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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Systematic design of the integrating heat pump into heat integrated distillation column for recovering energy
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Systematic design of the integrating heat pump into heat integrated distillation column for recovering energy

机译:将热泵集成到热集成蒸馏塔中以回收能量的系统设计

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摘要

Many developed energy efficient configurations based on heat-integrated distillation column (HIDiC) have been proved to be attractive separation alternatives for saving energy. The key limitation of heat integrated technology is how to build splendid schemes for the heat integrated distillation column. In this work, the overall economic evaluation of conventional distillation column (CDiC), basic heat-integrated distillation column (basic HIDiC) and vapor recompression column (VRC) were executed systematically. Based on the comparison of results, by coupling the basic HIDiC with heat pump technology, a new distillation process model was developed as an intensified HIDiC (int-HIDiC) configuration for propylene-propane splitter. By this enhanced heat integration, the reboiler and the low pressure steam were no longer needed in the process. Meanwhile, the heat distribution proportion and the corresponding operating conditions of this int-HIDiC were optimized through vast simulations and computations. Finally, based on the above optimization results, we developed a simplified HIDiC configuration with two separated columns. The results show the better economic and energy performances than all the other energy-saving schemes including VRC. (C) 2016 Elsevier Ltd. All rights reserved.
机译:事实证明,许多基于热集成蒸馏塔(HIDiC)的节能配置都是节约能源的有吸引力的分离替代方案。热集成技术的关键局限在于如何为热集成蒸馏塔建立出色的方案。在这项工作中,系统地进行了常规蒸馏塔(CDiC),基本热集成蒸馏塔(basic HIDiC)和蒸气再压缩塔(VRC)的总体经济评估。在结果比较的基础上,通过将基本的HIDiC与热泵技术结合,开发了一种新的蒸馏过程模型,作为用于丙烯-丙烷分馏塔的强化HIDiC(int-HIDiC)配置。通过这种增强的热集成,在该过程中不再需要再沸器和低压蒸汽。同时,通过大量的模拟和计算,优化了该int-HIDiC的热分布比例和相应的工作条件。最后,根据上述优化结果,我们开发了一种简化的HIDiC配置,具有两个分离的列。结果表明,与包括VRC在内的所有其他节能方案相比,其经济和能源性能更好。 (C)2016 Elsevier Ltd.保留所有权利。

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