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Modelling the kinetics of osmotic dehydration of mango: Optimizing process conditions and pre-treatment for health aspects

机译:芒果渗透脱水的动力学模型:优化工艺条件和健康方面的预处理

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摘要

The kinetics of mass transfer and vitamin C loss in mango during osmotic dehydration (OD) were described by mathematical models. Water loss (WL) and weight reduction (WR) was modelled by Weibull's model, soluble solid gain (SSG) was better described by Peleg's model. Vitamin C loss was described by a multiresponse model incorporating both degradation and leaching processes into the OD-solution. Effects of vacuum impregnation (VI) and pectin methylesterase (PME) addition on the model parameters were evaluated. VI increases SSG indicated by a 55% lower value of k(2) in the Peleg model (P < 0.05). PME addition showed no significant effect on the mass transfer kinetics. The major mechanism of vitamin C loss during OD was degradation. The pre-treatments have no significant effect on degradation and leaching rate constants of vitamin C. The combination of modelling the mass transfer and vitamin C retention was shown to be valuable in optimizing the OD process design to enhance the health-promoting value of OD mango (sugar content, vitamin C) and processing time.
机译:通过数学模型描述了渗透脱水(OD)期间芒果中的传质动力学和维生素C损失的动力学。水分损失(WL)和减重(WR)通过Weibull模型进行建模,可溶性固形物(SSG)通过Peleg模型进行更好的描述。维生素C的损失是通过将降解和浸出过程纳入OD溶液的多响应模型来描述的。评估了真空浸渍(VI)和果胶甲基酯酶(PME)对模型参数的影响。在Peleg模型中,VI增加了SSG,k(2)的值降低了55%(P <0.05)。添加PME对传质动力学没有明显影响。 OD期间维生素C损失的主要机理是降解。预处理对维生素C的降解和浸出速率常数没有显着影响。模拟传质和维生素C保留的结合对优化OD工艺设计以提高OD芒果的健康价值具有重要价值。 (糖含量,维生素C)和加工时间。

著录项

  • 来源
    《Journal of food engineering》 |2020年第9期|109985.1-109985.8|共8页
  • 作者

  • 作者单位

    Wageningen Univ & Res Food Qual & Design Grp Bornse Weilanden 9 NL-6708 WG Wageningen Netherlands|Soegijapranata Catholic Univ Dept Food Technol Pawiyatan Luhur 4-1 Semarang 50234 Indonesia;

    Wageningen Univ & Res Food Qual & Design Grp Bornse Weilanden 9 NL-6708 WG Wageningen Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vacuum impregnation; Mass transfer; Ascorbic acid; Kinetic modelling; Multiresponse model;

    机译:真空浸渍;传质;抗坏血酸;动力学建模;多响应模型;

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