Prediction of Greenhouse Gas Solubility in Eutectic Solvents Using COSMO-RS (original ) (raw ) References
C.A. Marques, A.A.S.C. Machado, Found. Chem. 16 , 125 (2014)Article Google Scholar
P. Anastas, N. Eghbali, Chem. Soc. Rev. 39 , 301 (2010)Article Google Scholar
A. Paiva, R. Craveiro, I. Aroso, M. Martins, R.L. Reis, A.R.C. Duarte, ACS Sustain. Chem. Eng. 2 , 1063 (2014)Article Google Scholar
S. Cherukuvada, A. Nangia, Chem. Commun. 50 , 906 (2014)Article Google Scholar
G. García, M. Atilhan, S. Aparicio, Int. J. Greenhouse Gas Control 39 , 62 (2015)Article Google Scholar
M.A.R. Martins, S.P. Pinho, J.A.P. Coutinho, J. Solut. Chem. 48 , 1 (2018) Google Scholar
B. Singh, H. Lobo, G. Shankarling, Catal Letters 141 , 178 (2011)Article Google Scholar
Q. Zhang, K. De Oliveira Vigier, S. Royer, F. Jérôme, Chem. Soc. Rev. 41 , 7108 (2012)Article Google Scholar
B. Tang, K.H. Row, Monatsh. Chem. 144 , 1427 (2013)Article Google Scholar
D. Carriazo, M.C. Serrano, M.C. Gutiérrez, M.L. Ferrer, F. del Monte, Chem. Soc. Rev. 41 , 4996 (2012)Article Google Scholar
H. Ghaedi, M. Ayoub, S. Sufian, G. Murshid, S. Farrukh, A.M. Shariff, Int. J. Greenhouse Gas Control 66 , 147 (2017)Article Google Scholar
H. Cheng, Z. Qi, Sep. Purif. Technol. 274 , 119027 (2021)Article Google Scholar
V. Sivabalan, N. Hasnor, B. Lal, Z. Kassim, A.S. Maulud, Appl. Sci. (Switz.) 10 , 25 (2020) Google Scholar
D. Lee, W. Go, J. Oh, J. Lee, I. Jo, K.S. Kim, Y. Seo, Chem. Eng. J. 399 , 125830 (2020)Article Google Scholar
Y. Liao, S. Gong, G. Wang, T. Wu, X. Meng, Q. Huang, Y. Su, F. Wu, R.M. Kelly, SSRN Electron. J. 69 , 806–812 (2022) Google Scholar
Z. Wang, M. Cheng, J. Bu, L. Cheng, J. Ru, Y. Hua, D. Wang, Adv. Powder Technol. 33 , 103670 (2022)Article Google Scholar
E.L. Smith, A.P. Abbott, K.S. Ryder, Chem. Rev. 114 , 11060 (2014)Article Google Scholar
R. Zhao, D. Pei, P. Yu, J. Wei, N. Wang, D. Di, Y. Liu, J. Sep. Sci. 43 , 348 (2020)Article Google Scholar
F.O. Farias, F.H.B. Sosa, L. Igarashi-Mafra, J.A.P. Coutinho, M.R. Mafra, Fluid Phase Equilib. 448 , 143 (2017)Article Google Scholar
G. Ansarypur, M. Bayareh, A. Jahangiri, J. Therm. Anal. Calorim. 147 , 1689 (2022)Article Google Scholar
M.B. Haider, R. Kumar, Sep. Purif. Technol. 248 , 117055 (2020)Article Google Scholar
A. Tatar, A. Barati-Harooni, A. Najafi-Marghmaleki, A. Bahadori, Int. J. Greenh. Gas Control 58 , 212 (2017)Article Google Scholar
F. Luo, X. Liu, S. Chen, Y. Song, X. Yi, C. Xue, L. Sun, J. Li, ACS Sustain. Chem. Eng. 9 , 10250 (2021)Article Google Scholar
O. Alioui, Y. Benguerba, I.M. Alnashef, J. Mol. Liq. 307 , 113005 (2020)Article Google Scholar
International Energy Agency, Global Energy Review: CO2 Emissions in 2021 Global Emissions Rebound Sharply to Highest Ever Level (2022).
