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Changes in micropore structure and moisture transport properties in fibrous porous media after ultrasound treatment

机译:超声处理后纤维状多孔介质中微孔结构和水分运输性能的变化

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摘要

The binding force between water molecules and the solid skeleton of fibrous porous media, determined by the microscopic structure and chemical interactions, has a remarkable influence on the dehydration process. Therefore, the micropore structure is a key factor affecting the dewatering performance of fibrous porous media. In this paper, fibrous porous media is treated by ultrasound; then the micropore structure images are obtained. After that, structural characteristics parameters in the field of statistics and fractal theory are obtained by analysing microscopic images to investigate the effect of mechanical action and cavitation on microscopic structure under different sonication conditions. Finally, the effect of structure change on moisture removal is studied experimentally. It turns out that power and treatment times are the main factors that determine the effect of ultrasound on the pore structure of fibrous porous media. With the increase of power and time, the average pore size, the pore size with maximum ratio, the surface porosity and the surface fractal dimension increase non-linearly. Moreover, the growth is nonlinear; the maximum variation of pore structure is achieved at 530 W for 40 min. The moisture content loss rate and the effective moisture content diffusion coefficient are enhanced by the variation of micropore structure.
机译:通过微观结构和化学相互作用确定的水分子与纤维多孔介质的固体骨架之间的结合力对脱水过程具有显着影响。因此,微孔结构是影响纤维状多孔介质脱水性能的关键因素。本文通过超声处理纤维状多孔介质;然后获得微孔结构图像。之后,通过分析微观图像来研究机械作用和空化对不同超声结构下的微观结构的影响,获得统计和分形理论领域的结构特征参数。最后,实验研究了结构变化对水分去除的影响。事实证明,电力和治疗时间是确定超声波对纤维状多孔介质孔隙结构的影响的主要因素。随着功率和时间的增加,平均孔径,具有最大比率的孔径,表面孔隙率和表面分形尺寸的非线性增加。此外,生长是非线性的;孔结构的最大变化在530W中实现40分钟。通过微孔结构的变化,增强了水分含量损失率和有效的水分含量扩散系数。

著录项

  • 来源
    《Heat and mass transfer 》 |2021年第3期| 431-439| 共9页
  • 作者单位

    School of Environmental and Municipal Engineering North China University of Water Resources and Electric Power Zhengzhou 450046 People's Republic of China School of Energy and Environment Southeast University Nanjing 210096 People's Republic of China;

    School of Petroleum Engineering Changzhou University Changzhou 213164 People's Republic of China;

    School of Energy and Environment Southeast University Nanjing 210096 People's Republic of China;

  • 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
  • 关键词

    Ultrasound; Fibrous porous media; Micropore structure; Moisture transport;

    机译:超声;纤维状多孔介质;微孔结构;水分运输;

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