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TiO2 supported Ru and Pt nano catalysts for selective hydrogenation of citral

机译:TiO 2 负载的Ru和Pt纳米催化剂用于柠檬醛的选择性加氢

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Titanium oxide supported Ru and Pt nano catalysts were prepared by impregnation method, dried in a furnace, calcined at 400°C for 5 hours and reduced at two different temperatures, 375°C (LTR) and 575°C (HTR) for 4 hours. The catalysts were characterized by BET surface area, TPR, HRTEM, XRD and XPS techniques. The activity and selectivity of the catalysts were evaluated in liquid phase selective hydrogenation of citral in a semi-batch Parr reactor at 90°C and a hydrogen pressure of 10 MPa and solvent medium of a isopropanol during 6 hours. Amongst the studied catalysts, 1.5%Pt/TiO2 reduced at 575°C had presented higher selectivity in terms of citral towards unsaturated alcohols (Geraniol and Nerol). This is the influence of strong metal support interaction (SMSI effect) of the catalysts towards the selective activation of C=O hydrogenation. These environment friendly nano catalysts can be recycled for more than 12 cycles and the activity is retained upto 85%.
机译:通过浸渍法制备氧化钛负载的Ru和Pt纳米催化剂,在炉中干燥,在400°C下煅烧5小时,然后在375°C(LTR)和575°C(HTR)的两个不同温度下还原4小时。通过BET表面积,TPR,HRTEM,XRD和XPS技术表征催化剂。在半间歇式帕尔反应器中于90℃,10MPa的氢气压力和异丙醇的溶剂介质下于6小时内对柠檬醛进行液相选择性氢化,评估了催化剂的活性和选择性。在所研究的催化剂中,在575°C下还原的1.5%Pt / TiO 2 在柠檬酸中对不饱和醇(香叶醇和Nerol)的选择性更高。这是催化剂的强金属载体相互作用(SMSI效应)对C = O氢化选择性活化的影响。这些对环境友好的纳米催化剂可循环使用12个以上循环,并保留高达85%的活性。

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