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Effects of different pretreatments on compression molding of wheat straw and mechanism analysis

机译:不同预处理对小麦秸秆压缩成型的影响及机理分析

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摘要

This study investigated effects of various pretreatments on characteristics of compression molded wheat straw and molding energy consumption. And correlative mechanism was explored. Pretreatments included natural air drying, vacuum sealing, 4% ammonium hydroxide+vacuum sealing. Hemicellulose and lignin contents and crystallinity decreased following pretreatments, while surface porosities increased. Cellulose and ash levels and lower heat value were not significantly affected (P>.05), while water resistance decreased and relax density and fall strength satisfied relevant standards. Ignition index and comprehensive combustibility index of samples treated with 4% ammonium hydroxide+ vacuum sealing were the greatest, and molding energy consumption was also the lowest. Optimal pretreatment time was 21 days. Mechanism analysis indicated that crystallinity affected water resistance, lignin affected combustion characteristics and hemicellulose affected molding energy consumption to the greatest extent. Overall, 4% ammonium hydroxide+ vacuum sealing pretreatment had the most beneficial effect on compression molding and resulted in the lowest energy consumption.
机译:本研究调查了各种预处理对压缩模塑麦秸秆和模塑能耗的特性的影响。探索了相关机制。预处理包括天然空气干燥,真空密封,4%氢氧化铵+真空密封。预处理后,半纤维素和木质素含量和结晶度降低,而表面孔隙率增加。纤维素和灰分水平和较低的热值没有显着影响(p> .05),而耐水性降低,密度放松,并且落后的相关标准。用4%氢氧化铵+真空密封处理的样品的点火指数和综合可燃指数是最大的,并且模塑能耗也是最低的。最佳预处理时间为21天。机制分析表明,结晶性受到耐水性,木质素影响燃烧特性和半纤维素影响到最大程度的模塑能量消耗。总体而言,4%的氢氧化铵+真空密封预处理对压缩成型具有最有益的影响,并导致能耗最低。

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