Ouyang Jihong, Yang Wenbo, Guo Zhaoyan, Li Fujun, Liu Wendong, Guo Pengfei, Zhou Yumeng, Gao Dali, Zhang Lijing, Tao Shengyang
School of Chemistry, State Key Laboratory of Fine Chemicals, Frontier Science Center for Smart Materials, Dalian Key Laboratory of Intelligent Chemistry, Dalian University of Technology, Dalian, 116024, China.
SINOPEC Beijing Research Institute of Chemical Industry, Beijing, 100013, China.
ChemSusChem. 2024 Oct 7;17(19):e202400413. doi: 10.1002/cssc.202400413. Epub 2024 Jun 10.
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. Scaling-up based on different reactor module characteristics further increased the production rate to 74.4 g h 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.
连续流动合成在染料生产中对于解决批次间差异至关重要。然而,在水体系中合成水不溶性染料存在挑战,可能导致堵塞。本研究通过为两步反应中不同反应类型选择和优化流动反应器模块并实施级联协作,成功实现了偶氮染料的安全高效合成。将连续流动微反应器与连续搅拌釜式反应器(CSTR)相结合,实现了苏丹黄3G的连续流动合成,无需引入水溶性官能团或使用有机溶剂来提高溶解度。在初始模块化连续流动反应器中优化条件(酸碱度、温度、停留时间),得到了高达99.5%的分离产率、98.6%的纯度以及2.90 g/h的生产率。基于不同反应器模块特性进行放大,进一步将生产率提高到74.4 g/h,同时保持高产率和高纯度。这种小型3D打印模块化级联反应器的构建以及工艺放大为水不溶性染料,特别是高市场份额的偶氮染料的连续流动合成提供了技术支持。此外,这种通用方法证明适用于涉及各种均相和非均相反应级联的连续流动过程。