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Process Modeling Results of Bio-Syntrolysis:Converting Biomass to Liquid Fuel with High Temperature Steam Electrolysis

机译:生物合成的过程建模结果:通过高温蒸汽电解将生物质转化为液体燃料

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A new process called Bio-Syntrolysis is being researched at the Idaho National Laboratory (INL) investigating syngas production from renewable biomass that is assisted with high temperature steam electrolysis (HTSE). The INL is Ihe world leader in researching HTSE and has recently produced hydrogen from high temperature solid oxide cells running in the electrolysis mode setting several world records along the way. A high temperature (~800°C) heat source is necessary to heat the steam as it goes into the electrolytic cells. Biomass provides the heat source and the carbon source for this process. Syngas, a mixture of hydrogen and carbon monoxide, can be used for the production of synthetic liquid fuels via Fischer-Tropsch processes. This concept, coupled with fossil-free electricity, provides a possible path to reduced greenhouse gas emissions and increased energy independence, without the major infrastructure shift that would be required for a purely hydrogen-based transportation system. Furthermore, since the carbon source is obtained from recyclable biomass, the entire concept is carbon-neutral.
机译:在Idaho国家实验室(INL)研究了从可再生生物量调查合成气生产的新增进程,从而有助于高温蒸汽电解(HTSE)。 Inl是IHE世界领导者在研究HTSE,最近从电解模式中运行的高温固体氧化物细胞产生氢,沿着方式设定几个世界纪录。在进入电解细胞时,需要高温(〜800°C)热源以加热蒸汽。生物质提供了该方法的热源和碳源。合成气,氢气和一氧化碳的混合物可用于通过Fischer-Tropsch方法生产合成液体燃料。这一概念与无化石电力相结合,提供了降低温室气体排放和增加能源独立性的可能性,而无需纯氢的运输系统所需的主要基础设施偏移。此外,由于碳源从可回收的生物质获得,因此整个概念是碳中性的。

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