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Recent advances in simulation and optimal design of pressure swing adsorption systems

机译:变压吸附系统的仿真和优化设计的最新进展

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With the growing maturity and accuracy of bed models for adsorption,increasing sophistication of pressure swing adsorption (PSA) cycles and competitive demands for high-performance PSA separations,it is essential to develop systematic optimization strategies for the design of PSA systems.Moreover,over the past decade large-scale simulation and optimization tools have been developed that overcome many of the computational barriers related to process optimization with detailed models.This study discusses recent progress in this area.In particular,we discuss large-scale simulation and optimization algorithms along with their implementation on PSA systems.A case study on an O2VSA process demonstrates the effectiveness of this approach.Finally,future research directions in algorithmic development,optimal strategies for process control and operation,as well as application to more complex PSA cycles are outlined.
机译:随着吸附床模型的成熟度和准确性不断提高,变压吸附(PSA)循环的复杂性不断提高以及对高性能PSA分离的竞争需求,为PSA系统的设计开发系统的优化策略至关重要。在过去的十年中,已经开发出了大型仿真和优化工具,这些工具通过详细的模型克服了与过程优化相关的许多计算障碍。本研究讨论了该领域的最新进展。特别是,我们讨论了大型仿真和优化算法,以及以O2VSA过程为例,证明了该方法的有效性。最后,概述了算法开发的未来研究方向,过程控制和操作的最佳策略以及在更复杂的PSA循环中的应用。

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