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Equilibrium moisture contents of a medicinal herb (Melissa officinalis) and a medicinal mushroom (Lentinula edodes) determined by dynamic vapour sorption

机译:用动态蒸汽吸附测定的药用草本植物(Melissa Officinalis)和药用蘑菇(Lentinula edodes)的均衡含量

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The measurement of moisture sorption isotherms is of great importance in the fields of food and agricultural engineering. Although the static gravimetric method is still commonly used, automated instruments for the determination of sorption isotherms have been designed to overcome some of the drawbacks associated with the standard method. The dynamic vapour sorption (DVS) is a modern technique which can produce sorption data with high accuracy under controlled conditions in a short period of time. The method was examined and validated by measuring the equilibrium moisture contents of lemon balm herb (Melissa officinalis L.) and Shiitake mushroom [Lentinula edodes (Berk.) Pegl.] at a temperature of 25 °C in the range of 0-95% relative humidity. The experiments were performed in triplicate for a total of fifteen target values of relative humidity. A ?parallel exponential kinetics” model (PEK-model) was used to evaluate the change in mass during the adsorption process of each relative humidity step. Additionally, the GAB model was tested for its effectiveness to describe the equilibrium MC/RH data of both products. The PEK-model fitted adequately to the experimental sorption kinetic data over the entire range of relative humidity. Sigmoid characteristic curves, type II pattern were obtained, as indicated by the C and K values of the GAB model. Differences in the hygroscopic characteristics of the two products tested were ascribed to differences in nature of the material.
机译:水分吸附等温线在食品和农业工程领域具有重要意义。尽管静止重量法仍然常用,但是为了克服与标准方法相关的一些缺点,仍然常用,用于确定吸附等温线的自动化仪器。动态蒸汽吸附(DVS)是一种现代技术,可以在短时间内在受控条件下具有高精度的吸附数据。通过测量柠檬BALM草本植物(Melissa Officinalis L.)和Shiitina CodeS(Berk.)Peg1的均衡水分含量来检查和验证该方法。在25℃的温度范围为0-95%相对湿度。实验一式三份进行,总共十五个相对湿度的目标值。 a?并行指数动力学“模型(PEK-Model)用于评估每个相对湿度步骤的吸附过程中的质量变化。另外,测试了GAB模型的效果,以描述两种产品的平衡MC / RH数据。 PEK模型在整个相对湿度范围内充分适用于实验吸附动力学数据。如GAB模型的C和k值所示,获得了六种特征曲线,获得II型模式。测试的两种产品的吸湿特性的差异归因于材料的性质的差异。

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