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Biorefinery: Toward an industrial metabolism

机译:生物炼制:迈向工业新陈代谢

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摘要

Fossil fuel reserves are running out, global warming is becoming a reality, waste recycling is becoming ever more costly and problematic, and unrelenting population growth will require more and more energy and consumer products. There is now an alternative to the 100% oil economy; it is a renewable resource based on agroresources by using the whole plant. Production and development of these new products are based on biorefinery concept. Each constituent of the plant can be extracted and func-tionalized in order to produce non-food and food fractions, intermediate agro-industrial products and synthons. Three major industrial domains can be concerned: molecules, materials and energy. Molecules can be used as solvent surfactants or chemical intermediates in substitution of petrol derivatives. Fibers can be valorized in materials like composites. Sugars and oils are currently used to produce biofuels like bioethanol or biodiesel, but second-generation biofuels will use lignocellulosic biomass as raw material. Lipids can be used to produce a large diversity of products like solvent, lubricants, pastes or surfactants. Industrial biorefinery will be linked to the creation of new processes based on the twelve principles of green chemistry (clean processes, atom economy, renewable feedstocks...).Biotechnology, especially white biotechnology, will take a major part into these new processes with biotransformations (enzy-mology, micro-organisms...) and fermentation. The substitution of oil products by biobased products will develop a new bioeconomy and new industrial processes respecting the sustainable development concept. Industrial biorefinery can be developed on the principle that any residues of one can then be exploited as raw material by others in an industrial metabolism.
机译:化石燃料的储量即将耗尽,全球变暖已成为现实,废物回收正变得越来越昂贵和成问题,而且持续不断的人口增长将需要越来越多的能源和消费产品。现在有替代100%石油经济的方法。它是通过使用整个植物而基于农业资源的可再生资源。这些新产品的生产和开发均基于生物精炼概念。可以提取植物的每种成分并对其进行功能化,以生产非食品和食品级分,中间农工产品和合成子。可以关注三个主要的工业领域:分子,材料和能量。分子可以代替汽油衍生物用作溶剂表面活性剂或化学中间体。纤维可以在复合材料等材料中得到增值。糖和油目前用于生产生物燃料,如生物乙醇或生物柴油,但第二代生物燃料将使用木质纤维素生物质作为原料。脂质可用于生产多种产品,例如溶剂,润滑剂,糊剂或表面活性剂。工业生物精炼厂将与基于绿色化学的十二个原理(清洁工艺,原子经济,可再生原料...)的新工艺的创建相关联。生物技术,特别是白色生物技术将通过生物转化在这些新工艺中发挥重要作用(酶学,微生物...)和发酵。用生物基产品替代石油产品将在尊重可持续发展理念的基础上发展新的生物经济和新的工业流程。可以根据以下原理开发工业生物精炼厂:一个人的任何残留物都可以在工业代谢中被其他人用作原料。

著录项

  • 来源
    《Biochimie》 |2009年第6期|659-664|共6页
  • 作者

    Stephane Octave; Daniel Thomas;

  • 作者单位

    UMR CNRS 6022 Genie Enzymatique et Cellulaire, Universite de Technologie de Compiegne, Compiegne, Centre de Recherche de Royallieu, BP 20529, 60205 Compiegne Cedex, France;

    Service de la Recherche, Universite de Technologie de Compiegne, Compiegne, France;

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

    plant biorefinery; industry; lipids; biotechnology; sustainable development;

    机译:植物生物精炼厂;行业;脂质生物技术可持续发展;

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