全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
化学进展  1996 

电解质溶液的分子热力学模型研究进展

Keywords: 电解质溶液,分子热力学模型,经典溶液理论,统计力学理论,分子模拟

Full-Text   Cite this paper   Add to My Lib

Abstract:

"本文从经典溶液理论及半经验模型、近代统计力学理论和分子模拟三大方面阐述了近年来国内外电解质溶液热力学的研究进展。指出电解质溶液的研究已逐渐从经典的溶液理论和半经验模型转向用统计力学理论进行研究,从电解质的原始模型转向非原始模型。从分子和离子的微观参数出发建立高水平的热力学理论模型,以预测电解质溶液体系的宏观热力学性质,是发展的必然趋势。

References

[1]  [1 ] 黄子卿, 电解质溶液理论导论(修订版) , 科学出版社, 北京, 1983, 73~ 150, 210~ 235.
[2]  [2 ] 胡英, 刘国杰, 徐英年, 谭子明, 应用统计力学, 化学工业出版社, 北京, 1990, 335~ 403.
[3]  [3 ] Debye P, Hückel E, Phys. Zeit. , 1923, 24, 185~ 195.
[4]  [8 ] 刘文斌, 王建吉, 卢锦梭, 化学物理学报, 1994, 7 (1) , 50~ 54.
[5]  [9 ] Pitzer K S, Ber. Bunsenges. Phys. Chem. , 1981, 85, 952~ 959.
[6]  [10 ] Li J D, Polka H M , Gmehling J , Fluid Phase E quilibria, 1994, 94, 89~ 114.
[7]  [11 ] Chen C C, Britt H I, Boston J F, Evans L B, A IChE J. , 1982, 28 (4) , 588~ 596.
[8]  [15 ] Pitzer K S, Activity Coefficients in Electrolyte Solutions, 2nd Ed. , CRC Press, Boca Raton, 1991,75~ 154.
[9]  [17 ] Stokes R H, Robinson R A , J. Soln. Chem. , 1973, 2 (2?3) , 173~ 186.
[10]  [19 ] Lu X H, Maurer G, A IChE J. , 1993, 39 (9) , 1527~ 1538.
[11]  [20 ] 张锁江, 韩世钧, 化工学报, 1994, 45 (3) , 293~ 297.
[12]  [21 ] Fuoss R M , J. Am. Chem. Soc. , 1958, 80 (20) , 5059~ 5070.
[13]  [23 ] Green M S, J. Chem. Phys. , 1960, 33 (5) , 1403~ 1407.
[14]  [24 ] Percus J K, Yevick G L , Phys. Rev. , 1958, 110 (1) , 1~ 13.
[15]  [25 ] Lebowitz J L , Percus J K, Phys. Rev. , 1966, 144 (1) , 251~ 258.
[16]  [27 ] Harvey A H, Prausnitz J M , A IChE J. , 1989, 35 (4) , 635~ 644.
[17]  [28 ] 左有祥, 郭天民, 化工学报, 1990, 41 (1) , 1~ 9.
[18]  [37 ] Lvov S N , Wood R H, Fluid Phase Equilibria, 1990, 60 (3) , 273~ 287.
[19]  [38 ] Barker J A , Henderson D, J. Chem. Phys. , 1967, 47 (11) , 4714~ 4721.
[20]  [41 ] Beret S, Prausnitz J M , A IChE J. , 1975, 21 (6) , 1123~ 1132.
[21]  [42 ] Morris W O , Vimalchand P, Donohue M D, Fluid Phase Equilibria, 1987, 32 (2) , 103~ 115.
[22]  [43 ] Vimalchand P, Donohue M D, Ind. Eng. Chem. Fundam. , 1985, 24 (2) , 246~ 257.
[23]  [44 ] Chapman W G, Gubbins K E, Jackson G, Radosz M , Ind. Eng. Chem. Res. , 1990, 29 (8) , 1709~1721.
[24]  [48 ] Chan K Y, J. Phys. Chem. , 1990, 94 (22) , 8472~ 8477.
[25]  [51 ] Henderson D, Blum L , TaniA , ACS Symposium Series, No. 300, 1986, 281~ 296.
[26]  [54 ] Chan K Y, J. Phys. Chem. , 1991, 95 (19) , 7465~ 7471.
[27]  [56 ] Hu Y, Ludecke D, Prausnitz J M , Fluid Phase Equilibria, 1984, 17, 217~ 241.
[28]  [58 ] 朱建军, 刘文彬, 卢锦梭, 白同春, 物理化学学报, 1990, 6 (2) , 246~ 251.
[29]  [60 ] Caillol J M , Levesque D, Weis J J , Mol. Phys. , 1990, 69 (1) , 199~ 208.
[30]  [61 ] Eggebrecht J , Olzer P, J. Chem. Phys. , 1990, 93 (3) , 2004~ 2015.
[31]  [62 ] Caillol J M , Levesque D, Weis J J , J. Chem. Phys. , 1989, 91 (9) , 5555~ 5566.
