首页> 外文会议>International conference on diffusion in solids and liquids, mass transfer-heat transfer-microstructure properties-nanodiffusion and nanostructured materials;DSL-2009 >Ultrasound Effects on the Mass Transfer Processes during Drying Kinetic of Olive Leaves (Olea Europea, var. Serrana)
【24h】

Ultrasound Effects on the Mass Transfer Processes during Drying Kinetic of Olive Leaves (Olea Europea, var. Serrana)

机译:超声波对橄榄叶干燥动力学过程中传质过程的影响(Olea Europaea,var。Sierrana)

获取原文

摘要

The large amount of materials derived from olive trees pruning may constitute a source of compounds with antioxidant activity. The air drying of raw matter is a previous stage before extraction preserving the raw matter and avoiding the interference of water on the process but it constitutes a slow and high energy demanding process. In this sense, the application of high intensity ultrasound could affect the mass transfer rate. In order to address the influence of ultrasound on the drying process of olive leaves, air drying experiments were carried out (40°C and1 m/s) without (0 W) and with ultrasound application (8, 16, 25 and 33 kW/m~3). The different drying conditions were tested by triplicate. To model the experimental data, diffusional models considering or not the external resistance to mass transfer were used. The model without considering external resistance did not fit well to the experimental data. However, the model including external resistance achieved percentages of explained variance above 99.7%. The influence of ultrasound on diffusivity was not significant but a significant dependence was found for the mass transfer coefficient, proportional to the power density applied.
机译:来自橄榄树修剪的大量材料可能构成具有抗氧化活性的化合物的来源。原料的空气干燥是提取之前的前一阶段,以保留原料并避免水对工艺的干扰,但它构成了一个缓慢而高能耗的工艺。从这个意义上讲,高强度超声的应用可能会影响传质速率。为了解决超声波对橄榄叶干燥过程的影响,进行了空气干燥实验(40°C和1 m / s),不使用(0 W),使用超声波(8、16、25和33 kW / m〜3)。一式三份测试不同的干燥条件。为了对实验数据建模,使用了考虑或不考虑传质外部阻力的扩散模型。不考虑外部电阻的模型与实验数据不太吻合。但是,包含外部阻力的模型在99.7%以上的情况下实现了解释方差的百分比。超声波对扩散率的影响并不显着,但发现传质系数具有显着依赖性,与所施加的功率密度成正比。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号