首页> 外文会议>ASME summer heat transfer conference;HT2009 >EFFECT OF BIOLOGICAL MACRO-MOLECULAR FLOW ON THE HOT AIR DRYING OF ASTRAGALUS SLICES
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EFFECT OF BIOLOGICAL MACRO-MOLECULAR FLOW ON THE HOT AIR DRYING OF ASTRAGALUS SLICES

机译:生物大分子流动对黄芪片热风干燥的影响

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Astragalus slice is one species of stem and root medicinal herb with the widely curative effects, also a special and typical plant porous material, and the drying operation is one of important processing technologies in its storage and further practical application. By using scanning electronic microscope (SEM), we mainly characterize the micrographics of parenchyma cell, trachea and aperture of Astragalus slices dried by hot air at 60 °C, with the aim to discuss the relationships among the microstructure of sample, macro-drying property and drying mechanism in micro-scale. Results show that in hot air dried sample, the distribution status of cytoplasm inside parenchyma cells appears obvious different with that of untreated sample, behaving agglomeration and leaving wide space with cell wall. Furthermore, we find that in comparison with the un-treated sample, the shape of aperture in hot air dried sample basically maintains un-changed, but most of apertures are fully filled with some perceived substance. It is demonstrated that the flow phenomenon of cytoplasm occurs inside matrix accompanied by the moisture diffusion in the mode of liquid water, particularly biological macro-molecular, which directly influence the permeability of moisture transfer path inside matrix and the quality of dried products. Hence, this study has significant meanings to develop the optimized drying technology of plant porous material focused on micro-mechanism and the quality of dried products.
机译:黄芪切片是一种具有广泛疗效的茎根药材,也是一种特殊而典型的植物多孔材料,干燥操作是其贮藏和进一步实际应用的重要加工技术之一。通过扫描电子显微镜(SEM),我们主要表征了在60°C下热风干燥的薄壁薄壁薄壁组织,气管和孔的显微照片,目的是探讨样品的微观结构与宏观干燥性能之间的关系。微观尺度的干燥机理。结果表明,在热风干燥的样品中,实质细胞内的细胞质分布状态与未处理的样品明显不同,具有团聚作用,并与细胞壁留有宽阔的空间。此外,我们发现与未处理的样品相比,热风干燥样品中的孔的形状基本保持不变,但是大多数孔中都充满了一些可感知的物质。结果表明,细胞质内的流动现象伴随着水分的扩散以液态水,尤其是生物大分子的形式发生在基质内部,直接影响基质内部水分传递路径的渗透性和干燥产物的质量。因此,这项研究对于开发植物多孔材料的优化干燥技术具有重要意义,该技术着重于微观机理和干燥产品的质量。

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