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首页> 外文期刊>Journal of dairy science >Modification of the Penn State Forage and Total Mixed Ration Particle Separator and the Effects of Moisture Content on its Measurements
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Modification of the Penn State Forage and Total Mixed Ration Particle Separator and the Effects of Moisture Content on its Measurements

机译:宾州草料和总混合定量颗粒分离器的改进及其水分含量对其测量的影响

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The Penn State Particle Separator has led to widespread measurement of forage and total mixed ration (TMR) particle size. However, a large proportion of small particles may pass through both sieves when a TMR is analyzed, and field research has suggested that both shaking frequency and sample dry matter may affect the results. The objectives of this project were to test the effects of an additional sieve with a smaller aperture size, shaking frequency, and sample moisture content on results obtained. A sieve was constructed out of wire with a nominal size aperture of 1.18mm. Samples of alfalfa haylage, corn silage, and a TMR were shaken at frequencies of 0.9, 1.1, and 1.6 Hz with a 17-cm stroke length. Reducing shaking frequency to 0.9 Hz resulted in more material being retained on the 19.0-mm sieve for all sample types, increasing the geometric mean. Increasing frequency to 1.6 Hz did not affect the geometric mean, but did result in a greater amount of corn silage falling through the 1.18-mm sieve. For alfalfa haylage, moisture content between 57.4 and 35.6% did not affect results; however, for corn silage, less moisture increased the percentage of particles less than 1.18 mm and decreased the geometric mean. For both sample types, further drying caused a greater proportion of small particles and a smaller geometric mean. We suggest using a third sieve and shaking at 1.1 Hz or greater with a stroke length of 17cm when using the Penn State Particle Separator to analyze forage particle size.
机译:宾夕法尼亚州立颗粒分离器已导致广泛测量草料和总混合日粮(TMR)粒度。但是,在分析TMR时,大部分小颗粒可能会同时通过两个筛子,并且现场研究表明,振荡频率和样品干物质都可能影响结果。该项目的目的是测试孔径较小,振动频率和样品含水量较小的附加筛对所得结果的影响。用金属丝构造筛网,其标称尺寸孔径为1.18mm。以0.9、1.1和1.6 Hz的频率摇动苜蓿半干果,玉米青贮饲料和TMR样品,冲程长度为17厘米。将振动频率降低到0.9 Hz,对于所有类型的样品,将更多的材料保留在19.0毫米的筛子上,从而增加了几何平均值。将频率增加到1.6 Hz不会影响几何平均值,但会导致大量玉米青贮饲料通过1.18毫米筛网掉落。对于苜蓿草的水分含量,水分含量在57.4至35.6%之间不会影响结果。但是,对于玉米青贮饲料,较少的水分增加了小于1.18 mm的颗粒的百分比,并降低了几何平均值。对于这两种类型的样品,进一步干燥都会导致较大比例的小颗粒和较小的几何平均值。当使用宾州状态颗粒分离器分析饲料颗粒大小时,我们建议使用第三个筛网并以1.1 Hz或更大的频率摇动,冲程长度为17cm。

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