丙烯醛/氨反应制备3-甲基吡啶的研究进展  被引量:3

Advances in the synthesis of 3-picoline via acrolein/ammonia reaction

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作  者:张弦[1] 晁自胜[1] 黄登高[1] 罗才武[1] 刘伟[1] 王开明[2] 潘金钢 

机构地区:[1]湖南大学化学化工学院化学生物传感与计量学国家重点实验室,湖南长沙410012 [2]青岛科技大学化学与分子工程学院,山东青岛266042 [3]北京华地博源生化科技有限公司,北京100120

出  处:《化工进展》2012年第5期1113-1120,共8页Chemical Industry and Engineering Progress

基  金:湖南省芙蓉学者奖励计划

摘  要:综述了丙烯醛/氨反应制备3-甲基吡啶的方法,主要包括液相釜式反应法、气相固定床反应法和气相流化床反应法3种。介绍了这些方法的工艺特点,评述了其优缺点及所涉及的催化剂。对丙烯醛/氨反应制备3-甲基吡啶过程所需要着重解决的问题进行了归纳总结。并简介了3-甲基吡啶的合成机理。同时,对于丙烯醛/氨反应制备3-甲基吡啶技术的发展前景也进行了展望,认为介孔材料和固体酸催化剂应用于该反应及合成机理的深入研究是未来的发展方向之一。This paper reviewed the synthesis of 3-picoline via the reaction between acrolein and ammonia. It was reported up to now that there are mainly three approaches for the synthesis of 3-picoline from the reaction of acrolein with ammonia, i.e., the liquid-phase reaction in stirring tank reactor, the gas-phase reaction in fixed-bed reactor and the gas-phase reaction in fluidized-bed reactor. The paper described the general features of these reaction processes, with comments on their advantages and disadvantages and the related catalysts. It addressed particularly the key issues in the reaction process of acrolein/ammonia to 3-picoline. The foreground of the mesoporous material and solid acid catalysts applied to the reaction and the mechanism researches of 3-picoline prepared from acrolein were also prospected, the mesoporous material and solid acid catalysts applied to the reaction and the mechanism researches were thought to one of the development direction.

关 键 词:3-甲基吡啶 丙烯醛 液相法 气相法 

分 类 号:TQ253.21[化学工程—有机化工]

 

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