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Comminution Properties of Biomass in Hammer Mill and its Particle Size Characterization

机译:锤磨机中生物质的粉碎性能及其粒度表征

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Biomass particle size impacts handling, storage, conversion, and dust control systems. Size reduction mechanical energy was directly measured for switchgrass (Panicum virgatum L), wheat straw (Triticum aestivum L), and corn stover (lea mays L.) in aninstrumented hammer mill. Direct power inputs were determined for different operating speeds from 2000 to 3600 rpm for 3.175 mm integral classifying screen and mass input rate of 2.5 kg/min with 90° and 30° edges on hammers. Overall accuracy of power measurement was calculated to be ±0.003 kW. Particle sizes were examined for hammer mill operating factors using ISO sieve sizes from 4.75 to 0.02 mm in conjunction with Ro-tap sieve analyzer. A total specific energy (kWh/Mg) was defined as size reduction energy expended for a particular mill design. Effective specific energy was defined as the energy that can be assumed to reach the biomass. The difference is parasitic or idle energy. Total specific energy for switchgrass, wheat straw, and corn stovergrinding increased with hammer mill speed for both 90° and 30° hammers. Effective specific energy decreased marginally for switchgrass and considerably for wheat straw and it increased for corn stover with 90° hammers. However, effective specific energy increased with speed to certain extent and then decreased for 30° hammers. Rosin-Rammler equation fitted the switchgrass, wheat straw, and corn stover grind size distribution data with R~2 > 0.995. Mass relative span was greater than 1, which indicated a wide distribution of particle sizes. Uniformity coefficient was less than 4.0 for wheat straw, which indicated uniform mix of particles, and it was about 4.0 for switchgrass and corn stover, which indicated a large assortment of particles and also represented a well graded particle size distribution. Geometric mean diameter had strong correlations with Rosin-Rammler size parameter, median diameter, and effective size. Distribution related parameters, namely, mass relative span, Rosin-Rammler distribution parameter, inclusive graphic skewness, graphic kurtosis, uniformity index, uniformity coefficient, coefficient of gradation and distribution geometric standard deviation had strong correlation among themselves and a weak correlation with mill speed. Results of this extensive analysis of specific energy and particle sizes can be applied to selection of hammer mill operating parameters to produce a particular size of switchgrass, wheat straw, and corn stover grind.
机译:生物质粒度会影响处理,储存,转换和防尘系统。直接测量尺寸减少机械能,用于切换杆(Panicum Virgatum L),小麦秸秆(Triticum Aestivum L)和Aninstumented Hammer Mill中的玉米秸秆(Lea Mays L.)。针对2000至3600 rpm的不同操作速度确定直拨电源输入,对于3.175mm整体分类屏幕和2.5千克/分钟的质量输入速率,锤子上的90°和30°。功率测量的总体精度计算为±0.003 kW。使用ISO筛尺寸的锤式磨机操作因子检查粒子尺寸,与RO-Tap筛分析仪结合4.75至0.02 mm。总特定能量(KWH / MG)定义为特定轧机设计的尺寸减小能量。有效的特定能量被定义为可以假定到达生物质的能量。差异是寄生或怠速能量。对于90°和30°锤锤轧件,SwitchGrass,小麦秸秆和玉米秸秆和玉米秸秆和玉米秸秆和玉米秸秆的总能量增加。有效的特定能量略微下降,对于麦秸和麦秸大幅下降,而且玉米秸秆与90°锤子的增加。然而,有效的特定能量随着一定程度的速度而增加,然后减少30°锤。 Rosin-Rammler方程安装了r〜2> 0.995的Switchgrass,小麦吸管和玉米秸秆研磨尺寸分布数据。质量相对跨度大于1,表明粒径的广泛分布。对于麦秸来说,均匀性系数小于4.0,表明颗粒的均匀混合,适用于切换紫色和玉米秸秆约4.0,这表明了大量的颗粒,并且还代表了良好的粒度粒度分布。几何平均直径与松香 - 垃圾箱尺寸参数,中值和有效尺寸具有很强的相关性。分布相关参数,即质量相对跨度,松香 - 垃圾箱分布参数,包容性图形偏振,图形峰峰,均匀性指数,均匀系数,分布系数和分布的几何标准偏差在它们之间具有很强的相关性和与轧机速度相关的弱相关性。对特定能量和粒度的这种广泛分析的结果可以应用于锤磨机操作参数的选择,以产生特定尺寸的SwitchGrass,小麦秸秆和玉米秸秆研磨。

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