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首页> 外文期刊>Fuel Processing Technology >Catalytic conversion of guaiacol in ethanol for bio-oil upgrading to stable oxygenated organics
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Catalytic conversion of guaiacol in ethanol for bio-oil upgrading to stable oxygenated organics

机译:愈创木酚在乙醇中的催化转化,用于生物油提纯成稳定的氧化有机物

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摘要

In this paper, guaiacol was used as a model compound of bio-oil and its catalytic conversion was carried out in ethanol. The effect of supports (SBA-15, ZrCysBA-15 and SOi~/ZrO2/SBA-15) was studied on Pt-Ni based catalysts whereas the effect of active metals was investigated over C-supported Ru, Pt and Pd catalysts. Among the tested catalysts, Ru/C showed the best performance of total guaiacol conversion with high selectivity towards the desired products, cydohexanol and 2-methoxycyclohexanol (MCH). The reaction pathways of guaiacol in ethanol were clarified based on the product analysis. With the catalysis of Ru/C, the effects of reaction temperature, initial hydrogen pressure, and other typical compounds from bio-oil were investigated. Temperatures had negligible effect on both the conversion of guaiacol and the yields of desired products in the range of 140-260 °C Guaiacol conversion decreased significantly at initial hydrogen pressures lower than 4.0 MPa. The presence of furfural, acetone, and acetic acid decreased the conversion of guaiacol dramatically while the addition of water had a smaller impact. Further work revealed that the mass and energy efficiency of converting guaiacol into MCH are 100% and 97%, respectively.
机译:在本文中,愈创木酚被用作生物油的模型化合物,其催化转化在乙醇中进行。研究了载体(SBA-15,ZrCysBA-15和SOi〜/ ZrO2 / SBA-15)对Pt-Ni基催化剂的影响,而活性金属对C负载的Ru,Pt和Pd催化剂的影响进行了研究。在测试的催化剂中,Ru / C表现出总愈创木酚转化率的最佳性能,对所需产物环己醇和2-甲氧基环己醇(MCH)具有高选择性。通过产物分析,阐明了愈创木酚在乙醇中的反应途径。通过Ru / C的催化作用,研究了反应温度,初始氢压和生物油中其他典型化合物的影响。温度对愈创木酚的转化率和所需产物的收率的影响都可以忽略不计,在140-260°C范围内,初始氢压低于4.0 MPa时,愈创木酚的转化率显着降低。糠醛,丙酮和乙酸的存在显着降低了愈创木酚的转化率,而添加水的影响较小。进一步的工作表明,将愈创木酚转化为MCH的质量和能量效率分别为100%和97%。

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