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Production of FT transportation fuels from biomass; technical options, process analysis and optimisation, and development potential

机译:用生物质生产FT运输燃料;技术选择,过程分析和优化以及发展潜力

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摘要

Fischer-Tropsch (FT) diesel derived from biomass via gasification is an attractive clean and carbon neutral transportation fuel, directly usable in the present transport sector. System components necessary for FT diesel production from biomass are analysed and combined to a limited set of promising conversion concepts. The main variations are in gasification pressure, the oxygen or air medium, and in optimisation towards liquid fuels only, or towards the product mix of liquid fuels and electricity. The technical and economic performance is analysed. For this purpose, a dynamic model was built in Aspen Plus~(~R), allowing for direct evaluation of the influence of each parameter or device, on investment costs, FT and electricity efficiency and resulting FT diesel costs. FT diesel produced by conventional systems on the short term and at moderate scale would probably cost 16 EUD/GJ. In the longer term (large scale, technological learning, and selective catalyst), this could decrease to 9 EUD/GJ. Biomass integrated gasification FT plants can only become economically viable when crude oil price levels rise substantially, or when the environmental benefits of green FT diesel are valued. Green FT diesel also seems 40-50% more expensive than biomass derived methanol or hydrogen, but has clear advantages with respect to applicability to the existing infrastructure and car technology.
机译:通过气化从生物质中提取的费-托(FT)柴油是一种有吸引力的清洁且碳中和的运输燃料,可直接用于当前的运输部门。分析了从生物质生产FT柴油所必需的系统组件,并将其组合为一组有限的有前途的转化概念。主要变化在于气化压力,氧气或空气介质,以及仅针对液体燃料或针对液体燃料和电力的产品混合物的优化。分析技术和经济表现。为此,在Aspen Plus〜(〜R)中建立了一个动态模型,可以直接评估每个参数或设备对投资成本,FT和电效率以及由此产生的FT柴油成本的影响。常规系统在短期内以中等规模生产的FT柴油可能成本为16 EUD / GJ。从长远来看(大规模,技术学习和选择性催化剂),这可以减少到9 EUD / GJ。只有当原油价格大幅上涨或重视绿色FT柴油的环境效益时,生物质集成气化FT装置才能在经济上可行。 Green FT柴油似乎也比生物质衍生的甲醇或氢气贵40-50%,但在适用于现有基础设施和汽车技术方面具有明显优势。

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