Suppr超能文献

刀式粉碎机操作因素对柳枝稷粒度分布的影响。

Knife mill operating factors effect on switchgrass particle size distributions.

作者信息

Bitra Venkata S P, Womac Alvin R, Yang Yuechuan T, Igathinathane C, Miu Petre I, Chevanan Nehru, Sokhansanj Shahab

机构信息

Department of Biosystems Engineering and Soil Science, 2506 E.J. Chapman Drive, The University of Tennessee, Knoxville, TN 37996, USA.

出版信息

Bioresour Technol. 2009 Nov;100(21):5176-88. doi: 10.1016/j.biortech.2009.02.072. Epub 2009 Jun 25.

Abstract

Biomass particle size impacts handling, storage, conversion, and dust control systems. Switchgrass (Panicum virgatum L.) particle size distributions created by a knife mill were determined for integral classifying screen sizes from 12.7 to 50.8 mm, operating speeds from 250 to 500 rpm, and mass input rates from 2 to 11 kg/min. Particle distributions were classified with standardized sieves for forage analysis that included horizontal sieving motion with machined-aluminum sieves of thickness proportional to sieve opening dimensions. Then, a wide range of analytical descriptors were examined to mathematically represent the range of particle sizes in the distributions. Correlation coefficient of geometric mean length with knife mill screen size, feed rate, and speed were 0.872, 0.349, and 0.037, respectively. Hence, knife mill screen size largely determined particle size of switchgrass chop. Feed rate had an unexpected influence on particle size, though to a lesser degree than screen size. The Rosin-Rammler function fit the chopped switchgrass size distribution data with an R(2)>0.982. Mass relative span was greater than 1, which indicated a wide distribution of particle sizes. Uniformity coefficient was more than 4.0, which indicated a large assortment of particles and also represented a well-graded particle size distribution. Knife mill chopping of switchgrass produced 'strongly fine skewed mesokurtic' particles with 12.7-25.4 mm screens and 'fine skewed mesokurtic' particles with 50.8 mm screen. Results of this extensive analysis of particle sizes can be applied to selection of knife mill operating parameters to produce a particular size of switchgrass chop, and will serve as a guide for relations among the various analytic descriptors of biomass particle distributions.

摘要

生物质颗粒大小会影响处理、储存、转化和粉尘控制系统。测定了由刀磨机产生的柳枝稷(Panicum virgatum L.)颗粒大小分布,其涉及的整体分级筛尺寸为12.7至50.8毫米,运行速度为250至500转/分钟,质量输入速率为2至11千克/分钟。颗粒分布用用于饲料分析的标准筛进行分类,该标准筛包括水平筛分运动,使用厚度与筛孔尺寸成比例的机加工铝筛。然后,研究了一系列分析描述符,以便从数学上表示分布中颗粒大小的范围。几何平均长度与刀磨机筛网尺寸、进料速率和速度的相关系数分别为0.872、0.349和0.037。因此,刀磨机筛网尺寸在很大程度上决定了柳枝稷切碎物的颗粒大小。进料速率对颗粒大小有意外影响,尽管其影响程度小于筛网尺寸。Rosin-Rammler函数拟合切碎柳枝稷的尺寸分布数据,决定系数R(2)>0.982。质量相对跨度大于1,这表明颗粒大小分布较宽。均匀系数大于4.0,这表明颗粒种类繁多,也代表了粒度分布良好。使用12.7 - 25.4毫米筛网时,刀磨机切碎柳枝稷产生“强细偏态中峰态”颗粒,使用50.8毫米筛网时产生“细偏态中峰态”颗粒。这种对颗粒大小的广泛分析结果可应用于选择刀磨机操作参数以生产特定尺寸的柳枝稷切碎物,并将作为生物质颗粒分布各种分析描述符之间关系的指南。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验