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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Formic Acid-Based Fischer-Tropsch Synthesis for Green Fuel Production from Wet Waste Biomass and Renewable Excess Energy
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Formic Acid-Based Fischer-Tropsch Synthesis for Green Fuel Production from Wet Waste Biomass and Renewable Excess Energy

机译:基于甲酸的费-托合成技术,用于利用湿式废物生物质和可再生的过量能源生产绿色燃料

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摘要

While the production of hydrocarbons by Fischer-Tropsch synthesis (FTS) is a widely recognized, yet technically quite complex way to transform biomass via syngas (mostly from biomass gasification) into liquid fuels, we here present an alternative route transforming biomass first into formic acid (FA) followed by syngas formation by decomposition of FA and finally FTS using regenerative hydrogen (or if needed H2 from the stored FA) to balance the C:H ratio. The new method builds on the recently developed, selective oxidation of biomass to formic acid using Keggin-type polyoxometalates of the general formula (H_(3+x)[PV_xMo_(12-x)O_(40)]) as homogeneous catalysts, oxygen as the oxidant, and water as the solvent. This method is able to transform a wide range of complex and wet biomass mixtures into FA as the sole liquid product at mild reaction conditions (90 °C, 20-30 bar O2). We propose to convert FA with hydrogen from water electrolysis-the electrolysis step producing also the oxygen for the biomass oxidation to FA-to green hydrocarbon fuels using a typical Co-based FT catalyst.
机译:尽管费-托合成(FTS)生产碳氢化合物是公认的但技术上相当复杂的方法,可通过合成气将生物质转化为液体燃料(主要是从生物质气化),但我们在此提出了另一种途径,即先将生物质转化为甲酸(FA),然后通过分解FA最终形成合成气,最后使用再生氢(或从存储的FA中抽取H2)平衡FTS,以平衡C:H比率。新方法建立在最近开发的,使用通式(H_(3 + x)[PV_xMo_(12-x)O_(40)]的Keggin型多金属氧酸盐作为均相催化剂,氧气将生物质选择性氧化为甲酸)上作为氧化剂,水作为溶剂。该方法能够在温和的反应条件下(90°C,20-30 bar O2)将多种复杂的湿生物质混合物转化为FA,成为唯一的液体产品。我们建议使用典型的基于Co的FT催化剂,将水电解中的氢与FA转化为FA,该电解步骤还产生用于生物质氧化的氧气,从而将FA转化为绿色烃类燃料。

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