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| Research progress on caprolactam deuteration process |
| Jia Guolin1, Zhang Rulu1, Wang Meiling2, Zhang Yatong2 |
| 1. Hebei Bohai Yuanda Environmental Monitoring Technology Incorplration,Cangzhou 061100, China; 2. Hebei University of Science and Technology, Shijiazhuang 050018, China |
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Abstract In the production of caprolactam, the deuteration reaction of cyclohexanone oxime from cyclohexanone plays an important role. The traditional deuteration process including Laxi method, NO catalytic reduction method, hydroxylamine deuteration method, the new deuteration process (catalytic process) including gas phase ammonia deuteration method and liquid phase ammonia deuteration process, and the advantages and disdvatages of various processes were introduced. It is proposed that the catalyst plays an important role in the deuteration reaction. The gas phase and liquid phase ammonia deuteration methods in the new modern production process introduce the catalyst into the deuteration reaction to minimize by-products and significantly increase the production efficiency. Saving resources, energy, and reducing costs are important research directions for this deuteration process. The catalytic effect of the catalyst, the maximum catalytic activity and the service life of the catalyst after the reaction are main research contents.
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| [ 1 ] 程立泉. 己内酰胺生产技术概述[ J ]. 化工进展,2005( 5 ):565 - 567.
[ 2 ] 朱凌皓. 环己酮肟的生产方法[ J ]. 化工设计,1994( 4 ):17 - 20.
[ 3 ] 袁年武,留 辉. HPO己内酰胺工艺的现状与前景分析[ J ]. 化工进展,2003( 2 ):208 - 210.
[ 4 ] 王东琴,李 裕,柳来栓,等. 磁载钛硅分子筛的制备与表征[ J ]. 高等学校化学学报,2012( 12 ):2 722 - 2 726.
[ 5 ] 张 茹,李 裕,王东琴. 磁载钛硅分子筛TS-1/NiFe2O4催化环己酮氨肟化反应研究[ J ]. 化学研究与应用,2013( 10 ):1 364 - 1 368.
[ 6 ] 王思捷. 环己烷一步氨氧化制备环己酮肟反应的研究[ D ]. 湖南师范大学,2014. |
| [1] |
Zhao Mohan1, Wu Yujie2, Wang Yu1, Li Yuxian1, Feng Zhuofan1, Dong Yan1, Xiao Xiao1, Yu Hong wei1,2. Temperature effect on infrared spectroscopy of caprolactam[J]. CCI, 2019, 42(6): 149-154. |
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