首页> 外文期刊>Transactions of the ASABE >Knife mill comminution energy analysis of switchgrass, wheat straw, and corn stover and characterization of particle size distributions.
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Knife mill comminution energy analysis of switchgrass, wheat straw, and corn stover and characterization of particle size distributions.

机译:柳枝,、麦草和玉米秸秆的粉碎机粉碎能量分析和粒度分布特征。

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摘要

Biomass preprocessing and pretreatment technologies such as size reduction and chemical preconditioning are aimed at reducing the cost of ethanol production from lignocellulosic biomass. Size reduction is an energy-intensive biomass preprocessing unit operation. In this study, switchgrass, wheat straw, and corn stover were chopped in an instrumented knife mill to evaluate size reduction energy and corresponding particle size distribution as determined with a standard forage sieve analyzer. Direct mechanical power inputs were determined using a dedicated data acquisition system for knife mill screen openings from 12.7 to 50.8 mm, rotor speeds between 250 and 500 rpm, and mass feed rates from 1 to 11 kg/min. A speed of 250 rpm gave optimum performance of the mill. Optimum feed rates for 25.4 mm screen and 250 rpm were 7.6, 5.8, and 4.5 kg/min for switchgrass, wheat straw, and corn stover, respectively. Total specific energy (MJ/Mg) was defined as the size reduction energy required to operate the knife mill plus that imparted to the biomass. Effective specific energy was defined as the energy imparted to the biomass. For these conditions, total specific energies were 27.3, 37.9, and 31.9 MJ/Mg and effective specific energies were 10.1, 15.5, and 3.2 MJ/Mg for switchgrass, wheat straw, and corn stover, respectively. These results demonstrated that biomass selection affects the size reduction energy, even for biomass with similar features. Second-order polynomial equations for the total specific energy requirement fitted well (R20.983). Knife mill chopping of switchgrass, wheat straw, and corn stover resulted in particle size distributions classified as 'well-graded strongly fine-skewed mesokurtic', 'well-graded fine-skewed mesokurtic', and 'well-graded fine-skewed mesokurtic', respectively, for small knife mill screen sizes (12.7 to 25.4 mm) and distributions classified as 'well-graded fine-skewed mesokurtic', 'well-graded strongly fine-skewed mesokurtic', and 'well-graded fine-skewed mesokurtic', respectively, for the large screen size (50.8 mm). Total and effective specific energy values per unit size reduction of wheat straw were greater compared to those for switchgrass. Corn stover resulted in reduced total and effective specific energy per unit size reduction compared to wheat straw for the same operating conditions, but higher total specific energy per unit size reduction and lesser effective specific energy per unit size reduction compared to switchgrass. Data on minimized total specific energy with corresponding particle spectra will be useful for preparing feed material with a knife mill for subsequent grinding with finer size reduction devices.
机译:生物质预处理和预处理技术(例如尺寸减小和化学预处理)旨在降低木质纤维素生物质生产乙醇的成本。减小尺寸是耗能的生物质预处理单元的操作。在这项研究中,将柳枝,、小麦秸秆和玉米秸秆在仪器用刀磨机中切碎,以评估尺寸减小的能量和相应的粒度分布,如使用标准饲料筛分分析仪测定的那样。使用专用数据采集系统确定直接的机械动力输入,用于刀磨机筛网的开孔范围为12.7至50.8 mm,转子速度为250至500 rpm,质量进料速度为1至11 kg / min。 250 rpm的速度提供了最佳的磨粉机性能。柳枝,、麦草和玉米秸秆的25.4 mm筛网和250 rpm的最佳进料速率分别为7.6、5.8和4.5 kg / min。总比能(MJ / Mg)定义为操作切碎机所需的尺寸减小能量加上赋予生物质的能量。有效比能定义为赋予生物质的能量。在这些条件下,柳枝,、麦草和玉米秸秆的总比能分别为27.3、37.9和31.9 MJ / Mg,有效比能分别为10.1、15.5和3.2 MJ / Mg。这些结果表明,即使对于具有相似特征的生物质,生物质的选择也会影响尺寸减小能量。总比能量需求的二阶多项式方程拟合得很好(R 2 (> 0.983)的ASABE筛分的柳枝,、麦草和玉米秸秆的累积小尺寸质量。刀草切碎的柳枝,、麦草和玉米秸秆导致粒度分布分为“分级良好的细斜偏中速分子”,“分级细的偏斜偏中分子”和“分级的细偏斜偏中分子”。分别适用于小型切磨机筛网尺寸(12.7至25.4 mm)和分布,分别为“分级良好的细斜偏中速”,“分级严格的细斜偏中速”和“分级细斜的偏中速”分别适用于大屏幕尺寸(50.8毫米)。与柳枝switch相比,每单位麦秸尺寸减少的总和有效比能量值更大。在相同的操作条件下,与小麦秸秆相比,玉米秸秆每单位尺寸减少的总有效比能降低,但与柳枝switch相比,单位尺寸减少的总比能量更高,单位尺寸减少的有效比能更低。有关具有相应粒子光谱的最小总比能的数据,对于用刀磨机制备饲料原料,随后用更细的尺寸减小装置进行粉碎将是有用的。

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