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Influence of vacuum impregnation and pulsed electric field on the freezing temperature and ice propagation rates of spinach leaves

机译:真空浸渍和脉冲电场对菠菜叶片冰冻温度和冰繁殖率的影响

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摘要

Efforts are currently directed towards improving the quality of sensitive tissues of fruits and vegetables after freezing and thawing. One of the methods under investigation is the combination of vacuum impregnation (VI) with cryoprotectants and pulsed electric field (PEF), applied to the plant tissue prior exposure to freezing. The influence of these processes on the freezing temperature and ice propagation rate of spinach baby leaves are here studied. Leaves impregnated with trehalose, sucrose, glucose and mannitol exhibited significantly lower ice propagation rate and higher freezing temperatures in comparison to non-treated controls. Leaves subjected to PEF also showed increased freezing temperatures compared to the non-treated leaves; however the ice propagation rate was not influenced by PEF for the cryoprotectants used in the study, except for leaves impregnated with trehalose, where it was significantly increased and water, where it was significantly decreased. The combination of VI and PEF resulted in comparable freezing temperatures and ice propagation rates as the leaves subjected only to VI. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当前,努力致力于提高冷冻和解冻后水果和蔬菜的敏感组织的质量。研究中的一种方法是真空浸渍(VI)和冷冻保护剂以及脉冲电场(PEF)的结合,在暴露于冰冻之前将其施加到植物组织上。本文研究了这些过程对菠菜幼叶的冷冻温度和冰繁殖速率的影响。与未处理的对照相比,浸渍有海藻糖,蔗糖,葡萄糖和甘露醇的叶子表现出明显较低的冰传播速度和较高的冷冻温度。与未处理的叶片相比,经过PEF处理的叶片还显示出更高的冷冻温度;然而,研究中使用的防冻剂的冰传播速率不受PEF的影响,除了浸有海藻糖的叶子显着增加,而浸水的叶子则显着减少。 VI和PEF的结合导致了相当的冷冻温度和冰的传播速度,因为叶子只接受了VI。 (C)2015 Elsevier Ltd.保留所有权利。

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