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Effect of grinder configuration on forest biomass bulk density, particle size distribution and fuel consumption

机译:粉碎机配置对森林生物量容重,粒度分布和燃料消耗的影响

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摘要

The effect of the grinder configuration, bit type and screen size, on bulk density and fuel consumption when processing forest harvest residues for energy purposes is analyzed. Residues were divided in three size classes based on the piece diameter and length and were processed in a six treatment structured randomized test using a horizontal grinder. For each treatment the basic density, moisture content, bulk density, particle size distribution, fuel consumption and bark and other non-wood substances content was estimated. No effect of bit type or screen size on bulk density was found when processing branches-and-tops size class residue. For the pulpwood and butt-log-chunks size classes, the knife-edge bits tend to produce a denser material explained in part by their cutting capabilities across the grain compared to the normal hammering process using carbide hammer bits. Fuel consumption was only affected by screen size when processing the branches-and-tops size class. For pulpwood and butt-log-chunks size classes, the use of carbide hammer bits for processing increased fuel consumption between 42 and 48% compared to knife-edge bits. Bark and other non-wood substances content accounted for 11% of the total grinding mixture in the branches-and-tops size class compared to 2.5% in grindings from pulpwood and butt-log-chunks size classes. The branches-and-tops size class residue produced denser bulk material compared to the other classes and consumed less fuel due in part to the higher basic density and increasing amount of fine particles compared to the other analyzed size classes.
机译:分析了磨碎机配置,钻头类型和筛孔尺寸对加工用于能源目的的森林采伐残余物时的体积密度和燃料消耗的影响。根据工件的直径和长度将残留物分为三个尺寸类别,并使用卧式磨床在六种处理结构的随机试验中进行处理。对于每种处理,估计了基本密度,水分含量,堆积密度,粒度分布,燃料消耗以及树皮和其他非木材物质的含量。处理分支和顶部尺寸类别的残渣时,未发现位类型或屏幕尺寸对堆积密度的影响。对于纸浆和对接原木块尺寸类别,与使用硬质合金锤头的正常锤击工艺相比,刀刃刀头倾向于产生更致密的材料,部分原因是它们在整个谷物上的切割能力。处理分支和顶部尺寸类别时,燃料消耗仅受屏幕尺寸的影响。对于纸浆和对接大块木材,使用硬质合金锤头进行加工比刀刃刀头可节省42%至48%的燃油。树皮和其他非木材物质的含量占分支和顶部尺寸类别的总研磨混合物的11%,而来自纸浆和对接木块尺寸类别的研磨的比例为2.5%。与其他类别的尺寸相比,支顶尺寸类别的残留物与其他类别的相比,产生的致密的散装物料,消耗的燃料更少,这部分是由于较高的基本密度和增加的细颗粒数量。

著录项

  • 来源
    《Biomass & bioenergy》 |2015年第10期|44-54|共11页
  • 作者单位

    Department of Forest Engineering, Resources and Management, Oregon State University, Corvallis, OR 97331, USA;

    Department of Forest Engineering, Resources and Management, Oregon State University, Corvallis, OR 97331, USA;

    Department of Wood Science and Engineering, Oregon State University, USA;

    Weyerhaeuser Company, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioenergy; Forest biomass; Grinding; Bulk density; Fuel consumption;

    机译:生物能源森林生物量;研磨;堆积密度燃油消耗;

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