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Renewable fuels via catalytic hydrodeoxygenation of lipid-based feedstocks

机译:通过脂类原料的催化加氢脱氧获得可再生燃料

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摘要

Energy security concerns have led to the search for alternative and renewable energy resources. Biomass with high lipid content is an attractive feedstock for producing renewable fuels. Biomass-derived fats and oils can be readily converted into biodiesel via the well-studied transesterification process. However, owing to the alcohol component of biodiesel, which contains oxygen, it cannot serve as a fully-fledged replacement for conventional petrodiesel. In this respect, renewable diesel obtained via catalytic hydrodeoxygenation (HDO) of lipid-based feedstocks is a more attractive and fungible option. This process makes it possible to produce fuels with the chemical composition indistinguishable from that of petroleum-derived products. Since all kinds of biomass have high oxygen content, comprehensive research of the catalytic HDO process arouses great interest. This article aims to review state-of-the-art studies related to the catalytic HDO of lipid-based feedstocks from the last decade. The suitability of microalgae as a feedstock for renewable fuel production, as well as the possible advantages of processing lipid-based feedstocks using aqueous HDO, are also addressed in this review.
机译:能源安全问题导致人们寻求替代和可再生能源。高脂质含量的生物质是生产可再生燃料的有吸引力的原料。通过深入研究的酯交换过程,可以容易地将生物质衍生的油脂转化为生物柴油。但是,由于生物柴油中的酒精成分含有氧气,因此无法完全替代传统的石油柴油。在这方面,通过基于脂质的原料的催化加氢脱氧(HDO)获得的可再生柴油是更有吸引力和可替代的选择。该方法使得可以生产化学成分与石油衍生产品的化学成分没有区别的燃料。由于各种生物质都具有较高的氧含量,因此对催化HDO工艺的综合研究引起了极大的兴趣。本文旨在回顾与近十年来基于脂质的原料的催化HDO相关的最新研究。本评价还讨论了微藻作为可再生燃料生产原料的适用性,以及使用含水HDO处理基于脂质的原料的可能优势。

著录项

  • 来源
    《Biofuels》 |2013年第2期|219-239|共21页
  • 作者

    Sergiy Popov; Sandeep Kumar;

  • 作者单位

    Department of Civil & Environmental Engineering, Old Dominion University, Norfolk, VA 23529, USA;

    Department of Civil & Environmental Engineering, Old Dominion University, Norfolk, VA 23529, USA;

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  • 正文语种 eng
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