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Hydraulic Properties of Baled Switchgrass and Miscanthus

机译:BALED EXPLECLASS和MISCANTHUS的液压性能

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摘要

This study characterized the hydraulic properties within baled switchgrass (Panicum virgatum L., variety Alamo) and miscanthus (Miscanthus x giganteusj, thereby enabling a better understanding of moisture changes in baled biomass during on-farm storage and/or high-solids bioconversion. Fully saturated bales were drained by gravity, and the moisture content was determined over 60 h. The average initial moisture content ranged between 55.9% and 71.9% (w.b.) for switchgrass and between 60.5% and 73.9% (w.b.) for miscanthus bales depending on the dry bale density. As the bale drained by gravity, rapid leaching of water was observed within the first 0.1 h, with a reduction in moisture content of 7.3 and 7.0 percentage points (w.b.) for switchgrass and miscanthus, respectively. Leaching then continued at a steady rate until termination of the experiment, with further reductions of 4.3 and 4.4 percentage points (w.b.) for switchgrass and miscanthus, respectively. Final moisture contents after 60 h rangedfrom 45.8% to 58.3% for switchgrass and from 48.7% to 60% for miscanthus, with the higher moisture contents observed in the lowest density bales. Hydraulic conductivity tests were carried out with bales of switchgrass and miscanthus with a constant headsystem. The average saturated hydraulic conductivity ranged between 0.103 and 0.616 cm s'1 for baled switchgrass and between 0.219 and 0.658 cm s'1 for baled miscanthus depending on the bale density. The matric suction of baled switchgrass was also assessed at variable densities and moisture contents using the contact filter paper method. The van Genuchten parameters were found to range between 0.235 and 0.270 m'1for a and between 5.415 and 10.345for n, depending on the density. Infiltration tests werealso carried out on baled switchgrass at variable densities and moisture contents using a minidisk infiltrometer. The curve-fitting parameters of Philip's two-term equation ranged between 0.086 x l(t6 and 0.779 x 10~6 cm s'1 for Cj and between 0.200 and5.805 x 10~6 cm s~1/2 for C2, depending on the density and moisture content. The unsaturated hydraulic conductivity ranged between 0.019 and 0.272 cm s~', while sorptivity ranged between 0.048 and 2.103 cm s'1'2, depending on the density and moisture content. These results provide data required to evaluate water flow through variable-density rectangular bales and indicate a potential to remove end-products of biomass conversion from baled biomass.
机译:该研究表征了BALED SHAFFGRASS(Panicum VIRGATUM L.,品种ALAMO)和MISCANTHUS(MISCANTHUS X Giganteusj)内的液压特性,从而能够在农场储存和/或高固型生物转化期间更好地了解BALED生物量的水分变化。完全通过重力排出饱和包,水分含量超过60小时。平均初始水分含量范围为55.9%和71.9%(WB),适用于MISCanthus BALES的60.5%和73.9%(WB)。干燥的捆包密度。由于重力排出的捆包,在前0.1小时内观察到水的快速浸出,分别降低了含水量为7.3和7.0个百分点(WB)的含水量,用于切换和MISCanthus。然后继续浸出直到实验终止直到稳定的速率,进一步减少了4.3%和4.4个百分点(WB),分别用于切换和MISCanthus。最终的水分含量60小时的速度为45.8%至58.3%,均可均匀的48.7%至60%,在最低密度捆包中观察到较高的水分含量。用恒定的母部和Miscanthus进行液压导电性试验,具有恒定的始终如一。对于BALE密度,平均饱和液压电导率范围为0.103和0.616cm S'1,并且对于BALE密度,BALED MISCANTHUS的0.219和0.658cm S'1。使用触点滤纸方法,还在可变密度和水分含量评估BALED SHAFTGRAS的原料抽吸。面向5.415和10.345For n的0.235和0.270m'1之间的范围为0.235和0.270m'1。渗透试验Werealso在使用in Infoiltometer的可变密度和水分含量下进行的BALED Explicgrass进行。菲利普的双齿型方程的曲线拟合参数范围为0.086 xL(T6和0.779×10〜6cm S'1,C2的0.200和5.805×10〜6cm S〜1/2,取决于密度和水分含量。不饱和液压导电率在0.019和0.272cm S〜'之间,而吸附率在0.048和2.103cm S'1'2之间,这取决于密度和水分含量。这些结果提供了评估水所需的数据流过可变密度的矩形包,并指示从BALED生物质中去除生物质转化率的最终产物的可能性。

著录项

  • 来源
    《Transactions of the ASABE》 |2018年第3期|共11页
  • 作者单位

    Department of Biosystems and Agricultural Engineering University of Kentucky Lexington Kentucky currently Assistant Professor of Regenerative Agriculture Andrew College Cuthbcrt Georgia;

    Department of Biosystems and Agricultural Engineering University of Kentucky Lexington Kentucky.;

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

    Biomass; Bioprocessing; Flushing; High solids;

    机译:生物质;生物加工;冲洗;高固体;

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