重氮
级联
流动化学
模块化设计
水溶液
流量(数学)
化学
连续流动
连续反应器
工艺工程
化学工程
组合化学
有机化学
色谱法
计算机科学
生化工程
催化作用
机械
工程类
物理
操作系统
作者
Jihong Ouyang,Wenbo Yang,Zhaoyan Guo,Fujun Li,Wendong Liu,Pengfei Guo,Yumeng Zhou,Dali Gao,Lijing Zhang,Shengyang Tao
标识
DOI:10.1002/cssc.202400413
摘要
Abstract Continuous flow synthesis is pivotal in dye production to address batch‐to‐batch variations. However, synthesizing water‐insoluble dyes in an aqueous system poses a challenge that can lead to clogging. This study successfully achieved the safe and efficient synthesis of azo dyes by selecting and optimizing flow reactor modules for different reaction types in the two‐step reaction and implementing cascade cooperation. Integrating continuous flow microreactor with continuous stirred tank reactor (CSTR) enabled the continuous flow synthesis of Sudan Yellow 3G without introducing water‐soluble functional groups or using organic solvents to enhance solubility. Optimizing conditions (acidity/alkalinity, temperature, residence time) within the initial modular continuous flow reactor resulted in a remarkable 99.5% isolated yield, 98.6 % purity, and a production rate of 2.90 g h −1 . Scaling‐up based on different reactor module characteristics further increased the production rate to 74.4 g h −1 while maintaining high yield and purity. The construction of this small 3D‐printing modular cascaded reactor and process scaling‐up provide technical support for continuous flow synthesis of water‐insoluble dyes, particularly high‐market‐share azo dyes. Moreover, this versatile methodology proves applicable to continuous flow processes involving various homogeneous and heterogeneous reaction cascades.
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