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Are biofuels from seaweed a viable proposition? Bioeconomic modeling of biogas production and co-qeneration in an Australian context

机译:海藻中的生物燃料是否可行?澳大利亚背景下沼气生产和共生的生物经济模型

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摘要

Background:The economic viability of the intensive land-based cultivation of Ulva lactuca for biofuels (biogas and co-generation) was ascertained using a bioeconomic model developed for the Australian context. The cost assumptions, technical variables and biological parameters were sourced extensively from published literature. Results: Biogas production and the sale of electricity as a standalone business model was unprofitable at the current feed-in tariff due to high electricity generation costs of US$0.44 kWh~(-1) for even the largest macroalgal production facility size of 400 ha (AU$:US$ = 0.9369; 1 June 2011). Conclusion: As this is a prefeasibility study, it is largely literature based with some engineering estimates; therefore, this model needs validation with actual field data from a commercial-scale production facility.
机译:背景:使用为澳大利亚背景开发的生物经济模型,确定了以陆地为基础的乌尔瓦集约化养殖作为生物燃料(沼气和热电联产)的经济可行性。成本假设,技术变量和生物学参数广泛地来自已发表的文献。结果:沼气生产和电力销售作为独立的商业模式在当前的上网电价下是无利可图的,因为即使最大的大型藻类生产设施规模为400公顷,发电成本也高达0.44 kWh〜(-1),澳元:美元= 0.9369; 2011年6月1日)。结论:由于这是一项预可行性研究,因此很大程度上是基于文献,并带有一些工程估算。因此,该模型需要使用商业规模生产设施的实际现场数据进行验证。

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  • 来源
    《Biofuels》 |2013年第4期|371-378|共8页
  • 作者

    Sasi Nayar; Felix Froese;

  • 作者单位

    Algal Production Group, South Australian Research & Development Institute - Aquatic Sciences, 2 Hamra Avenue, West Beach, SA 5024, Australia;

    Faculty of Forest and Environmental Sciences, University of Freiburg, Tennenbacherstr. 4, D-79106, Freiburg, Germany;

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