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Deoxygenation of microalgal oil into hydrocarbon with precious metal catalysts: Optimization of reaction conditions and supports

机译:用贵金属催化剂将微藻油脱氧为烃:反应条件和载体的优化

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摘要

Deoxygenation of microalgal oil obtained by pyrolysis of microalgae was carried out for the production of hydrocarbon fuel from biomass by metal supported catalyst. Oleic acid was used as a model reactant to select an optimized catalyst. Effects of support, metal species, and metal loading on catalytic performance were investigated. Activated carbon showed better performance than silica as a support. Considering various factors in model reaction, such as metal loading, reaction temperature, activity for deoxygenation, and selectivity for decarboxylation, 5 wt% platinum supported on activated carbon (5 wt % Pt/C) was selected as an optimized catalyst. Based on these results, deoxygenation of the pyrolysis oil from Chlorella sp. KR-1 was conducted at 623 and 673 K over this selected catalyst. The product after catalytic deoxygenation was mainly composed of pure hydrocarbons, and its oxygen content was below 2.0%. The fraction in the product of which the boiling point was less than 623 K was about 90%. These properties could allow this upgraded oil to be used for transportation fuel. However, the degree of oxygen removal with microalgal pyrolysis oil was lower than that with oleic acid, implying that impurities in the pyrolysis oil may inhibit the deoxygenation reaction.
机译:进行了通过微藻的热解获得的微藻油的脱氧,以通过金属负载催化剂从生物质生产烃类燃料。油酸用作模型反应物以选择优化的催化剂。研究了载体,金属种类和金属负载量对催化性能的影响。活性炭显示出比二氧化硅作为载体更好的性能。考虑到模型反应中的各种因素,例如金属负载量,反应温度,脱氧活性和脱羧选择性,选择了负载在活性炭上的5 wt%铂(5 wt%Pt / C)作为优化催化剂。基于这些结果,对小球藻属的热解油进行脱氧。在该选择的催化剂上于623和673 K下进行KR-1。催化脱氧后的产物主要由纯烃组成,其氧含量低于2.0%。沸点小于623K的产物中的分数约为90%。这些特性可以使这种提纯的油被用作运输燃料。但是,微藻类热解油的脱氧度低于油酸,这意味着热解油中的杂质可能会抑制脱氧反应。

著录项

  • 来源
    《Energy 》 |2012年第1期| 25-30| 共6页
  • 作者单位

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea,Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul, 120-749, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Clean Fuel Research Center Korea Institute of Energy Research, Daejeon, 305-343, South Korea;

    Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul, 120-749, South Korea;

    School of Applied Chemical Engineering, Chonnam National University, Gwangju 500-767, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    deoxygenation; decarboxylation; platinum; oleic acid; microalgae; pyrolysis oil;

    机译:脱氧脱羧铂;油酸微藻热解油;

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