首页> 外文会议>ASME International Manufacturing Science and Engineering Conference >ULTRASONIC-VIBRATION ASSISTED PELLETING FOR CELLULOSIC ETHANOL MANUFACTURING: EFFECTS OF PARTICLE SIZE AND MOISTURE CONTENT ON POWER CONSUMPTION
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ULTRASONIC-VIBRATION ASSISTED PELLETING FOR CELLULOSIC ETHANOL MANUFACTURING: EFFECTS OF PARTICLE SIZE AND MOISTURE CONTENT ON POWER CONSUMPTION

机译:超声波振动纤维素型纤维素制造辅助颗粒:粒度和水分含量对功耗的影响

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摘要

Ethanol produced from cellulosic materials is an alternative to petroleum-based transportation fuels. However, its manufacturing costs are too high to be competitive at present. Raw cellulosic biomass materials have low density, causing their transportation and handling expensive, contributing to high manufacturing costs of cellulosic ethanol. Pelleting can increase the density of cellulosic biomass and reduce their transportation and handling costs. Ultrasonic vibration-assisted (UV-A) pelleting is a new pelleting method. Earlier studies show that moisture content and particle size have significant effects on pellet quality and sugar yield. However, their effects on power consumption in UV-A pelleting have not been studied. Since power consumption directly affects ethanol manufacturing costs, it is desirable to understand how input variables affect power consumption. The objective of this paper is to study effects of moisture content and particle size on power consumption in UV-A pelleting of wheat straw. Results show that higher moisture content and larger particle size result in higher power consumption.
机译:由纤维素材料产生的乙醇是石油基运输燃料的替代方案。然而,目前其制造成本太高而无法竞争。原料纤维素生物质材料具有低密度,导致其运输和处理昂贵,有助于纤维素乙醇的高制造成本。颗粒可以增加纤维素生物质的密度并降低运输和处理成本。超声波振动辅助(UV-A)造粒是一种新的颗粒方法。早期的研究表明,水分含量和粒度对颗粒质量和糖产量具有显着影响。然而,他们对UV-A颗粒中的功耗的影响尚未研究。由于功耗直接影响乙醇制造成本,因此希望了解输入变量如何影响功耗。本文的目的是研究水分含量和粒度对紫外线秸秆颗粒的功耗对功耗的影响。结果表明,较高的水分含量和更大的粒度导致更高的功耗。

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