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Comprehensive rheological characterization of chopped and ground switchgrass

机译:切碎和地面柳枝switch的综合流变学表征

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摘要

Background: In this work the impact of grinding and chopping on the rheological properties of four switchgrass materials (panicum virgatum) is investigated, comparing physical characterization to previously published feeding performance in bulk equipment in a high-tonnage facility, in which chopped materials exhibited dramatically better handling performance than corresponding ground materials. Results: Physical characterization included sieve analysis, automated digital image analysis of particle size and shape distributions, microscopy of particle microstructure, shear tests using two different sizes of ring shear testers, flow tests in a custom hopper with an adjustable outlet, and uniaxial compression and spring back tests, Shear tests failed to demonstrate consistent statistically significant differences between the shear strengths of the chopped and ground materials subjected to uniaxial compression. However, in laboratory-scale hopper flow tests, the chopped materials exhibited substantially better flow performance than the ground materials, in agreement with the previously published bulk handling tests. Conclusion: Chopped switchgrass materials exhibit substantially better flowability properties in large-scale bulk equipment and in laboratory-scale hopper feeding tests; however, shear tests were not able to reliably predict the flowability properties of bulk switchgrass particles, likely because uniaxial-compression shear tests do not capture the effects of compressibility and elasticity in multi-dimensional flow streams.
机译:背景:在这项工作中,研究了粉碎和切碎对四种柳枝materials材料(圆锥花)的流变性能的影响,并将其物理特性与先前公布的高吨位散装设备散装设备的进料性能进行了比较。比相应的地面材料具有更好的处理性能。结果:物理表征包括筛分分析,颗粒尺寸和形状分布的自动数字图像分析,颗粒微观结构的显微镜检查,使用两种不同尺寸的环形剪切测试仪的剪切测试,在具有可调出口的定制料斗中的流动测试以及单轴压缩和在回弹试验中,剪切试验未能证明经单轴压缩的切碎的和磨碎的材料的剪切强度之间在统计学上具有一致的显着差异。但是,在实验室规模的料斗流动测试中,切碎的物料显示出比地面物料更好的流动性能,这与先前发布的批量处理试验一致。结论:切碎的柳枝materials材料在大型散装设备和实验室规模的料斗进料测试中显示出明显更好的流动性。但是,剪切试验不能可靠地预测块状柳枝particles颗粒的流动性,这可能是因为单轴压缩剪切试验并未捕获多维流中可压缩性和弹性的影响。

著录项

  • 来源
    《Biofuels》 |2015年第6期|249-260|共12页
  • 作者单位

    Idaho National Laboratory, 2351 North Blvd, PO Box 1625, Idaho Falls, ID 83415-2025, USA;

    Idaho National Laboratory, 2351 North Blvd, PO Box 1625, Idaho Falls, ID 83415-2025, USA;

    Idaho National Laboratory, 2351 North Blvd, PO Box 1625, Idaho Falls, ID 83415-2025, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    rheological; switchgrass; flowability; microscopy;

    机译:流变的柳枝;流动性显微镜检查;
  • 入库时间 2022-08-18 00:55:39

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