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Crop residues as raw materials for biorefinery systems - A LCA case study

机译:作物残渣作为生物精炼系统的原料-LCA案例研究

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摘要

Our strong dependence on fossil fuels results from the intensive use and consumption of petroleum derivatives which, combined with diminishing oil resources, causes environmental and political concerns. The utilization of agricultural residues as raw materials in a biorefinery is a promising alternative to fossil resources for production of energy carriers and chemicals, thus mitigating climate change and enhancing energy security. This paper focuses on a biorefinery concept which produces bioethanol, bio-energy and biochemicals from two types of agricultural residues, corn stover and wheat straw. These biorefinery systems are investigated using a Life Cycle Assessment (LCA) approach, which takes into account all the input and output flows occurring along the production chain. This approach can be applied to almost all the other patterns that convert lignocellulosic residues into bioenergy and biochemicals. The analysis elaborates on land use change aspects, i.e. the effects of crop residue removal (like decrease in grain yields, change in soil N_2O emissions and decrease of soil organic carbon). The biorefinery systems are compared with the respective fossil reference systems producing the same amount of products/services from fossils instead of biomass. Since climate change mitigation and energy security are the two most important driving forces for biorefinery development, the assessment focuses on greenhouse gas (CHC) emissions and cumulative primary energy demand, but other environmental categories are evaluated as well.rnResults show that the use of crop residues in a biorefinery saves GHG emissions and reduces fossil energy demand. For instance, CHG emissions are reduced by about 50% and more than 80% of non-renewable energy is saved. Land use change effects have a strong influence in the final GHG balance (about 50%), and their uncertainty is discussed in a sensitivity analysis. Concerning the investigation of the other impact categories, biorefinery systems have higher eutrophication potential than fossil reference systems. Based on these results, a residues-based biorefinery concept is able to solve two problems at the same time, namely find a use for the abundant lignocellulosic residues and ensure a mitigation effect for most of the environmental concerns related to the utilization of non-renewable energy resources.rnTherefore, when agricultural residues are used as feedstocks, best management practices and harvest rates need to be carefully established. In fact, rotation, tillage, fertilization management, soil properties and climate can play an important role in the determination of the amount of crop residue that can be removed minimizing soil carbon losses.
机译:我们对矿物燃料的强烈依赖是由于大量使用和消耗石油衍生物,再加上石油资源的减少,引起了环境和政治问题。在生物精炼厂中,利用农业残留物作为原材料是一种有前途的替代方法,可替代化石资源来生产能源载体和化学品,从而减轻气候变化并提高能源安全性。本文着重介绍一种生物精炼概念,该概念可从两种类型的农业残留物(玉米秸秆和小麦秸秆)中产生生物乙醇,生物能源和生物化学物质。使用生命周期评估(LCA)方法对这些生物精炼系统进行了研究,该方法考虑了沿生产链发生的所有输入和输出流量。这种方法几乎可以应用于将木质纤维素残留物转化为生物能和生物化学物质的所有其他模式。该分析详细阐述了土地利用变化方面的问题,即作物残留物去除的影响(如谷物产量下降,土壤N_2O排放量变化和土壤有机碳减少)。将生物炼制系统与相应的化石参考系统进行比较,这些参考系统从化石而非生物质中产生相同量的产品/服务。由于缓解气候变化和能源安全是生物炼制发展的两个最重要的推动力,因此评估重点是温室气体排放和累计一次能源需求,但同时也评估了其他环境类别。生物精炼厂中的残留物可节省温室气体排放并减少化石能源需求。例如,CHG排放减少了约50%,节省了80%以上的不可再生能源。土地利用变化的影响对最终温室气体平衡有很大的影响(约50%),其敏感性在敏感性分析中进行了讨论。关于其他影响类别的调查,生物炼制系统比化石参考系统具有更高的富营养化潜力。基于这些结果,基于残渣的生物精炼概念能够同时解决两个问题,即找到丰富的木质纤维素残渣的用途,并确保缓解与利用不可再生能源有关的大多数环境问题的缓解效果。因此,当将农业残留物用作原料时,需要仔细确定最佳管理方法和收成率。实际上,轮作,耕作,施肥管理,土壤特性和气候在确定可以清除的农作物残渣量方面起着重要作用,从而最大程度地减少了土壤的碳损失。

著录项

  • 来源
    《Applied Energy》 |2010年第1期|47-57|共11页
  • 作者单位

    Joanneum Research, Institute of Energy Research, Elisabethstrasse 5, 8010 Craz, Austria;

    Parthenope University of Naples, Department of Environmental Sciences, Centro Direzionale, Isola C4, 80143 Napoli, Italy;

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

    biorefinery; bioethanol; bioenergy; biochemicals; crop residues;

    机译:生物精炼厂生物乙醇生物能源生化试剂作物残渣;

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