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The effect of high-pulsed electric field pretreatment on vacuum freeze drying of sea cucumber

机译:高脉冲电场预处理对海参真空冷冻干燥的影响

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摘要

To reduce the vacuum freeze drying time and to decrease the energy consumption of sea cucumber drying, the vacuum freeze drying experiments for sea cucumber pretreated by a high-pulsed electric field (HPEF) were carried out. The effects of HPEF pretreatment on the drying time, energy consumption, and the shrinkage, rehydration rate, protein content, texture and acid mucopolysaccharide of the samples were determined to compare with those of control group. The results indicated that HPEF pretreatment can significantly reduce the drying time of sea cucumber, save drying energy and improve the rehydration rate of sea cucumber. Compared with control group, the samples treated by HPEF have no statistically significant difference in terms of shrinkage, texture, protein and acid mucopolysaccharide content. And, By a needle electrode, under applied voltages of 22.5 kV and frequency of 70 Hz, the drying time could be reduced 16.43%, the energy consumption could be saved 15.64%, and, the rehydration rate of dried samples could be improved 11.7%. This suggests an application potential for HPEF pretreatment in the vacuum freeze drying of sea cucumber.
机译:为了减少真空冷冻干燥时间并降低海参干燥能耗,进行了高脉冲电场(HPEF)预处理的海参的真空冷冻干燥实验。确定HPEF预处理对干燥时间,能量消耗和收缩,再水化率,蛋白质含量,质地和酸性粘多糖的影响,与对照组的酸粘多糖相比。结果表明,HPEF预处理可以显着降低海参的干燥时间,节省干燥能量,提高海参的再水化率。与对照组相比,HPEF处理的样品在收缩,质地,蛋白质和酸粘多糖含量方面没有统计学意义。并且,通过针电极,在22.5kV的施加电压和70Hz的频率下,干燥时间可以减少16.43%,能量消耗可以节省15.64%,并且干燥样品的再水化速率可以提高11.7% 。这表明海洋黄瓜真空冷冻干燥中HPEF预处理的应用潜力。

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