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A Comprehensive Investigation on the Effects of Biomass Particle Size in Cellulosic Biofuel Production

机译:生物质粒径在纤维素生物燃料生产中的综合研究

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摘要

Biofuels derived from cellulosic biomass offer one of the best near-to midterm alternatives to petroleum-based liquid transportation fuels. Biofuel conversion is mainly done through a biochemical pathway in which size reduction, pelleting, pretreatment, enzymatic hydrolysis, and fermentation are main processes. Many studies reveal that biomass particle size dictates the energy consumption in the size reduction. Biomass particle size also influences sugar yield in enzymatic hydrolysis, and biofuel yield in fermentation is approximately proportional to the former enzymatic hydrolysis sugar yield. Most reported studies focus on the effects of biomass particle size on a specific process; as a result, in the current literature, there is no commonly accepted guidance to select the overall optimum particle size in order to minimize the energy consumption and maximize sugar yield. This study presents a comprehensive experimental investigation converting three types of biomass (big bluestem, wheat straw, and corn stover) into fermentable sugars and studies the effects of biomass particle size throughout the multistep bioconversion. Three particle sizes (4 mm, 2 mm, and 1 mm) were produced by knife milling and were pelletized with an ultrasonic pelleting system. Dilute acid method was applied to pretreat biomass before enzymatic hydrolysis. Results suggested 2 mm is the optimum particle size to minimize energy consumption in size reduction and pelleting and to maximize sugar yield among the three particle sizes for big bluestem and wheat straw biomass. Nevertheless, there is no significant difference in sugar yield for corn stover for the three particle sizes.
机译:源自纤维素生物量的生物燃料提供了基于石油的液体运输燃料的最佳近代中间替代品之一。生物燃料转化主要通过生化途径进行,其中尺寸减小,造粒,预处理,酶水解和发酵是主要方法。许多研究表明生物质粒径决定了尺寸减小的能量消耗。生物质粒径也影响酶水解中的糖产量,并且发酵中的生物燃料产量与前一种酶水解糖产率大致成比例。大多数报道的研究侧重于生物质粒度对特定过程的影响;结果,在当前的文献中,没有公共接受的指导来选择整体最佳粒度,以最小化能量消耗并最大化糖产量。本研究介绍了一项全面的实验研究,将三种类型的生物量(大蓝子,小麦秸秆和玉米秸秆)转化为可发酵的糖,并研究在整个多步体生物转化过程中生物质粒度的影响。通过刀铣制备三个粒度(4mm,2mm和1毫米),用超声波造粒系统造粒。在酶水解之前将稀酸法应用于预腐败生物质。结果表明,2毫米是最佳粒度,以最大限度地减少尺寸减小和造粒的能量消耗,并为大蓝子和小麦秸秆生物量的三种粒子尺寸最大化糖产量。然而,对于三种粒径,玉米秸秆的糖产量没有显着差异。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2018年第4期|041804.1-041804.7|共7页
  • 作者单位

    Kansas State Univ Dept Ind & Mfg Syst Engn 2061 Rathbone Hall 1701B Platt St Manhattan KS 66506 USA;

    Kansas State Univ Dept Ind & Mfg Syst Engn 2075 Rathbone Hall 1701B Platt St Manhattan KS 66506 USA;

    Kansas State Univ Dept Biol & Agr Engn 129 Seaton Hall 920 N 17th St Manhattan KS 66506 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biofuel; cellulosic; particle size; pelleting; pretreatment; size reduction;

    机译:生物燃料;纤维素;粒度;颗粒;预处理;尺寸减少;
  • 入库时间 2022-08-18 21:17:41

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