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Ultrasonic vibration-assisted pelleting for cellulosic biofuel manufacturing: investigation on power consumption

机译:用于纤维素生物燃料制造的超声振动辅助制粒:功耗研究

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摘要

Cellulosic ethanol produced from cellulosic biomass is an alternative to petroleum-based transportation fuels. Raw cellulosic biomass has low density, causing high costs in their storage, transportation, and handling. Ultrasonic vibration-assisted (UV-A) pelleting can increase the density of cellulosic biomass. Effects of UV-A pelleting variables on pellet quality (density, durability, stability, and strength) and sugar yield have been reported. However, power consumption in UV-A pelleting has not been fully investigated. This paper presents an experimental investigation on power consumption in UV-A pelleting of wheat straw. Effects of input variables (biomass moisture content, biomass particle size, pelleting pressure, and ultrasonic power) on power consumption are investigated. Results show that power consumption in UV-A pelleting increases as moisture content and particle size decrease, and as pelleting pressure and ultrasonic power increase.
机译:由纤维素生物质生产的纤维素乙醇是石油基运输燃料的替代品。原始纤维素生物质的密度低,导致其储存,运输和处理的成本高昂。超声振动辅助(UV-A)造粒可以增加纤维素生物质的密度。已经报道了UV-A制粒变量对制粒质量(密度,耐久性,稳定性和强度)和糖产量的影响。但是,尚未完全研究UV-A制粒中的功耗。本文提出了小麦秸秆UV-A制粒过程中功耗的实验研究。研究了输入变量(生物质含水量,生物质粒径,造粒压力和超声功率)对功耗的影响。结果表明,UV-A制粒的功耗随水分含量和粒度的减少以及制粒压力和超声功率的增加而增加。

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