[32]  [63 ] 张伟平, 李总成, 李以圭, 全国冶金物理化学学术会议论文集, 广州, 1994, 328~ 337.
[33]  [4 ] Fowler R H, Guggenheim E A , Statistical Thermodynamics, Cambridge University Press, New York,1956, 377~ 409.
[34]  [5 ] Pitzer K S, J. Phys. Chem. , 1973, 77 (2) , 268~ 277.
[35]  [6 ] Pitzer K S, Li Y G, Proc. Natl. Acad. Sci. USA , Chemistry , 1983, 80, 7689~ 7693.
[36]  [7 ] Clegg S L , Pitzer K S, J. Phy. Chem. , 1992, 96 (8) , 3513~ 3520.
[37]  [12 ] Sander B, Fredenslund A , Rasmussen P, Chem. Eng. Sci. , 1986, 41 (5) , 1171~ 1183.
[38]  [13 ] Peng Q H, Li Z C, Li Y G, Fluid Phase E quilibria, 1994, 95, 341~ 357.
[39]  [14 ] Peng Q H, Li Z C, Li Y G, Fluid Phase E quilibria, 1994, 97, 67~ 80.
[40]  [16 ] Kim H T , Frederick W J , J. Chem. Eng. Data, 1988, 33 (2) , 177~ 184.
[41]  [18 ] Zerres H, Prausnitz J M , A IChE J. , 1994, 40 (4) , 676~ 691.
[42]  [22 ] Ornstein L S, Zernike F, Proc. Acad. Sci. , Amsterdam , 1914, 17, 793~ 801.
[43]  [26 ] Planche H, Renon H, J. Phys. Chem. , 1981, 85 (25) , 3924~ 3929.
[44]  [29 ] Lu J F, Yu Y X, Li Y G, Fluid Phase Equilibria, 1993, 85, 81~ 100.
[45]  [30 ] Wu R S, Lee L L , Fluid Phase Equilibria, 1992, 78, 1~ 24.
[46]  [31 ] Weitheim M S, J. Chem. Phys. , 1971, 55 (9) , 4291~ 4298.
[47]  [32 ] Adelman S A , Deutch J M , J. Chem. Phys. , 1973, 59 (8) , 3971~ 3980.
[48]  [33 ] Blum L , J. Chem. Phys. , 1974, 61 (5) , 2129~ 2133.
[49]  [34 ] Blum L , Wei D, J. Chem. Phys. , 1987, 87 (1) , 555~ 565.
[50]  [35 ] Wei D, Blum L , J. Chem. Phys. , 1987, 87 (5) , 2999~ 3007.
[51]  [36 ] Hoye J S, Lomba E, J. Chem. Phys. , 1988, 88 (9) , 5790~ 5797.
[52]  [39 ] Weeks J D, Chandler D, Anderson H C, J. Chem. Phys. , 1971, 54 (12) , 5237~ 5247.
[53]  [40 ] Gray C G, Gubbins K E, Theory of Molecular Fluids, Vol. 1: Fundamentals, Clarendon Press, Oxford, 1984, 248~ 317.
[54]  [45 ] Song Y H, Lambert S M , Prausnitz J M , Ind. Eng. Chem. Res. , 1994, 33 (4) , 1047~ 1057.
[55]  [46 ] Stell G, Lebowitz J L , J. Chem. Phys. , 1968, 49 (8) , 3706~ 3717.
[56]  [47 ] Henderson D, ACS Symposium Series, No. 204, 1983, 47~ 71.
[57]  [49 ] Hirata F, Arakawa K, Bulletinof Chem. Soc.of Japan, 1975, 48 (7) , 2139~ 2144.
[58]  [50 ] Kondo K, Eckert C A , Ind. Eng. Chem. Fundam. , 1983, 22 (3) , 283~ 292.
[59]  [52 ] Jin G, Donohue M D, Ind. Eng. Chem. Res. , 1988, 27 (6) , 1073~ 1084.
[60]  [53 ] 刘文彬, 卢锦梭, 朱建军, 化学物理学报, 1988, 1 (5) , 398~ 404.
[61]  [55 ] Wu J Z, Lu J F, Li Y G, Fluid Phase Equilibria, 1994, 101, 121~ 136.
[62]  [57 ] Li Y G, Mather A E, Fluid Phase Equilibria, 1994, 96, 119~ 142.
[63]  [59 ] Chan K Y, Gubbins K E, Henderson D, Blum L , Mol. Phys. , 1989, 66 (2) , 299~ 316.
[64]  [64 ] Strauch H J , Cummings P T , Fluid Phase Equilibria, 1993, 83, 213~ 222.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133