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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Liquid phase in situ hydrodeoxygenation of biomass-derived phenolic compounds to hydrocarbons over bifunctional catalysts
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Liquid phase in situ hydrodeoxygenation of biomass-derived phenolic compounds to hydrocarbons over bifunctional catalysts

机译:将生物质衍生的酚类化合物的液相原位加氢聚酯在双官能催化剂上烃

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摘要

The objective of this study was to find an effective method for converting renewable biomass-derived phenolic compounds into hydrocarbons bio-fuel via in situ catalytic hydrodeoxygenation. The in situ hydrodeoxygenation of biomass-derived phenolic compounds was carried out in methanol-water solvent over bifunctional catalysts of Raney Ni and HZSM-5 or H-Beta. In the in situ hydrodeoxygenation, the hydrogen was donated by aqueous phase reforming of methanol without external hydrogen gas. This reaction pathway for liquid-phase in situ hydrodeoxygenation of phenolic monomers was based on methanol-water as a solvent, stepwise metal-catalyzed hydrogenation, acid-catalyzed dehydration, and metal-catalyzed hydrolysis. The three-step conversion process can be achieved by a one-pot procedure. When HZSM-5 (Si/Al ratio of 25) and Raney Ni were used as the bifunctional catalysts of in situ hydrodeoxygenation, more than 90% conversion of phenolic monomers and dimers, approximately 70-90% selectivity of cyclohexanes and hydrocarbons could be obtained at 220 degrees C with a reaction time of 7 h. The bifunctional catalysts combined Raney Ni with HZSM-5 can achieve the aqueous-phase reforming of methanol, which coupled with the in situ hydrodeoxygenation of phenolic compounds. Therefore, this in situ hydrodeoxygenation process with bifunctional catalysts provided an efficient route for upgrading bio-oil containing large amounts of phenolic compounds into renewable hydrocarbon products.
机译:本研究的目的是找到一种有效的方法,用于通过原位催化加氢氧基通过原位催化加氢氧基将可再生生物质衍生的酚类化合物转化为烃生物燃料。生物质衍生的酚类化合物的原位加氢脱氧在甲醇 - 水溶剂中进行,在Raney Ni和HzSM-5或H-β的双官能催化剂上进行。在原位加氢脱氧中,通过甲醇的水相重整而没有外部氢气,氢化氢。这种用于液相的反应途径原位酚类单体的加氢脱氧基于甲醇 - 水作为溶剂,逐步金属催化的氢化,酸催化的脱水和金属催化水解。三步转换过程可以通过单罐程序实现。当HZSM-5(Si / Al比例为25)和Raney Ni作为原位加氢脱氧的双官能催化剂时,可以获得超过90%的酚类单体和二聚体转化,可以获得约70-90%的环己烷和烃的选择性在220℃下,反应时间为7小时。双官能催化剂与HZSM-5合并Raney Ni可以达到甲醇的水相重整,其与酚类化合物的原位加氢脱氧相偶联。因此,这种具有双官能催化剂的原位加氢脱氧过程提供了一种有效的途径,用于将含有大量酚类化合物的生物油提升到可再生烃产物中。

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