首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Ultrasonic Vibration-Assisted Pelleting of Cellulosic Biomass for Biofuel Manufacturing
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Ultrasonic Vibration-Assisted Pelleting of Cellulosic Biomass for Biofuel Manufacturing

机译:用于生物燃料制造的纤维素生物质的超声振动辅助制粒

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摘要

Increasing demands and concerns for the reliable supply of liquid transportation fuels makes it important to find alternative sources to petroleum based fuels. One such alternative is cellulosic biofuels. However, several technical barriers have hindered large-scale, cost-effective manufacturing of cellulosic biofuels, such as the low density of cellulosic feedstocks (causing high transportation and storage costs) and the lack of efficient pretreatment procedures for cellulosic biomass. This paper reports experimental investigations on ultrasonic vibration-assisted (UV-A) pelleting of cellulosic feedstocks. It studies effects of input variables (ultrasonic vibration, moisture content, and particle size) on output variables (pellet density, stability, durability, pelleting force, and yield of biofuel conversion) in UV-A pelleting. Results showed that UV-A pelleting could increase the density of cellulosic feedstocks and the yield of biofuel conversion.
机译:对液体运输燃料的可靠供应的需求和关注的增加使得寻找石油基燃料的替代来源变得很重要。一种这样的替代方法是纤维素生物燃料。但是,一些技术障碍阻碍了大规模,经济高效地生产纤维素生物燃料,例如纤维素原料的密度低(导致运输和存储成本高)以及纤维素生物质缺乏有效的预处理程序。本文报道了纤维素原料超声振动辅助(UV-A)造粒的实验研究。它研究了UV-A制粒中输入变量(超声波振动,水分含量和粒径)对输出变量(丸粒密度,稳定性,耐用性,制粒力和生物燃料转化率)的影响。结果表明,UV-A制粒可以增加纤维素原料的密度和生物燃料转化的产量。

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