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首页> 外文期刊>Journal of food process engineering >Assessment of kinetics, effective moisture diffusivity, specific energy consumption, and percentage of thyme oil extracted in a hybrid solar-electric dryer
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Assessment of kinetics, effective moisture diffusivity, specific energy consumption, and percentage of thyme oil extracted in a hybrid solar-electric dryer

机译:评估动力学,有效的水分扩散,特定能量消耗和百合油中提取的百里香油的百分比

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摘要

This research deals with the analysis process of thyme in a hybrid (solar-electric) dryer. The drying process was administered using three air velocities of 1, 1.5, and 2 m/s and four temperatures of 40, 50, 60, 70 degrees C. The drying rate developed with the increase in temperature and air velocity, therefore decreased the drying time. Ten mathematical models were applied to predict the drying kinetics of thyme. Consequently, the best model to describe the drying kinetics of thyme was Midilli model. The values activation energy and effective moisture diffusivity were ranged between 10.9 to 16.33 kJ/mol and 2.172 x 10-10 to 1.23 x 10-10 m2/s, respectively. The oil yield was significantly affected by drying situations. The essential oil of the leaves was determined by hydrodistillation. So, the highest essential oil amount equal to 2.4 CC (vol/wt) was obtained at temperature of 40 degrees C and air velocity of 1.5 m/s.Practical Applications Drying is the most significant process to maintain agricultural crops. The purpose of drying crops is the decrease of the moisture content to a level that provides secure storage over an extended term, and significant influence on the quality of dried crops. In this research, drying kinetics of Thyme at different air velocity and air temperatures in hybrid dryer were studied. Moreover, simplistic models for the simulation of the drying process were offered. Consequently, the aim of this work was to Introducing a new hybrid dryer for herbal plants, to decrease volatile loss or degradation of essential oil extracted from Thyme. It is application in medicinal plants post-harvest technology.
机译:该研究涉及杂交(太阳能电气)干燥器中百里香的分析过程。使用三个空气速度为1,1.5和2 m / s的干燥过程,40,50,60℃的四个温度施用。因此,随着温度和空气速度的增加而产生的干燥速率降低了干燥时间。应用了十种数学模型来预测百里香的干燥动力学。因此,描述百里香的干燥动力学的最佳模型是Midilli模型。值激活能量和有效的水分扩散率在10.9至16.33kJ / mol之间,分别为2.172×10-10至1.23×10-10m 2 / s。通过干燥情况显着影响油产量。通过氢化物测定叶子的精油。因此,在40℃的温度和1.5米/秒的空气速度下获得等于2.4cc(VOL / WT)的最高精油量。正常应用的空气速度是保持农作物的最重要过程。干燥作物的目的是将水分含量降低到延长期限内提供安全存储的水平,并对干作物的质量产生重大影响。在该研究中,研究了杂交干燥器中不同风速和空气温度下的百里香的干燥动力学。此外,提供了用于模拟干燥过程的简单模型。因此,这项工作的目的是为草药植物引入新的杂交干燥器,以降低百里香萃取的精油的挥发性损失或降解。它是收获后的药用植物的应用。

著录项

  • 来源
    《Journal of food process engineering》 |2021年第1期|e13588.1-e13588.12|共12页
  • 作者单位

    Razi Univ Dept Mech Engn Biosyst Kermanshah Iran|Kermanshah Univ Med Sci Students Res Comm Kermanshah Iran;

    Razi Univ Dept Mech Engn Biosyst Kermanshah Iran;

    Kermanshah Univ Med Sci Students Res Comm Kermanshah Iran|Kermanshah Univ Med Sci Pharmaceut Sci Res Ctr Hlth Inst Kermanshah Iran;

  • 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
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