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1982. Vol. 256. P. 393-417.[8] Budahegyi M.V., Lombosi E.R., Lombosi T.S., Mészáros S.Y., Nyiredy Sz.,Tarján G., Timár I., Takács J.M. Twenty-fifth anniversary of the retention index systemin gas—liquid chromatography // J. Chromatogr. A. 1983. Vol. 271. P. 213-307.[9] Tóth Á, Zala E. Contribution to the calculation of the constants of the n-alkaneretention time curve and gas hold-up time in gas-liquid chromatography // J.Chromatogr. A.
1984. Vol. 284. P. 53-62.[10] Tóth Á, Zala E. Calculation of constants of logarithmic adjusted retentiontime versus carbon number function used in gas-liquid chromatography // J.Chromatogr. A. 1984. Vol. 298. P. 381-387.123[11] Smith R.J., Haken J.K., Wainwright M.S., Madden B.G. Comparison ofmathematical methods for the calculation of kováts indices // J. Chromatogr. A. 1985.Vol.
328. P. 11-34.[12] Smith, R.J., Haken, J.K., Wainwright M.S. Estimation of dead time andcalculation of Kováts indices // J. Chromatogr. A. 1985. Vol. 334. P. 95-101.[13] Bangjie C., Shaoyi P. The temperature dependence of retention indices ingas chromatography // Chromatographia. 1988. Vol. 25. № 8. P. 731-734.[14] Mitra G.D., Saha N. C. Theory of the linearity of retention index withcolumn temperature. Its versatility and importance in gas chromatography // J.Chromatogr. 1973.
Vol. 6. № 2. P. 93-103.[15] Zenkevich I.G., Ukolova E.S. Dependence of chromatographic retentionindices on a ratio of amounts of target and reference compounds // J. Chromatogr. A.2012. V. 1265. P. 133-143.[16] Зенкевич И.Г., Уколова Е.С. Модификация алгоритма определенияхроматографических индексов удерживания для компенсации их зависимости отсоотношения характеризуемых и реперных компонентов // Журн. аналит. химии.2012. Т. 67. № 3. С.
282-289.[17] Зенкевич И.Г., Уколова Е.С. Зависимость газохроматографическихиндексовудерживанияотсоотношенияхарактеризуемыхиреперныхкомпонентов // Журн. аналит. химии. 2011. Т. 66. № 1. С. 47-55.[18] Зенкевич И.Г., Морозова Т.Е., Кларк-Карская Ю.Ф. Критерийинертности газохроматографических систем // Журн. аналит. химии.
2014. Т. 69.№ 12. С. 1242-1253.[19] Березкин В.Г., Никитина Н.С., Фатеева В.М. Феномен адсорбции иидентификация хроматографических зон в распределительной хроматографии //Докл. АН СССР. 1973. Т. 22. № 6. С. 1179-1183.[20] Березкин В.Г., Айвазов Б.В., Лебединская Л.Ф. Влияние адсорбции намежлабораторную воспроизводимость величин удерживания в газожидкостнойхроматографии при использовании насадочных колонок // Журн. аналит. химии.1983. Т. 38.
№ 8. С. 1475-1478.124[21] Ettre L.S., Billeb K. Considerations of the retention index concept. I.Retention index and column temperature // J. Chromatogr. A. 1967. Vol. 30. P. 1-11.[22] Tarján G., Nyiredy Sz, Györ M., Lombosi E.R., Lombosi T.S., BudahegyiM.V., Mészáros S.Y., Takács J.M. Thirtieth anniversary of the retention index accordingto Kováts in gas-liquid chromatography // J. Chromatogr. 1989. Vol.
472. P. 1-92.[23] Аракелян В.Г. О некоторых свойствах температурной зависимости.Газовая хроматография. Ред. Сакодынский К.И., Волков С.А. 1969. Вып. X.Москва: НИИ технико-экономических исследований. С. 38-45.[24] Hawkes S.J. Extrapolating gas chromatographic retention indices at twotemperatures to a third temperature // J. Anal.
Chem. 1989. Vol. 61. № 1. P. 88-90.[25] Soják L., Hrivňák J., Majer, P., Janák, J. Capillary gas chromatography oflinear alkenes on squalane // J. Anal. Chem. 1973. Vol. 45. № 2. P. 293-302.[26] Van Kemenade A. W. C., Groenendijk H. Methylgroup interaction ofhydrocarbon stationary phases and hydrocarbon solutes // J. Chromatogr.
1969. Vol. 2.№ 7. P. 316-318.[27] Saha N.C., Mitra G.D. Temperature coefficient of Kovats retention index asa new parameter in the identification of gas chromatographic peaks // J. Chromatogr.Sci. 1970. Vol 8. № 2. P. 84-90.[28] Vernon F., Suratman J.V. The retention index system applied toalkylbenzenes and monosubstituted derivatives // J. Chromatogr. 1983. Vol. 17. № 11.P. 600-604.[29] Škrbić B.D. Unified retention concept – statistical treatment of Kovátsretention index // J. Chromatogr.
A. 1997. Vol. 764. № 2. P. 257-264.[30] Dimov N. Unified retention index of hydrocarbons separated on squalene // J.Chromatogr. A. 1985. Vol. 347. P. 366-374.[31] Boneva S., Dimov N. Unified retention index of hydrocarbons separated ondimethylsilicone OV-101 // J. Chromatogr. 1986. Vol. 21. № 12. P. 697-700.[32] Papazova D., Dimov N. Unified retention indices for arenes in gaschromatography // J. Chromatogr. A. 1986. Vol.
