起了人们对食品巴氏杀菌的关注,从而产生了类似新鲜的产品。然而,这些技术所需的高压脉冲意味着复杂且昂贵的发电机。在此,作为替代方案,提出了一种部分地继承自用于基因转染的细胞电穿孔研究的方法,其中待处理的液体高速流过永久施加电场的微型腔室。特别地,提出了恒定施加的电场由AC信号(> 100 kHz)组成,从而使电化学副产物最小化。该方法与批处理兼容,但允许使用较低的电压,并且避免了脉动要求。该建议同时进行了数值研究和体外研究,证明了其可行性。行业相关性:本文介绍了一种基于电穿孔的液体非热巴氏灭菌方法,与现有的脉冲电场技术相比,该方法不需要高压脉冲发生器。该方法包括使液体高速通过微型腔室,在微型腔室中永久施加中等强度的交流电场。通过并联和串联组合多个微型腔室,可以进行批处理。在这里,它被分析并证明了单个微型腔室的性能。

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