Development and workflow of a separation process for optimum design: A case of phenylenediamine

Lionel O'Young, Zeping Wang, Weisong Fu, Peng Ye, Weihong Chen
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Abstract

An industrial project based upon the multi-scale objective-oriented process development (MOPD) method for developing an optimum process for separating phenylenediamine (PDA) isomers was executed. This article reports the first four (4) steps of that project. In the first step, the solution for this separation problem was conceptualized. It is a distillation-crystallization-hybrid process. The second step is to validate the concept experimentally from the thermodynamic point of view followed by kinetic considerations. It was found that a 2-stage crystallization is required to purify the main product isomers to the desirable specification that is higher than 99.5 mol%. A heat and material balance model was then constructed for analyzing and optimizing various design variables, also used to understand the operability of the process. Finally, with proper HAZOP analysis and detailed engineering, the pilot unit was designed. Throughout the project, all exercises and efforts are well focused with clear objectives, hence there are minimum detours on the execution; furthermore, the clear objectives enhanced the communications among various disciplines tremendously. It is a valuable asset for senior management in the allocation of resources and budgets.

Abstract Image

Abstract Image

优化设计分离工艺的开发与工作流程:以苯二胺为例
以多尺度目标导向工艺开发(MOPD)方法为基础,对苯二胺(PDA)异构体的最佳分离工艺进行了研究。本文报告了该项目的前四个步骤。在第一步中,对分离问题的解决方案进行了概念化。这是一个蒸馏-结晶-混合过程。第二步是从热力学的角度对这个概念进行实验验证,然后进行动力学的考虑。结果表明,要使主要产物同分异构体纯度达到99.5 mol%以上,需进行两段结晶。然后建立了热量和物质平衡模型,用于分析和优化各种设计变量,并用于了解工艺的可操作性。最后,通过适当的HAZOP分析和详细的工程设计,设计了中试装置。在整个项目中,所有的练习和努力都有明确的目标,因此在执行上有最小的弯路;此外,明确的目标极大地促进了各学科之间的沟通。它是高级管理人员分配资源和预算的宝贵资产。
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