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A new superstructure optimization paradigm for process synthesis with product distribution optimization: Application to an integrated shale gas processing and chemical manufacturing process

机译:产品分布优化工艺合成的新型超结构优化范例:应用于集成的页岩气加工和化学制造过程

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We propose a novel process synthesis framework that combines product distribution optimization of chemical reactions and superstructure optimization of the process flowsheet. A superstructure with a set of technology/process alternatives is first developed. Next, the product distributions of the involved chemical reactions are optimized to maximize the profits of the effluent products. Extensive process simulations are then performed to collect high-fidelity process data tailored to the optimal product distributions. Based on the simulation results, a superstructure optimization model is formulated as a mixed-integer nonlinear program (MINLP) to determine the optimal process design. A tailored global optimization algorithm is used to efficiently solve the large-scale nonconvex MINLP problem. The resulting optimal process design is further validated by a whole-process simulation. The proposed framework is applied to a comprehensive superstructure of an integrated shale gas processing and chemical manufacturing process, which involves steam cracking of ethane, propane, n-butane, and i-butane. (c) 2017 American Institute of Chemical Engineers AIChE J, 63: 123-143, 2018
机译:我们提出了一种新颖的工艺综合框架,将产品分布优化的化学反应和超大结构优化结合了工艺流程。首先开发出一组技术/过程替代品的超大结构。接下来,优化所涉及的化学反应的产品分布,以最大限度地提高流出物产品的利润。然后执行广泛的过程模拟以收集针对最佳产品分布的高保真过程数据。基于仿真结果,将上部结构优化模型配制为混合整数非线性程序(MINLP),以确定最佳过程设计。定制的全局优化算法用于有效解决大规模非核解MINLP问题。通过整个过程模拟进一步验证所得到的最佳过程设计。所提出的框架适用于集成的页岩气体加工和化学制造工艺的综合上层结构,涉及乙烷,丙烷,正丁烷和丁烷的蒸汽裂化。 (c)2017美国化学工程师学院Aiche J,63:123-143,2018

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