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首页> 外文期刊>Energy & fuels >Production of Biocrude from Biomass by Acidic Subcritical Water Followed by Alkaline Supercritical Water Two-Step Liquefaction
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Production of Biocrude from Biomass by Acidic Subcritical Water Followed by Alkaline Supercritical Water Two-Step Liquefaction

机译:酸性亚临界水,然后碱性超临界水两步液化,由生物质生产生物粗品

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摘要

Increased demand in transportation fuels, environmental concerns, and depletion of fossil fuels require the development of efficient conversion technologies for second-generation biofuels. The main objective of this work is to efficiently liquefy biomass into energy-dense biocrude, A novel two-step process is proposed in which acidic subcritical water followed by alkaline supercritical water media are utilized for the liquefaction. The concept is tested with switchgrass. The first step is carried out at 200 ℃ in acidic subcritical water to liquefy hemicelluloses to biocrude while avoiding the repolymerization reactions that would otherwise produce char. In the second step, the remaining unliquefied biomass (biomass-H) is subjected to supercritical water at 380 ℃ with Ca(OH)_2 as catalyst for minimizing the formation of char, enhancing lignin solubilization and therefore increasing liquefaction of the remaining polysaccharides toward biocrude. The proposed two-step liquefaction produces a significantly higher amount of biocrude, as compared to the traditional one-step process. The yield of biocrude from the proposed process is 40% on mass basis and 67% on energy basis of the feedstock biomass.
机译:对运输燃料的需求增加,对环境的关注以及化石燃料的枯竭,要求开发用于第二代生物燃料的高效转化技术。这项工作的主要目的是将生物质有效地液化为能量密集的生物原油。提出了一种新的两步法,其中利用酸性亚临界水和碱性超临界水介质进行液化。这个概念用柳枝tested进行了测试。第一步是在200℃的酸性亚临界水中进行,以使半纤维素液化成生物粗产物,同时避免原本会产生炭的再聚合反应。第二步,将剩余的未液化生物质(biomass-H)在380℃下以Ca(OH)_2为催化剂经受超临界水处理,以最大程度地减少炭的形成,增强木质素的增溶性,从而增加剩余多糖对生物原油的液化。与传统的一步法相比,拟议的两步液化可产生大量的生物原油。所提出的方法的生物粗品的产率为原料生物质的40%(质量)和67%(能量)。

著录项

  • 来源
    《Energy & fuels》 |2012年第maraaapra期|p.2365-2375|共11页
  • 作者

    Hema Ramsurn; Ram B. Gupta;

  • 作者单位

    Department of Chemical Engineering, Auburn University, Auburn, Alabama 36849-5127, United States;

    Department of Chemical Engineering, Auburn University, Auburn, Alabama 36849-5127, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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