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State-of-the-Art Technologies for Separation of Azeotropic Mixtures

机译:分离共沸混合物的最新技术

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摘要

Azeotropic separation technologies have been classified broadly into two major categories, i.e., distillation and membrane processes. Because normal distillation has limitations for azeotropic mixtures, enhancements have been proposed that either introduce a third component serving as an entrainer in extractive and azeotropic distillation processes or apply a pressure swing distillation system. Among the membrane processes, pervaporation was reported to be most promising for azeotropic separations. More recently, an approach known as process intensification has been proposed for combining multiple processes into single units such as a dividing wall distillation column or exploiting sonication phenomena to break an azeotrope in an ultrasonic distillation system. This article reviews the state-of-the-art technologies covering all the separation techniques mentioned here. Existing techniques are appraised, and technology gaps are identified. Based on these insights, areas for further development are suggested, aiming at satisfying the process objectives by inherently safer, environmentally benign and economically more attractive techniques.
机译:共沸分离技术已大致分为两大类,即蒸馏和膜法。由于常规蒸馏对共沸混合物有局限性,因此提出了增强措施,要么在萃取和共沸蒸馏过程中引入第三种夹带剂,要么应用变压蒸馏系统。在膜工艺中,据报道全蒸发最适合用于共沸分离。最近,已经提出了一种称为过程强化的方法,该方法用于将多个过程组合成单个单元,例如分隔壁蒸馏塔,或者利用超声现象破坏超声蒸馏系统中的共沸物。本文回顾了涵盖此处提到的所有分离技术的最新技术。对现有技术进行评估,并确定技术差距。基于这些见识,提出了需要进一步开发的领域,旨在通过本质上更安全,对环境有益且在经济上更具吸引力的技术来满足工艺目标。

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