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Catalysis Meets Nonthermal Separation for the Production of (Alkyl)phenols and Hydrocarbons from Pyrolysis Oil

机译:催化遇到非热分离从热解油生产(烷基)苯酚和碳氢化合物

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摘要

A simple and efficient hydrodeoxygenation strategy is described to selectively generate and separate high-value alkylphenols from pyrolysis bio-oil, produced directly from lignocellulosic biomass. The overall process is efficient and only requires low pressures of hydrogen gas (5 bar). Initially, an investigation using model compounds indicates that MoC/C is a promising catalyst for targeted hydrodeoxygenation, enabling selective retention of the desired Ar−OH substituents. By applying this procedure to pyrolysis bio-oil, the primary products (phenol/4-alkylphenols and hydrocarbons) are easily separable from each other by short-path column chromatography, serving as potential valuable feedstocks for industry. The strategy requires no prior fractionation of the lignocellulosic biomass, no further synthetic steps, and no input of additional (e.g., petrochemical) platform molecules.
机译:描述了一种简单有效的加氢脱氧策略,可从直接从木质纤维素生物质生产的热解生物油中选择性生成和分离高价值的烷基酚。整个过程是高效的,只需要低压氢气(5 bar)。最初,使用模型化合物进行的研究表明MoC / C是有针对性的加氢脱氧催化剂,能够选择性保留所需的Ar-OH取代基。通过将此程序应用于热解生物油,主要产品(苯酚/ 4-烷基苯酚和碳氢化合物)可通过短程柱色谱轻松分离,成为工业上潜在的有价值原料。该策略不需要木质纤维素生物质的预先分级分离,不需要进一步的合成步骤,也不需要额外的(例如,石油化学)平台分子的输入。

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