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A methodology for the generation and evaluation of biorefinery process chains, in order to identify the most promising biorefineries for the EU

机译:生物精炼工艺链的生成和评估方法,以确定欧盟最有前景的生物精炼厂

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摘要

The topic of bioenergy, biofuels and bioproducts remains at the top of the current political and research agenda. Identification of the optimum processing routes for biomass, in terms of efficiency, cost, environment and socio-economics is vital as concern grows over the remaining fossil fuel resources, climate change and energy security. It is known that the only renewable way of producing conventional hydrocarbon fuels and organic chemicals is from biomass, but the problem remains of identifying the best product mix and the most efficient way of processing biomass to products. The aim is to move Europe towards a biobased economy and it is widely accepted that biorefineries are key to this development. A methodology was required for the generation and evaluation of biorefinery process chains for converting biomass into one or more valuable products that properly considers performance, cost, environment, socio-economics and other factors that influence the commercial viability of a process. In this thesis a methodology to achieve this objective is described. The completed methodology includes process chain generation, process modelling and subsequent analysis and comparison of results in order to evaluate alternative process routes. A modular structure was chosen to allow greater flexibility and allowing the user to generate a large number of different biorefinery configurations The significance of the approach is that the methodology is defined and is thus rigorous and consistent and may be readily re-examined if circumstances change. There was the requirement for consistency in structure and use, particularly for multiple analyses. It was important that analyses could be quickly and easily carried out to consider, for example, different scales, configurations and product portfolios and so that previous outcomes could be readily reconsidered. The result of the completed methodology is the identification of the most promising biorefinery chains from those considered as part of the European Biosynergy Project.
机译:生物能源,生物燃料和生物产品仍然是当前政治和研究议程的重中之重。随着对剩余化石燃料资源,气候变化和能源安全的关注日益增加,从效率,成本,环境和社会经济方面确定生物质的最佳加工路线至关重要。众所周知,生产常规烃类燃料和有机化学品的唯一可再生方式是利用生物质,但是仍然存在确定最佳产品组合和将生物质加工成产品的最有效方法的问题。目的是使欧洲迈向生物基经济,生物精炼厂是这一发展的关键,这一点已被广泛接受。需要一种方法来生成和评估生物炼制工艺链,以将生物质转化为一种或多种有价值的产品,并适当考虑性能,成本,环境,社会经济因素以及其他影响工艺商业可行性的因素。在这篇论文中,描述了实现该目标的方法。完整的方法包括过程链生成,过程建模以及随后的结果分析和比较,以评估备选过程路线。选择模块化结构可提供更大的灵活性,并允许用户生成大量不同的生物精炼厂配置。该方法的意义在于定义了方法论,因此它是严格且一致的,并且在情况变化时可以轻松进行重新检查。要求结构和使用的一致性,尤其是多次分析的一致性。重要的是,可以快速轻松地进行分析以考虑例如不同的规模,配置和产品组合,以便可以轻松地重新考虑以前的结果。完整方法的结果是从那些被认为是欧洲生物协同项目的一部分中鉴定出最有前途的生物炼油厂链。

著录项

  • 作者

    Chong Katie Jane;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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