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首页> 外文期刊>Fuel Processing Technology >Data-based equation to predict power and energy input for grinding wheat straw, corn stover, switchgrass, miscanthus, and canola straw
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Data-based equation to predict power and energy input for grinding wheat straw, corn stover, switchgrass, miscanthus, and canola straw

机译:基于数据的方程,以预测磨麦秸秆,玉米秸秆,切换,MISCANTHUS和油菜秸秆的功率和能量输入

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摘要

This study investigated size reduction of five herbaceous species: wheat straw, corn stover, switchgrass, miscanthus, and canola straw. The biomass samples were air-dried to moisture content of 10%. The instantaneous power input to grind the material was recorded. Grinding wheat straw, corn stover, and canola straw using a 3.2 mm screen inside the hammer mill consumed 32 to 35 kWh/t whereas grinding switchgrass and miscanthus on the same screen used 22 kWh/t of energy. All five biomass samples required almost the same amount of energy input (13 to 20 kWh/t) when a 6.4 mm screen was installed in the hammer mill. Some species like corn stover produced strings of fiber causing blockage of the inlet to the grinder. A linear relation was developed between geometric mean diameter (d(gw)) of the ground particles and the screen size (SS). The screen size inside the hammer mill was used as the representative size of the particles. The Rittinger equation was fitted to the size data to estimate the equation constant k(R) from energy input vs. screen size. The k(R) value ranged from 96 to 267 J mm/g depending on the species.
机译:本研究调查了五种草本种类的尺寸减少:小麦秸秆,玉米秸秆,切换紫杉,Miscanthus和油菜秸秆。将生物质样品风干至水分含量为10%。记录磨削材料的瞬时电源输入。使用32至35 kWh / t的3.2 mm屏幕磨削麦秸秆,玉米秸秆和油菜秸秆使用32至35 kWh / t,而在同一屏幕上使用22 kWh / t的磨削切换臂和miscanthus。当锤磨机中安装6.4 mm屏幕时,所有五种生物质样品都需要几乎相同的能量输入(13至20千瓦时/ T)。一些物种,如玉米秸秆,产生纤维串,导致磨机阻塞入口。在地面颗粒的几何平均直径(D(GW))和屏幕尺寸(SS)之间开发线性关系。锤磨机内的屏幕尺寸用作颗粒的代表性尺寸。频率方程装配到大小数据,以估计来自能量输入与屏幕尺寸的等式常数k(r)。 k(r)值根据物种,范围为96至267毫米/ g。

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