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Efficient optimization-based design of energy-intensified azeotropic distillation processes

机译:基于高效的能量加强共沸蒸馏过程设计

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The separation of azeotropic mixtures is a difficult task in the downstream processing of many industrial processes. Although potentially less energy intensive separation techniques are available, the separation by extractive or heteroazeotropic distillation is often the method of choice, particularly for large scale processes. By application of different concepts for energy-intensification such as heat integration, the use of heat pumps or concepts of thermal coupling the separation efficiency of these thermal separation processes can be improved. However, the comparison of these different variants and the identification of the most energy or economicly beneficial option for a specific separation is an elaborate task. Therefore, an existing approach for the design of energy-intensified distillation processes has been extended to the design of extractive and heteroazeotropic distillation. The method utilizes a superstructure model based on the MESH equations including non-ideal thermodynamics. All considered process variants are evaluated by means of an automated procedure requiring nothing more than the definition of feed and product specifications as well as the thermodynamic model. The method is demonstrated for the dehydration of ethanol with the help of additional mass separating agents. While the investigated case study shows only small saving potential by the considered means of energy-intensification, it demonstrates the computational efficiency of the proposed design approach. Moreover, the method can easily be adapted for other separation tasks, requiring only minor changes.
机译:共沸混合物的分离是许多工业过程的下游加工中的艰巨任务。虽然潜在的能量密集的分离技术可用,但萃取或异质辐射蒸馏的分离通常是选择的方法,特别是对于大规模过程。通过在诸如热集成的能量强化的不同概念,可以提高这些热分离过程的热泵的使用或热耦合的概念。然而,这些不同变体的比较和特定分离的最能量或经济有益的选择的鉴定是一个精心制作的任务。因此,已经延长了能量强化蒸馏工艺的现有方法已经扩展到萃取和异质辐射蒸馏的设计。该方法利用基于网格方程的超结构模型,包括非理想热力学。所有考虑的过程变体都是通过自动化程序评估的,只需要进料和产品规格的定义以及热力学模型。通过额外的质量分离剂对乙醇的脱水证明该方法。虽然调查的案例研究仅显示了所考虑的能量强化手段,但它展示了所提出的设计方法的计算效率。此外,该方法可以容易地适应其他分离任务,只需要轻微的变化。

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