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作 者:肖泽 常春[1,2] 白净 陈俊英[1,2] 李攀 韩秀丽[1,2] XIAO Ze;CHANG Chun;BAI Jing;CHEN Junying;LI Pan;HAN Xiuli(School of Chemical Engineering and Energy,Zhengzhou University,Zhengzhou 450001,China;Henan Outstanding Foreign Scientist Studio,Zhengzhou 450001,China)
机构地区:[1]郑州大学化工与能源学院,河南郑州450001 [2]河南省杰出外籍科学家工作室,河南郑州450001
出 处:《生物质化学工程》2019年第6期51-58,共8页Biomass Chemical Engineering
基 金:河南省自然科学基金资助项目(162300410247);河南省杰出外籍科学家工作室生物质资源加工与高效利用项目(GZS2018004)
摘 要:甘油作为一种重要的生物质基平台化合物,可以和羰基化合物在酸性催化剂的作用下发生缩合反应生成缩醛和缩酮,缩醛和缩酮可广泛应用于燃料添加剂、香料、兽药制剂、塑化剂和多元醇等领域。从甘油缩醛和缩酮的合成机理出发,简单比较了传统的液体酸催化剂与固体催化剂的催化性能,重点介绍了丙酮甘油缩酮、环己酮甘油缩酮、苯甲醛甘油缩醛、甘油甲醛缩醛和甘油乙酰丙酸酯缩酮等几种重要甘油缩醛和缩酮的合成工艺,并概述了其生产技术,最后展望了生物质基甘油缩醛和缩酮的开发应用前景。As an important biomass-based platform compound,glycerol can be condensed with carbonyl compounds under the action of acidic catalysts to form acetals and ketals.Acetals and ketals are widely used in the fields of fuel additives,perfumes,veterinary medicine preparations,plasticizers and polyols.The catalytic performance of traditional liquid acid catalyst and solid catalyst was compared based on the synthesis mechanism of glyceryl acetal and ketal;then,the synthesis processes of several important glycerol acetals and ketals such as solketal,cyclohexanone glycerol ketal,benzaldehyde glycerol acetal,glycerol formal and glycerol levulinate ketal were introduced,and their production technology was summarized;finally,the development and application prospects of bio-based glycerol acetal and ketal are prospected.
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