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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Process synthesis and simultaneous optimization of extractive distillation system integrated with organic Rankine cycle and economizer for waste heat recovery
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Process synthesis and simultaneous optimization of extractive distillation system integrated with organic Rankine cycle and economizer for waste heat recovery

机译:用有机朗肯循环和储存器集成的萃取蒸馏系统的方法合成及同时优化废热回收

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摘要

The separation of close-boiling and azeotropic components by extractive distillation (ED) is a costly process. Because ED columns usually have relatively large top/bottom temperature difference, traditional energy-saving measures like heat integration/heat pump, are limited in reusing the system inherent waste heat. However, this opens an otherwise door for organic Rankine cycle (ORC), capable of converting waste heat into power regardless of the large temperature span. Consequently, several integrated ED-ORC systems with or without economizer(s) are therefore proposed, aiming at recovering both latent and sensible waste heat. An azeotropic n-heptane/isobutanol separation is used to illustrate the performance of these integrated systems. R227EA is selected as the ORC working fluid from 11 chlorine free candidates for the highest thermal efficiency of 8.23%. Compared to the basic case, the optimum integrated system without economizer only reduces TAC by 3.01%. While reusing the system inherent waste heat by adding economizer(s) can dramatically enhance the energy efficiency, leading to TAC saving up to 30.30%. The TAC reduction is attributed to dramatic hot utility consumption saving (similar to 45%). Sharing close technical parameters, the ED process will benefit more when retrofitted into the integrated systems under minimized column modifications. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:通过萃取蒸馏(ED)的亲密沸点和共沸组分的分离是昂贵的方法。由于ED柱通常具有相对较大的顶/底温差,因此传统的节能措施,如热集成/热泵,受到重用系统固有的废热的限制。然而,这为有机朗肯循环(ORC)打开了另一个门,无论大的温度跨度如何,都能够将废热转换为功率。因此,因此提出了几种具有或不具有节能器的集成ED-ORC系统,旨在恢复潜伏和明智的废热。共沸的N-庚烷/异丁醇分离用于说明这些集成系统的性能。选择R227EA作为来自11个游离候选的ORC工作流体,其最高热效率为8.23%。与基本情况相比,无需恢复器的最佳集成系统仅减少了3.01%的TAC。通过添加节能器重用系统固有的废物热量可以显着提高能量效率,导致TAC节省高达30.30%。 TAC减少归因于戏剧性的热利用消费量(类似于45%)。共享关闭技术参数,ED过程将在最小化的列修改下重新装入集成系统时更多。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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