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首页> 外文期刊>Solar Energy >Water sorption isotherms and drying characteristics of rupturewort (Herniaria hirsuta) during a convective solar drying for a better conservation
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Water sorption isotherms and drying characteristics of rupturewort (Herniaria hirsuta) during a convective solar drying for a better conservation

机译:对流日光干燥过程中决明麦(Herniaria hirsuta)的吸水等温线和干燥特性,以更好地保护

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摘要

Free water contained in porous structure of food plays a fundamental role in proliferation of microorganisms and bacteria that can damage the product materials. This work presents a thermo-kinetic study carried out in a natural and forced convection solar dryer; the objective was to establish the optimal conditions for drying and storing Herniaria hirsuta by testing the impact of different aerothermal conditions (air temperature, air velocity) on water loss of fresh Herniaria hirsuta. The kinetics of drying is studied for three temperatures (50, 60 and 70 degrees C) in two-air velocities (0.09 and 0.18 m/s). The optimal water activity which is related to conservation is 0.28. The LESPAM model was found to be the most appropriate for describing the sorption curves. The air drying temperature is a principal factor influencing the drying kinetics; the drying rate decreases in low air drying temperature, the air velocity had a small impact on the drying kinetics of Herniaria hirsuta. The Midilli-Kuck model was found to be the best fitted drying curves in thin layers for Herniaria hirsuta. The effective diffusivity of moisture water values changed from 2.5312 10(-9) to 18.0511 10(-9) m(2).s(-1), and increased simultaneously with the increase of temperature. The average activation energy of the diffusion process is obtained to be 2938.46 kJ/kg; it expresses the temperature effect on the diffusion coefficient. Dried Herniaria hirsuta under the maximum drying parameters showed highest retention of antioxidant activity, while the total phenolics and flavonoids were decreased by 10 and 46%, respectively.
机译:食物的多孔结构中所含的游离水在微生物和细菌的繁殖中起着根本性的作用,这些微生物和细菌会破坏产品的原料。这项工作提出了在自然和强制对流太阳能干燥机中进行的热动力学研究。目的是通过测试不同的空气热条件(空气温度,空气速度)对新鲜Herniaria hirsuta水分流失的影响,建立干燥和储存Herniaria hirsuta的最佳条件。在两个空气速度(0.09和0.18 m / s)的三个温度(50、60和70摄氏度)下研究了干燥动力学。与保存有关的最佳水分活度为0.28。发现LESPAM模型最适合描述吸附曲线。空气干燥温度是影响干燥动力学的主要因素。空气干燥温度低时,干燥速率降低,风速对Herniaria hirsuta的干燥动力学影响较小。发现Midilli-Kuck模型是hirsuta hirsuta薄层的最佳拟合干燥曲线。水分的有效扩散率值从2.5312 10(-9)变为18.0511 10(-9)m(2).s(-1),并随着温度的升高而同时增加。扩散过程的平均活化能为2938.46 kJ / kg;它表示温度对扩散系数的影响。在最大干燥参数下干燥的Herniaria hirsuta表现出最高的抗氧化活性保留能力,而总酚和类黄酮分别降低了10%和46%。

著录项

  • 来源
    《Solar Energy》 |2020年第5期|916-926|共11页
  • 作者

  • 作者单位

    Cadi Ayyad Univ Lab Solar Energy & Med Plants BP 2400 Marrakech Morocco;

    Cadi Ayyad Univ Fac Sci Semlalia Dept Chem LICVEDDE Lab Innovat & Sustainable Dev & Expertis BP 2390 Marrakech 40000 Morocco;

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

    Herniaria hirsuta; Solar drying; Drying characteristic curve; Modeling; Bioactive compounds; Conservation;

    机译:hirsuta疝气太阳能干燥;干燥特性曲线;造型;生物活性化合物;保护;

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