[1] Chen Y, Mu T C. Revisiting greenness of ionic liquids and deep eutectic solvents[J]. Green Chemical Engineering, 2021, 2(2):174-186.
[2] Lei Z G, Dai C N, Chen B H. Chem inform abstract:Gas solubility in ionic liquids[J]. Chemical Reviews, 2014, 114(2):517-527.
[3] Klamt A, Jonas V, Bürger T, et al. Refinement and parametrization of COSMO-RS[J]. Journal of Physical Chemistry A, 1998, 102(26):5074-5085.
[4] Klamt A, Eckert F. COSMO-RS:A novel and efficient method for the a priori prediction of thermophysical data of liquids[J]. Fluid Phase Equilibria, 2000, 172(2000):43-72.
[5] Eckert F, Klamt A. COSMOtherm users manual, version C2.1 release 01.04[Z]. Leverkusen, Germany:COSMOlogic GmbH&Co KG, 2004.
[6] Schäfer A, Klamt A, Sattel D, et al. COSMO implementation in TURBOMOLE:Extension of an efficient quantum chemical code towards liquid systems[J]. Physical Chemistry Chemical Physics, 2000, 2(10):2187-2193.
[7] Eckert F, Klamt A. Fast solvent screening via quantum chemistry:COSMO-RS approach[J]. AIChE Journal,2002, 48(2):369-385.
[8] 牟天成, Jürgen G.真实溶剂似导体屏蔽模型(COSMORS)[J].化学进展, 2008, 10:1487-1494.
[9] Iqbal J, Muharmmad N, Rahim A, et al. COSMO-RS predictions, hydrogen bond basicity values and experimental evaluation of amino acid-based ionic liquids for lignocellulosic biomass dissolution[J]. Journal of Molecular Liquids, 2019, 273:215-221.
[10] Dai Z X, Chen Y F, Liu C, et al. Prediction and verification of heat capacities for pure ionic liquids[J]. Chinese Journal of Chemical Engineering, 2021, 31(3):169-176.
[11] Diedenhofen M, Eckert F, Klamt A. Prediction of infinite dilution activity coefficients of organic compounds in ionic liquids using COSMO-RS[J]. Journal of Chemical&Engineering Data, 2003, 48(3):475-479.
[12] 张晓春.用于吸收CO2的功能化离子液体的分子设计研究[D].北京:北京化工大学, 2009.
[13] Manan N A, Hardacre C, Jacquemin J. Evaluation of gas solubility prediction in ionic liquids using COSMOthermX[J]. Journal of Chemical Engineering Data, 2009, 54(7):2005-2022.
[14] 冯堃.基于分子模拟的CO2吸收离子液体筛选[D].上海:华东理工大学, 2012.
[15] Zhao Y S, Gani R, Afzal R M, et al. Ionic liquids for absorption and separation of gases:An extensive database and a systematic screening method[J]. AIChE Journal,2017, 63(4):1353-1367.
[16] Su T, Tang Z, Yin C, et al. Insights into quaternary ammonium-based ionic liquids series with tetrafluoroborate anion for CO2 capture[J]. Journla of Molecular Liquids,2021, 327:114857.
[17] Foorginezhad S, Yu G, Ji X. Reviewing and screening ionic liquids and deep eutectic solvents for effective CO2 capture[J]. Frontiers In Chemistry. 2022, 10:951951.
[18] 王卫. UNIFAC模型用于离子液体-气体体系的研究[D].北京:北京化工大学, 2013.
[19] Zhu R S, Li G X, Lei Z G, et al. Mechanistic insight into absorption performance assessment for SO2 by mixed ionic liquids[J]. Journal of Molecular Liquids, 2021,344:117-130.
[20] Santiago R, Diaz I, Gonzalez-Miquel M, et al. Assessment of bio-ionic liquids as promissing solvents in industrial separation process:Computational screening using COSMO-RS method[J]. Fluid Phase Equilibria,2022, 560:113495.
[21] Ramdin M, de Loos T W, Vlugt T J. State-of-the art of CO2 capture with ionic liquids[J]. Industrial&Engineering Chemistry Research, 2012, 51:8149-8177.
[22] Taheri M, Zhu R, Yu G, et al. Ionic liquid screening for CO2 capture and H2S removal from gases:The syngas purification case[J]. Chemical Engineering Science, 2021,230:116199.
[23] 刘向阳.气体在离子液体中溶解度的实验测量与理论计算[D].西安:西安交通大学, 2017.
[24] Liu X Y, Ruiz E, Afzal W, et al. High solubilities for methane, ethane, ethylene, and propane in trimethyloctylphosphonium Bis(2, 4, 4-trimethylpentyl)Phosphinate([P8111] [TMPP])[J]. Industrial&Engineering Chemistry Research, 2014, 53(1):363-368.
