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Microwave-Vacuum Drying of Flax Fiber for blocomposite production

机译:亚麻纤维的微波真空干燥法

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摘要

Flax fiber is one of the important bast fiber available in North America which has low density and good mechanical properties for reinforcing various polymers to develop industrial biocomposite. But the hydrophilic nature of the fiber leads to poor adhesion between the fiber and the polymer matrices which, in turn, leads to poor dimensional stability. To enhance the adhesion between polymer matrix and fiber, chemical treatments of the fiber are necessary. After these treatments, the fiber needs to be uniformly dried to minimum moisture content for better compounding of flax in polymer matrices. Drying by conventional dryers at higher temperature usually results in overall quality loss due to surface drying, and it is also time consuming and energy intensive. In recent years, the microwave has been effectively used for enhancing bulk drying of biomaterials especially when coupled with vaccum. Such a volumetric heat transfer mechanism coupled with drying in vacuum provides an ideal low-temperature drying technique resulting in better organoleptic quality. In this study, the drying characteristics of flax fiber were studied under microwave- vacuum condition. The drying experiments were conducted in Enwave~? Microwave-vacuum dryer using three different process variables viz., microwave power (750 Wand 375 W), vacuum level (25, 10, and 0 in Hg) and time of drying (0 to 14 mins). In order to select the appropriate drying curve equation, the drying data was fitted in three different models viz., Page model, single exponential model and approximation of diffusion model.
机译:亚麻纤维是北美可用的重要韧皮纤维之一,具有低密度和良好的机械性能,可增强各种聚合物以开发工业生物复合材料。但是,纤维的亲水性导致纤维与聚合物基体之间的粘合性差,进而导致尺寸稳定性差。为了增强聚合物基体和纤维之间的粘合性,必须对纤维进行化学处理。经过这些处理后,需要将纤维均匀干燥至最低水分含量,以更好地在聚合物基质中混合亚麻。通过常规干燥机在较高温度下进行干燥通常会由于表面干燥而导致整体质量下降,并且这也是耗时且耗能的。近年来,微波已被有效地用于增强生物材料的整体干燥,特别是当与真空结合时。这种体积传热机制与真空干燥相结合,提供了一种理想的低温干燥技术,可带来更好的感官品质。在这项研究中,研究了在微波-真空条件下亚麻纤维的干燥特性。干燥实验在Enwave中进行。微波真空干燥机使用三种不同的工艺变量,即微波功率(750 W和375 W),真空度(25、10和0 in Hg)和干燥时间(0至14分钟)。为了选择合适的干燥曲线方程,将干燥数据拟合为三种不同的模型,即Page模型,单指数模型和扩散模型的近似值。

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  • 作者单位

    University of Saskatchewan, Dept of Agricultural and Bioresource Engineering, 57 Campus Drive, Saskatoon, SK, Canada S7N 5A9;

    rnUniversity of Saskatchewan, Dept of Agricultural and Bioresource Engineering, 57 Campus Drive, Saskatoon, SK, Canada S7N 5A9;

    rnUniversity of Saskatchewan, Dept of Agricultural and Bioresource Engineering, 57 Campus Drive, Saskatoon, SK, Canada S7N 5A9;

    rnUniversity of Saskatchewan, Dept of Agricultural and Bioresource Engineering, 57 Campus Drive, Saskatoon, SK, Canada S7N 5A9;

  • 收录信息 美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dielectric; microwave; vacuum; drying; flax fiber;

    机译:电介质微波;真空;烘干;亚麻纤维;

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