D.A. Lashof, D.R. Ahuja, Nature 344 , 529 (1990)Article ADS Google Scholar
M. Höök, X. Tang, Energy Policy 52 , 797 (2013)Article Google Scholar
G. García, S. Aparicio, R. Ullah, M. Atilhan, Energy Fuels 29 , 2616 (2015)Article Google Scholar
G. Luderer, V. Bosetti, M. Jakob, M. Leimbach, J.C. Steckel, H. Waisman, O. Edenhofer, Clim. Change 114 , 9 (2012)Article ADS Google Scholar
F. Petrakopoulou, G. Tsatsaronis, Energy Fuels 28 , 5327 (2014)Article Google Scholar
J. de Riva, J. Suarez-Reyes, D. Moreno, I. Díaz, V. Ferro, J. Palomar, Int. J. Greenh. Gas Control 61 , 61 (2017)Article Google Scholar
Y. Wang, L. Zhao, A. Otto, M. Robinius, D. Stolten, Energy Procedia 114 , 650 (2017)Article Google Scholar
F.P. Pelaquim, A.M.B. Neto, I.A.L. Dalmolin, M.C. da Costa, Ind. Eng. Chem. Res. 1 , 00947 (2021) Google Scholar
X. Liu, B. Gao, Y. Jiang, N. Ai, D. Deng, J. Chem. Eng. Data 62 , 1448 (2017)Article Google Scholar
H. Ghaedi, M. Ayoub, S. Sufian, A.M. Shariff, S.M. Hailegiorgis, S.N. Khan, J. Mol. Liq. 243 , 564 (2017)Article Google Scholar
N. Ramzan, M. Rizwan, M. Zaman, M. Adnan, A. Ullah, A. Gungor, U. Shakeel, A. ul Haq, Int. J. Energy Res. 46 , 23775–23795 (2022)Article Google Scholar
K.H. Smith, H.E. Ashkanani, B.I. Morsi, N.S. Siefert, Int. J. Greenh. Gas Control 118 , 103694 (2022)Article Google Scholar
G. Siani, M. Tiecco, P. Di Profio, S. Guernelli, A. Fontana, M. Ciulla, V. Canale, J. Mol. Liq. 315 , 1 (2020)Article Google Scholar
H. Qin, Z. Song, H. Cheng, L. Deng, Z. Qi, J. Mol. Liq. 326 , 1 (2021)Article Google Scholar
X. Liu, Q. Ao, S. Shi, S. Li, Mater. Res. Express 9 , 015504 (2022)Article ADS Google Scholar
Y. Liu, H. Yu, Y. Sun, S. Zeng, X. Zhang, Y. Nie, S. Zhang, X. Ji, Front. Chem. 8 , 1 (2020)Article Google Scholar
J. Wang, Z. Song, L. Chen, T. Xu, L. Deng, Z. Qi, Green Chemical Eng. 2 , 431 (2021)Article Google Scholar
A. Kamgar, S. Mohsenpour, F. Esmaeilzadeh, J. Mol. Liq. 247 , 70 (2017)Article Google Scholar
R. Haghbakhsh, S. Raeissi, J. Chem. Eng. Data 63 , 897 (2017)Article Google Scholar
R. Haghbakhsh, M. Keshtkar, A. Shariati, S. Raeissi, J. Mol. Liq. 330 , 1 (2021)Article Google Scholar
F.P. Pelaquim, R.G. Bitencourt, A.M.B. Neto, I.A.L. Dalmolin, M.C. da Costa, Process. Saf. Environ. Prot. 163 , 14 (2022)Article Google Scholar
F. Rabhi, F. Mutelet, H. Sifaoui, J. Chem. Eng. Data 66 , 702 (2021)Article Google Scholar
M.B. Haider, D. Jha, R. Kumar, M. Sivagnanam, Int. J. Greenh. Gas Control 92 , 1 (2020)Article Google Scholar
A. Klamt, J. Phys. Chem. 99 , 2224 (1995)Article Google Scholar
A. Klamt, V. Jonas, T. Bürger, J.C.W. Lohrenz, J. Phys. Chem. A 102 , 5074 (1998)Article Google Scholar
F. Eckert, A. Klamt, AIChE J. 48 , 369 (2002)Article ADS Google Scholar
H. Cheng, C. Liu, J. Zhang, L. Chen, B. Zhang, Z. Qi, Chem. Eng. Process. 125 , 246 (2018)Article Google Scholar
K.A. Kurnia, S.P. Pinho, J.A.P. Coutinho, Ind. Eng. Chem. Res. 53 , 12466 (2014)Article Google Scholar
K. Paduszyński, Phys. Chem. Chem. Phys. 19 , 11835 (2017)Article Google Scholar
T. Aissaoui, I.M. AlNashef, Int. J. Chem. Mol. Eng. 11 , 54007 (2017) Google Scholar
K. Xin, F. Gallucci, M. van Sintannaland, ACS Sustain. Chem. Eng. 10 , 15284 (2022)Article Google Scholar
Z. Song, X. Hu, H. Wu, M. Mei, S. Linke, T. Zhou, Z. Qi, K. Sundmacher, ACS Sustain. Chem. Eng. 8 , 8741 (2020)Article Google Scholar
