首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >ULTRASONIC VIBRATION-ASSISTED PELLETING IN MANUFACTURING OF CELLULOSIC BIOFUELS: AN INVESTIGATION ON BIOMASS PARTICLE SIZE
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ULTRASONIC VIBRATION-ASSISTED PELLETING IN MANUFACTURING OF CELLULOSIC BIOFUELS: AN INVESTIGATION ON BIOMASS PARTICLE SIZE

机译:纤维素生物燃料制造中的超声波振动辅助颗粒:生物质粒度的研究

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Biofuels made from cellulosic biomass are an alternative to petroleum-based liquid transportation fuels. However, several technical barriers have hindered cost-effective manufacturing of cellulosic biofuels, such as low density of cellulosic feedstocks (causing high transportation and storage costs) and low sugar yield in enzymatic hydrolysis. Ultrasonic vibration-assisted (UV-A) pelleting can increase the density of cellulosic feedstocks and the sugar yield in enzymatic hydrolysis. A hypothesis for UV-A pelleting to increase sugar yield is that UV-A pelleting reduces the particle size of cellulosic biomass. This paper reports an experimental investigation on effects of UV-A pelleting on biomass particle size. Particle sizes before and after UV-A pelleting are measured and compared. The results show that there is no significant difference between particle sizes before and after UV-A pelleting. Therefore, the hypothesis is rejected.
机译:由纤维素生物质制成的生物燃料是石油基液体运输燃料的替代方案。然而,几种技术障碍阻碍了纤维素生物燃料的经济高效制造,例如纤维素原料的低密度(导致高运输和储存成本)和酶水解中的低糖产率。超声波振动辅助(UV-A)造粒可以增加纤维素原料密度和酶水解中的糖产率。 UV-A颗粒增加糖产率的假设是UV-A造粒减少了纤维素生物质的粒度。本文报道了一种实验研究紫外 - 一种粒度对生物质粒径的影响。测量UV-A造粒前后的颗粒尺寸并进行比较。结果表明,UV-A造粒前后粒子尺寸之间没有显着差异。因此,假设被拒绝。

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