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Life cycle assessment of macroalgae cultivation and processing for biofuel production

机译:用于生物燃料生产的大型藻类种植和加工的生命周期评估

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摘要

There has been a recent resurgence in research investigating bioenergy production from algal biomass due to the potential environmental benefits in comparison to conventional bioenergy crops and conventional fossil fuels. This life cycle assessment (LCA) considered the energy return and environmental impacts of the cultivation and processing of macroalgae (seaweed) to bioethanol and biogas with a particular focus on specific species [Gracilaria chilensis and Macrocystis pyrifera) and cultivation methods (bottom planting and long-line cultivation). The study was based mainly upon data obtained from research conducted in Chile but the results can be applied to other locations where similar cultivation is feasible. Speculative data were also included to test promising data obtained from research. The results suggested that using base case conditions the production of both bioethanol and biogas from bottom planted Gracilaria chilensis was the most sustainable option due to the low input method of cultivation. Using new advances in cultivation and processing methods of long-line cultivated Macrocystis pyrifera however resulted in a much more sustainable source of bioenergy. If these methods can be proven on a large scale, the generation of bioenergy from macroalgae could be highly competitive in terms of its sustainability compared to alternative feedstocks. Future research should bear in mind that the results of this study should however be considered highly optimistic given the early stage of research.
机译:由于与常规生物能源作物和常规化石燃料相比具有潜在的环境效益,因此研究藻类生物质生产生物能源的研究近来兴起。本生命周期评估(LCA)考虑了大型藻类(海藻)的培养和加工过程对生物乙醇和沼气的能量返回和环境影响,特别侧重于特定物种(Gracilaria chilensis和Macrocystis pyrifera)和栽培方法(底部种植和长期种植)。在线栽培)。这项研究主要基于在智利进行的研究获得的数据,但该结果可应用于其他可行类似种植的地点。还包括投机数据,以测试从研究中获得的有希望的数据。结果表明,在基本情况下,由于种植方法投入低,从底部种植的南美锥Gra生产生物乙醇和沼气是最可持续的选择。然而,利用长线栽培的大型拟南芥的栽培和加工方法方面的新进展导致了生物能源的可持续发展。如果这些方法能够得到大规模证明,那么与其他原料相比,大型藻类产生的生物能源在可持续性方面可能具有很高的竞争力。未来的研究应牢记,鉴于研究的早期阶段,应将这项研究的结果视为高度乐观。

著录项

  • 来源
    《Journal of Cleaner Production》 |2014年第15期|45-56|共12页
  • 作者单位

    Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, Edinburgh EH9 3JL, United Kingdom;

    Departamento de Ecologia y Biodiversidad, Facultad de Ecologia y Recursos Naturales, Universidad Andre's Bello, Avda. Republica 440, Santiago, Chile;

    Facultad de Ingenieria, Universidad del Desarrollo, Av. Plaza 700, San Carlos de Apoquindo, Las Condes, Chile;

    Coal Products Ltd., Immingham Briquetting Works, DN40 2QR, United Kingdom;

    Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, Edinburgh EH9 3JL, United Kingdom;

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

    Bioenergy; Seaweed; Life cycle assessment; Gracilaria chilensis; Macrocystis pyrifera;

    机译:生物能源海藻;生命周期评估;江萤火虫;
  • 入库时间 2022-08-17 13:51:54

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