[25] Zhao X, Yang Q, Xu D, et al. Design and screening of ionic liquids for C2H2/C2H4 separation by COSMO-RS and experiments[J]. AIChE Journal, 2015, 61(6):2016-2027.
[26] 张依.低碳烷烃在离子液体和低共熔溶剂中的溶解性能研究[D].浙江:浙江大学, 2017.
[27] Bedia J, Ruiz E, Riva J, et al. Optimized ionic liquids for toluene absorption[J]. AIChE Journal, 2013, 59(5):1648-1656.
[28] Gonzale-Miquel M, Palomar J, Rodriguez F. Selection of ionic liquids for enhancing the gas solubility of volatile organic compounds[J]. The Journal of Physical Chemistry, 2013, 117(1):296-306.
[29] 慕明利.离子液体捕集含氯挥发性有机物的研究[D].北京:北京工业大学, 2020.
[30] 李志勇.气相甲苯与离子液体作用机理及吸收过程优化研究[D].北京:北京化工大学, 2022.
[31] 吴菲.离子液与典型挥发性有机物的交互作用及亨利系数预测模拟研究[D].北京:北京化工大学, 2017.
[32] Zhao H K, Gao H, Yu G Q, et al. Capturing methanol and dimethoxymethane gases with ionic liquids[J]. Fuel,2019, 241:704-714.
[33] Lei Z Q, Gao H, Yu G Q, et al. Capturing volatile ester compounds from gas mixture with ionic liquids[J]. Journal of Molecular Liquids, 2019, 281:517-527.
[34] 程俊.离子液体用于捕集硫醚类挥发性有机物的研究[D].北京:北京化工大学, 2019.
[35] Jiang Y F, Huang S, Lei Z G, et al. Removal of methyl ethyl ketone and sec-butanol from hydrogen by absorption with ionic liquids[J]. Industrial&Engineering Chemistry Research, 2020, 59(32):14476-14484.
[36] 吴量.离子液体用于合成气脱水的研究[D].北京:北京化工大学, 2017.
[37] 隋晓慧.离子液体在空气脱水中的应用研究[D].北京:北京化工大学, 2018.
[38] 于刚强.离子液体脱除天然气中气体杂质的研究[D].北京:北京化工大学, 2019.
[39] Yu G Q, Jiang Y F, Lei Z G. Pentafluoroethane dehydration with ionic liquids[J]. Industrial&Engineering Chemistry Research, 2018, 57(36):12225-12234.
[40] Wang Z H, Liu S L, Jiang Y F, et al. Methyl chloride dehydration with ionic liquid based on COSMO-RS model[J]. Green Energy&Environment, 2021, 6(3):413-421.
[41] Zhu R S, Gui C M, Li G X, et al. Modified COSMOUNIFAC model for ionic liquid-CO2 systems and molecular dynamic simulation[J]. AIChE Journal, 2022, 68(7):e17724.
[42] Maiti A. Theoretical screening of ionic liquid solvents for carbon capture[J]. ChemSusChem, 2009, 2(7):628-631.
[43] Mortazavi-Manesh S, Satvro M, Marriott R. A semi-empirical Henry's law expression for carbon dioxide dissolution in ionic liquids[J]. Fluid Phase Equilibria, 2011,307(2):208-215.
[44] Han J L, Dai C N, Yu G Q, et al. Parameterization of COSMO-RS model for ionic liquids[J]. Green Energy and Environment, 2018, 3(3):247-265.
[45] 吴进.离子液体吸收废印刷线路板热拆解过程中挥发性有机污染物[D].上海:上海第二工业大学, 2020.
[46] Yu G Q, Dai C N, Gao H, et al. Capturing condensable gases with ionic liquids[J]. Industrial&Engineering Chemistry Research, 2018, 57(36):12202-12214.
[47] Yu G Q, Jiang Y F, Chen J, et al. Structural effect on the vapor-liquid equilibrium of toluene-ionic liquid systems[J]. Chemical Engineering Science, 2019, 198:1-15.
[48] 金春晓.氯乙烯气体在离子液体中溶解规律的研究[D].浙江:浙江工业大学, 2020.
[49] Islam N, Khan H W, Gari A A, et al. Screening of ionic liquids as sustainable greener solvents for the capture of greenhouse gases using COSMO-RS approach:Computational study[J]. Fuel, 2022, 330:125540.
[50] Xu P, Shang Z, Li G, et al. Efficient purification of biogas using ionic liquids as absorbent:Molecular thermodynamics, dynamics and experiment[J]. Journal of Environmental Chemical Engineering, 2023, 11:110083.