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Biomass Conversion to Produce Hydrocarbon Liquid Fuel Via Hot-vapor Filtered Fast Pyrolysis and Catalytic Hydrotreating

机译:通过热蒸气过滤快速热解和催化加氢处理进行生物质转化以生产烃类液体燃料

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摘要

Lignocellulosic biomass conversion to produce biofuels has received significant attention because of the quest for a replacement for fossil fuels. Among the various thermochemical and biochemical routes, fast pyrolysis followed by catalytic hydrotreating is considered to be a promising near-term opportunity. This paper reports on experimental methods used 1) at the National Renewable Energy Laboratory (NREL) for fast pyrolysis of lignocellulosic biomass to produce bio-oils in a fluidized-bed reactor and 2) at Pacific Northwest National Laboratory (PNNL) for catalytic hydrotreating of bio-oils in a two-stage, fixed-bed, continuous-flow catalytic reactor. The configurations of the reactor systems, the operating procedures, and the processing and analysis of feedstocks, bio-oils, and biofuels are described in detail in this paper. We also demonstrate hot-vapor filtration during fast pyrolysis to remove fine char particles and inorganic contaminants from bio-oil. Representative results showed successful conversion of biomass feedstocks to fuel-range hydrocarbon biofuels and, specifically, the effect of hot-vapor filtration on bio-oil production and upgrading. The protocols provided in this report could help to generate rigorous and reliable data for biomass pyrolysis and bio-oil hydrotreating research.
机译:由于寻求替代化石燃料,木质纤维素生物质转化为生产生物燃料受到了广泛关注。在各种热化学和生化途径中,快速热解然后进行催化加氢处理被认为是一个有前途的近期机会。本文报道了以下实验方法:1)在国家可再生能源实验室(NREL)进行木质纤维素生物质的快速热解以在流化床反应器中生产生物油,以及2)在西北太平洋国家实验室(PNNL)进行催化加氢处理的实验方法。两级固定床连续流催化反应器中的生物油。本文详细介绍了反应器系统的配置,操作程序以及原料,生物油和生物燃料的处理和分析。我们还演示了快速热解过程中的热蒸汽过滤,以去除生物油中的细小炭颗粒和无机污染物。代表性的结果表明,生物质原料已成功转化为燃料范围的碳氢化合物生物燃料,特别是热蒸气过滤对生物油生产和升级的影响。本报告中提供的协议可以帮助为生物质热解和生物油加氢处理研究生成严格而可靠的数据。

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