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Effects of catalyst precursor type and preparation conditions, and solvent type on activity and selectivity of Pt/SiO2 catalyst in citral hydrogenation

机译:催化剂前体类型,制备条件和溶剂类型对柠檬酸加氢中Pt / SiO2催化剂活性和选择性的影响

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摘要

In this study, citral hydrogenation reaction in liquid phase over silica gel supported Pt catalysts was investigated. It was desired to hydrogenate carbonyl group selectively to produce valuable unsaturated alcohols, namely geraniol and nerol. Pt/SiO2 catalysts were prepared by impregnation method. The effects of parameters investigated in the present study included Pt precursor type (hexachloroplatinic acid (HCLPA), platinum II acetylacetonate (PAA)), catalyst activation temperature (350°C and 450°C), catalyst activation without calcination, catalyst washing with 0.1 M NaOH and solvent type (ethanol, 2-pentanol). The catalysts activities and selectivities were affected by the type of precursor and activation temperature. The maximum citral conversion (89.50 percent) was achieved at lower activation temperature (350°C) with PAA precursor based catalyst. It was observed that higher activation temperature provided lower citral conversion but higher selectivity to unsaturated alcohols; increasing the activation temperature to 450°C decreased citral conversion to 26.10 percent. But selectivity to unsaturated alcohols, geraniol and nerol, increased from 7.06 to 54.60 percent. Catalyst washing and 2-pentanol prevented acetal formation. Catalyst activation without calcination gave lower citral conversion (20.84 percent) and selectivity to unsaturated alcohols (30.00 percent). Copyright © 2011 The Berkeley Electronic Press. All rights reserved.
机译:在这项研究中,研究了在硅胶负载的Pt催化剂上液相柠檬酸加氢反应。期望选择性地氢化羰基以产生有价值的不饱和醇,即香叶醇和神经醇。采用浸渍法制备了Pt / SiO2催化剂。在本研究中研究的参数的影响包括Pt前驱体类型(六氯铂酸(HCLPA),II乙酰丙酮铂(PAA)),催化剂活化温度(350°C和450°C),未煅烧的催化剂活化,0.1催化剂洗涤M NaOH和溶剂类型(乙醇,2-戊醇)。催化剂的活性和选择性受前体类型和活化温度的影响。使用PAA前体为基础的催化剂,在较低的活化温度(350℃)下可实现最大柠檬酸酯转化率(89.50%)。观察到较高的活化温度提供了较低的柠檬醛转化率,但是对不饱和醇的选择性更高。将活化温度提高到450°C,柠檬醛转化率降低到26.10%。但是,对不饱和醇(香叶醇和神经醇)的选择性从7.06%增加到54.60%。催化剂洗涤和2-戊醇可防止缩醛形成。未经煅烧的催化剂活化产生较低的柠檬醛转化率(20.84%)和对不饱和醇的选择性(30.00%)。版权所有©2011伯克利电子出版社。版权所有。

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