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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Development of Bifunctional Hydrodeoxygenation Catalyst Rh-HY for the Generation of Biomass-Derived High-Energy-Density Fuels
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Development of Bifunctional Hydrodeoxygenation Catalyst Rh-HY for the Generation of Biomass-Derived High-Energy-Density Fuels

机译:生物质衍生高能密度燃料的双官能加氢钠催化剂Rh-hy的研制

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摘要

Liquid-phase hydrodeoxygenation (HDO) of phenol, anisole, and guaiacol over rhodium-doped, high-silica content zeolite catalysts (Si/Al = 15), HY, is investigated in a high-pressure-fixed bed reactor. These catalysts are characterized by inductively coupled plasma optical emission spectrometry, scanning electron microscopy with energy-dispersive spectroscopy, thermogravimetric analysis, X-ray diffraction, N-2 physisorption, ammonia temperature-programmed desorption, temperature-programmed oxidation, temperature-programmed reduction, Al-27 magic angle spinning nuclear magnetic resonance, and X-ray photoelectron spectroscopy. The effects of reaction temperature (150-250 degrees C) and weight hourly space velocity (WSHV = 1.0-2.8 h(-1)) on activity, stability, and product distribution are investigated. The main products obtained from HDO reactions are methylcyclopentane, cyclohexane, methylcyclohexane, and bicyclohexyl. Cyclohexanone is the most abundant oxygenated product along with deactivation. For all tested catalysts, increasing the reaction temperature up to 250 degrees C improves the HDO reactions without significant activity or selectivity loss. Higher rhodium loading extends the catalyst life and increases the activity and cyclohexane selectivity for the guaiacol feed. The experiments indicate that anisole, phenol, and guaiacol undergo aromatic hydrogenation on rhodium particles first, followed by deoxygenation on the acid sites over zeolite combined with additional hydrogenation.
机译:在高压固定床反应器中研究了酚醛,苯甲酸苯酚,鞍糖和胍醇的苯酚,鞍糖醇和胍醇。这些催化剂的特征在于电感耦合等离子体光发射光谱法,扫描电子显微镜具有能量分散光谱,热重分析,X射线衍射,N-2理由,氨温度编程的解吸,温度编程氧化,温度编程,减少温度编程, Al-27魔法角度旋转核磁共振和X射线光电子体光谱。研究了反应温度(150-250℃)和重量小时空间速度(WSHV = 1.0-2.8h(-1))对活性,稳定性和产品分布的影响。从HDO反应获得的主要产物是甲基环戊烷,环己烷,甲基环己烷和双环己基。环己酮是最丰富的含氧产品以及失活。对于所有测试的催化剂,将反应温度增加到250℃,改善了HDO反应,而无需显着活性或选择性损失。更高的铑负载延伸催化剂寿命并增加愈菌饲料的活性和环己烷选择性。实验表明,烷氧基亚醇,苯酚和愈菌醇首先在铑颗粒上进行芳族氢化,然后在沸石上与沸石的酸位点脱氧结合额外的氢化。

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