萃取蒸馏
离子液体
分离过程
蒸馏
乙烯
化学
过程(计算)
色谱法
空气分离
工艺工程
化学工程
有机化学
计算机科学
催化作用
工程类
操作系统
氧气
作者
Yang Lei,Wanying Pan,Shaobin Hu,Yongchao Kuang,Xinyan Liu,Yuqiu Chen
标识
DOI:10.1021/acs.iecr.4c02483
摘要
In the petrochemical industry, the separation of ethylene and ethane is a crucial step in ethylene production due to its significant energy consumption, high costs, and environmental impact. This study proposes an extractive distillation (ED) method for ethylene/ethane separation incorporating a customized ionic liquid (IL) solvent as an extractant. The CAILD (computer-aided ionic liquid design) approach was used for solvent screening. By solving a formulated MINLP (mixed-integer nonlinear programming) problem based on CAILD, methylpyridinium trifluoroacetate ([C1Py][TFA]) and methylimidazolium trifluoroacetate ([C1Im][TFA]) (CAS number 104290-54-2) were identified as the optimal IL solvents. Subsequently, rigorous process simulations of IL-assisted ethylene/ethane separation were conducted with Aspen Plus. Finally, a comprehensive assessment covering energy, environmental, and economic aspects was performed. The results demonstrate that, compared to conventional separation processes, the [C1Py][TFA] and [C1Im][TFA]-assisted processes achieve total annual cost reductions of 46.51% and 69.82%, respectively. Additionally, energy consumption is decreased by 41.60% and 42.16%, leading to a reduction in greenhouse gas emissions by 34.00% and 34.65%, respectively.
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