H. Qin, Z. Song, H. Cheng, L. Deng, Z. Qi, J. Mol. Liq. 326 , 115292 (2021)Article Google Scholar
A. Al-Bodour, N. Alomari, S. Aparicio, M. Atilhan, J. Mol. Liq. 390 , 123114 (2023)Article Google Scholar
M. Mohan, O. Demerdash, B.A. Simmons, J.C. Smith, M.K. Kidder, S. Singh, Green Chem. 25 , 3475 (2023)Article Google Scholar
R.B. Leron, M.H. Li, Thermochim. Acta 551 , 14 (2013)Article ADS Google Scholar
R.B. Leron, M.H. Li, J. Chem. Thermodyn. 57 , 131 (2013)Article Google Scholar
Y. Ji, Y. Hou, S. Ren, C. Yao, W. Wu, Fluid Phase Equilib. 429 , 14 (2016)Article Google Scholar
G. Li, D. Deng, Y. Chen, H. Shan, N. Ai, J. Chem. Thermodyn. 75 , 58 (2014)Article Google Scholar
X. Li, M. Hou, B. Han, X. Wang, L. Zou, J. Chem. Eng. Data 53 , 548 (2008)Article Google Scholar
F. Liu, W. Chen, J. Mi, J.Y. Zhang, X. Kan, F.Y. Zhong, K. Huang, A.M. Zheng, L. Jiang, AIChE J. 65 , 1 (2019)Article Google Scholar
Y. Chen, N. Ai, G. Li, H. Shan, Y. Cui, D. Deng, J. Chem. Eng. Data 59 , 1247 (2014)Article Google Scholar
M. Lu, G. Han, Y. Jiang, X. Zhang, D. Deng, N. Ai, J. Chem. Thermodyn. 88 , 72 (2015)Article Google Scholar
T. Altamash, A.I. Amhamed, S. Aparicio, M. Atilhan, Ind. Eng. Chem. Res. 58 , 8097 (2019)Article Google Scholar
B. COSMOtherm, Release 2021 (2021).
C. Steffen, K. Thomas, U. Huniar, A. Hellweg, O. Rubner, A. Schroer, J. Comput. Chem. 31 , 2967 (2010)Article Google Scholar
M. Diedenhofen, A. Klamt, Fluid Phase Equilib. 294 , 31 (2010)Article Google Scholar
B. COSMOtherm, Reference Manual (2021).
L. Moity, M. Durand, A. Benazzouz, C. Pierlot, V. Molinier, J.M. Aubry, Green Chem. 14 , 1132 (2012)Article Google Scholar
Y. Liu, Z. Dai, Z. Zhang, S. Zeng, F. Li, X. Zhang, Y. Nie, L. Zhang, S. Zhang, X. Ji, Green Energy Environ. 6 , 314 (2021)Article Google Scholar
J. Zhu, H. Shao, L. Feng, Y. Lu, H. Meng, C. Li, J. Mol. Liq. 341 , 116928 (2021)Article Google Scholar
P. Zhang, W. Xiong, M. Shi, Z. Tu, X. Hu, X. Zhang, Y. Wu, Chem. Eng. J. 438 , 135626 (2022)Article Google Scholar
D. Yang, M. Hou, H. Ning, J. Zhang, J. Ma, G. Yang, B. Han, Green Chem. 15 , 2261 (2013)Article Google Scholar
X. Liu, B. Gao, D. Deng, Sep. Sci. Technol. (Phila.) 53 , 2150 (2018)Article Google Scholar
J. Zhang, L. Yu, R. Gong, M. Li, H. Ren, E. Duan, Energy Fuels 34 , 47 (2020) Google Scholar
X. Yang, Y. Zhang, F. Liu, P. Chen, T. Zhao, Y. Wu, Sep. Purif. Technol. 250 , 1 (2020) Google Scholar
S. Sun, Y. Niu, Q. Xu, Z. Sun, X. Wei, Ind. Eng. Chem. Res. 54 , 8019 (2015)Article Google Scholar
S. Hou, C. Zhang, B. Jiang, H. Zhang, L. Zhang, N. Yang, N. Zhang, X. Xiao, X. Tantai, ACS Sustain. Chem. Eng. 8 , 16241 (2020)Article Google Scholar
Y. Chen, B. Jiang, H. Dou, L. Zhang, X. Tantai, Y. Sun, Energy Fuels 32 , 10737 (2018)Article Google Scholar
D. Deng, X. Liu, B. Gao, Ind. Eng. Chem. Res. 56 , 13850 (2017)Article Google Scholar
G. Cui, J. Liu, S. Lyu, H. Wang, Z. Li, J. Wang, ACS Sustain Chem Eng 7 , 14236 (2019)Article Google Scholar
X. Wu, R. Guan, W.T. Zheng, K. Huang, J. Taiwan Inst. Chem. Eng. 119 , 45 (2021)Article Google Scholar
D. Deng, C. Zhang, X. Deng, L. Gong, Energy Fuels 34 , 665 (2020)Article Google Scholar
A.P. Abbott, G. Capper, D.L. Davies, R.K. Rasheed, V. Tambyrajah, R. Soc. Chem. 70 , 71 (2003) Google Scholar
X. Liu, T. Zhou, X. Zhang, S. Zhang, X. Liang, R. Gani, G.M. Kontogeorgis, Chem. Eng. Sci. 192 , 816 (2018)Article Google Scholar
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