356. P. 320-325.125[33] Papazova D., Milina R., Dimov N. Comparative evaluation of retention ofhydrocarbons present in the C5-petroleum fraction on methylsilicone and squalanephases // J. Chromatogr. 1988. Vol. 25. № 3. P. 177-180.[34] Skrbic B.D., Cvejanov J.Dj. Unified retention indices of hydrocarbons onBP-1 dimethylsiloxane stationary phase // J. Chromatogr.
1992. Vol. 34. № 1/2. P. 8384.[35] Skrbic B.D., Cvejanov J.Dj. Correlation of unified retention indices for OV101 and squalane // J. Chromatogr. 1993. Vol. 35. № 1. P. 109-110.[36] Skrbic B.D., Cvejanov J.Dj. Unified retention indices of alkylbenzenes onOV-101 and SE-30 // J. Chromatogr. 1993. Vol. 37. № 3. P. 215-217.[37] Skrbic B.D., Vojinović-Miloradov M. A contribution to the qualitative gcanalysis of some non-chlorinated xenobiotic chemicals in waste waters // Wat.Sci.Tech.1994.
Vol. 30. P. 91-93.[38] Skrbic B.D. Comparison of correlation equations for the prediction of gaschromatographic separation of alkylbenzenes // J. Chromatogr. 1995. Vol. 41. № 3. P.183-186.[39] Skrbic B.D., Cvejanov J.Dj., Pavić-Suzuki Lg. S. Contribution to the unifiedretention data of hydrocarbons on squalane // J. Chromatogr. 1996. Vol. 42. № 11. P.660-664.[40] Skrbic B.D., Cvejanov J.Dj. Proceeding of Abstracts of 10th InternationalSymposium Advances and Applications of Chromatography in Industry. Bratislava.1996. P.
81.[41] Soják L., Krupčík J., Janák J. Gas chromatography of all C15-C18 linearalkenes on capillary columns with very high resolution power // J. Chromatogr. A.1980. Vol. 195. P. 43-64.[42] Altenburg K. Der Einfluss der Molekülform auf die Temperaturabhängigkeitder Retentionsindizes isomerer Alkane // J. Chromatogr. 1969. Vol.
44. P. 167-169.[43] Castello G., Berg M., Lunardelli M. Temperature dependence of theretention indices of branches-chain paraffins on non-polar stationary phases - a method126for its calculation on the basis of molecular structure // J. Chromatogr. A. 1976. Vol. 79.P. 23-31.[44] Dimov N., Shopov D., Petkova T.
Proceedings of the Third AnalyticalConference. 24-29 August 1970. Hungarian Academy of Science. Budapest. 1970. p.299.[45] Kuningas K., Rang S., Kailas T. Relationship between the structure andretention of n-alkenes and n-alkynes on silicone phases // J. Chromatogr. 1990. Vol.520. № 1-2.
P. 137-148.[46] Rotzsche H. Stationary Phases in Gas Chromatography // J. Chromatogr.Library. 1991. Vol. 48. Amsterdam: Elsevier.[47] Takács, J., Rockenbauer, M., Olácsi I. Determination of the relationshipbetween retention index and column temperature in gas chromatograpy through thetemperature-dependence of the net retention volume // J. Chromatogr. A. 1969. Vol. 42.№ C. P. 19-28.[48] Riedo F., Fritz D., Tarján G., Kováts E.
A tailor-made C87 hydrocarbon as apossible non-polar standard stationary phase for gas chromatography // J. Chromatogr.A. 1976. Vol. 126. P. 63-83.[49] Головня Р.В., Арсеньев Ю.Н. Система индексов удерживания и еефизико-химическое применение // Успехи химии. 1973. Т. 42. № 12. С. 2221-2246.[50] Laub R.J., Purnell J.H. Specific retention volumes, retention indices, andfamily-plot regressions of aliphatic, alicyclic, and aromatic hydrocarbon solutes withOV-101 poly (dimethylsiloxane) stationary phase // J. High Resolution Chromatogr.1988.
Vol. 11. № 9. P. 649-660.[51] Pacáková V., Feltl L. Chromatographic Retention Indices an Aid toIdentification of Organic Compounds. New York: Ellis Horwood, 1992.[52] Héberger K., Görgényi M. Estimation of molar heat capacities in solutionfrom gas chromatographic data // J. Chromatogr. Sci. Vol. 39. № 3. 2001.
P. 113-120.[53] Tudor E., Moldovan D. Temperature dependence of the retention index forperfumery compounds on a SE-30 glass capillary column. II. The hyperbolic equation //J. Chromatogr. A. 1999. Vol. 848. № 1-2. P. 215-227.127[54] Hennig P., Engewald W. Influence of adsorption effects on retention indicesof selected C10-hydroxy compounds at various temperatures // J. Chromatogr. 1994.Vol. 38.
№ 1-2. P. 93-97.[55] Ciazynska-Halarewicz K., Kowalska T. A study of the dependence of theKovats retention index on the temperature of analysis on stationary phases of differentpolarity // Acta Chromatographica. 2003. Vol. 13. P. 69-80.[56] Heberger K., Gordenyi M., Kowalska T. Temperature dependence of Kovatsindices in gas chromatography revisited // J. Chromatogr. A. 2002. Vol.
973. P. 135142.[57] Gordenyi M., Heberger K. Minimum in the temperature dependence of theKovats retention indices of nitroalkanes and alkanenitriles on an apolar phase // J.Chromatogr. 2003. Vol. 985. P. 11-19.[58] Mijin D.Z., Antonovic D. Temperature dependence of the Kovats retentionindices for aryl 1,3-diketones on a DB-5 capillary column // J. Serb. Chem. Soc. 2004.Vol. 69. № 10.