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Photocatalytic oxidation of aromatic alcohols to aldehydes in aqueous suspension of home-prepared titanium dioxide: 1. Selectivity enhancement by aliphatic alcohols

机译:自制二氧化钛水悬浮液中芳族醇的光催化氧化为醛类:1.脂肪醇的选择性增强

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摘要

Oxygenated aqueous suspensions of home-prepared (HP) and commercial TiO2 catalysts were used in a batch photoreactor for carrying out the oxidation of benzyl alcohol (BA) and 4-methoxybenzyl alcohol (MBA) under different operative conditions. HP catalysts were synthesized from TiCl4 and underwent a hydrolysis treatment of different times under mild conditions. The textural characterization of catalysts was carried out with XRD, SEM observations, BET surface area and porosity measurements. For both alcohols the main oxidation products were the corresponding aromatic aldehydes and CO2. The HP catalysts exhibited selectivity values towards the aldehyde production up to 28% (BA conversion: 50%) and 41% (MBA conversion: 65%), about four times higher than those of commercial TiO2. The addition of an aliphatic alcohol (methanol, ethanol, 2-propanol or tert-butanol) in small amounts with respect to water decreased the overall oxidation rate of aromatic alcohols but enhanced the selectivity for aldehyde formation up to 1.5 times. The reactivity results suggest that: (i) the aromatic alcohol molecules interact with the TiO2 surface in different ways that eventually determine two parallel reaction pathways (partial oxidation or mineralization); (ii) the aliphatic alcohols preferentially compete with aromatic alcohols for the mineralizing pathway.
机译:在分批光反应器中使用了自制(HP)和商用TiO2催化剂的氧化水悬浮液,以在不同的操作条件下进行苄醇(BA)和4-甲氧基苄醇(MBA)的氧化。由TiCl4合成HP催化剂,并在温和条件下进行了不同时间的水解处理。用XRD,SEM观察,BET表面积和孔隙率测量进行催化剂的结构表征。对于这两种醇,主要的氧化产物是相应的芳族醛和CO2。 HP催化剂对醛生成的选择性值高达28%(BA转化率:50%)和41%(MBA转化率:65%),约为商业TiO2的四倍。相对于水少量添加脂族醇(甲醇,乙醇,2-丙醇或叔丁醇)可降低芳族醇的总氧化速率,但可将醛形成的选择性提高至1.5倍。反应结果表明:(i)芳香醇分子以不同的方式与TiO2表面相互作用,最终确定了两个平行的反应途径(部分氧化或矿化); (ii)脂族醇优先与芳族醇竞争成矿途径。

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