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微反应器内甲苯连续二硝化制备二硝基甲苯

陈饶 赵鑫 陈戴欣 姜圣坤 廉应江 王金波 杨梅 陈光文

化工学报2024,Vol.75Issue(3):867-876,10.
化工学报2024,Vol.75Issue(3):867-876,10.DOI:10.11949/0438-1157.20240059

微反应器内甲苯连续二硝化制备二硝基甲苯

Continuous dinitration of toluene to dinitrotoluene in a microreactor

陈饶 1赵鑫 2陈戴欣 3姜圣坤 2廉应江 3王金波 2杨梅 3陈光文1

作者信息

  • 1. 中国科学院大连化学物理研究所,辽宁 大连 116023||中国科学院大学,北京 100049
  • 2. 中国五洲工程设计集团有限公司,北京 100053
  • 3. 中国科学院大连化学物理研究所,辽宁 大连 116023
  • 折叠

摘要

Abstract

In order to realize the safe and efficient production of dinitrotoluene(DNT),the behavior of toluene dinitration process was investigated by using microreaction technology with mixed acid as nitrating agent and toluene as raw material.Increasing the reaction temperature,elevating the molar ratio of nitric acid to toluene,reducing the water content of the mixed acid and decreasing N/S and integrating stirring were all conducive to the generation of DNT.Lowering the reaction temperature and increasing the water content of the mixed acid and the molar ratio of nitrate to sulfur are beneficial to reducing the 2,4-/2,6-DNT ratio.The nitrification process has been optimized for 80/20DNT products.At a reaction temperature of 75℃,a water content of mixed acid of 14%,N/S of 1/4 or 1/3,and a stirring time of 5 min,the product composition demonstrated desirable characteristics,i.e.,the content of MNT in the product was less than 0.2%,2,4-DNT and 2,6-DNT greater than 96%and other DNT less than 4%.More importantly,the ratio of 2,4-/2,6-DNT was less than 4.25.Under the conditions of adiabatic and room temperature feeding,a mixed acid water content of 14%,N/S of 1/4,and stirring time of 10 min,the product also complied with the industry standards.The study outcomes offer valuable technical insights for the continuous dinitration process of toluene and the continuous preparation of 80/20DNT products.

关键词

微反应器/微通道/过程强化/硝化/二硝基甲苯

Key words

microreactor/microchannel/process intensification/nitration/dinitrotoluene

分类

化学化工

引用本文复制引用

陈饶,赵鑫,陈戴欣,姜圣坤,廉应江,王金波,杨梅,陈光文..微反应器内甲苯连续二硝化制备二硝基甲苯[J].化工学报,2024,75(3):867-876,10.

基金项目

国家自然科学基金项目(21991103) (21991103)

化工学报

OA北大核心CSTPCD

0438-1157

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