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Sustainability assessment of an integrated High Temperature Steam Electrolysis - enhanced Biomass to Liquid Fuel process

机译:集成的高温蒸汽电解-增强的生物质到液体燃料工艺的可持续性评估

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摘要

This work addresses the integrated design of the High Temperature Steam Electrolysis (HTSE) and Biomass to Liquid (BtL) hybrid process. The comprehensive gate-to-gate analysis includes BtL and hydrogen production on-site operations. Simulations are carried out using commercial process simulation software – ProSimPlus® – to allow physical modeling as well as mass and energy balances; modeling is based on standard elementary and user modules and supported by various CEA (French Atomic Energy and Alternative Energies Commission) previous works. The framework for assessment is proposed. Considering productivity, efficiency, cost and environmental issues, five sustainability criteria are chosen: carbon matter yield; energy efficiency; greenhouse gas emissions; electrolysis water use; levelized biofuels production cost. Simulations results verify that hydrogen input is almost doubling the biogenic carbon conversion into liquid biofuels. They bring out significant secondary energy saving for HTSE compared to standard process; and clear advantages over alkaline electrolysis considering technical and environmental criteria. HTSE coupling allows a sharp increase in productivity (biofuels/biomass) with a limited increase in cost and environmental impacts at almost constant primary efficiency.
机译:这项工作解决了高温蒸汽电解(HTSE)和生物质到液体(BtL)混合过程的集成设计。全面的门到门分析包括BtL和氢气生产现场操作。使用商业过程仿真软件ProSimPlus®进行仿真,以进行物理建模以及质量和能量平衡。建模基于标准的基本和用户模块,并得到了各种CEA(法国原子能和替代能源委员会)以前的工作的支持。提出了评估框架。考虑到生产率,效率,成本和环境问题,选择了五个可持续性标准:能源效率;温室气体排放;电解水使用;降低生物燃料生产成本。模拟结果证明,氢气输入几乎使生物碳转化为液态生物燃料的速度增加了一倍。与标准工艺相比,它们为HTSE带来了可观的二次能源节省;考虑到技术和环境标准,与碱性电解相比具有明显优势。 HTSE耦合可在生产率(生物燃料/生物质)急剧增加的同时,以几乎恒定的初级效率在有限的成本和环境影响范围内增加成本。

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