EFFECT OF TEMPERATURE AND ORGANIC MODIFIER ON THE ISOCRATIC RETENTION CHARACTERISTICS OF NITRATED POLYCYCLIC AROMATIC-HYDROCARBONS ON A REVERSED-PHASE OCTADECYLSILANE COLUMN

被引:32
作者
ROBBAT, A
LIU, TY
机构
[1] Chemistry Department, Trace Analytical Measurement Laboratory, Tufts University, Medford
来源
JOURNAL OF CHROMATOGRAPHY | 1990年 / 513卷
关键词
D O I
10.1016/S0021-9673(01)89430-9
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Nitrated polycyclic aromatic hydrocarbon (nitro-PAH) retention behavior was evaluated on a reversed-phase polymeric octadecylsilane column under isocratic conditions as a function of organic modifier and temperature. Several conclusions can be drawn from the retention and organic modifier study (viz., methanol and acetonitrile-water). First, the logarithm of the capacity factor (log k′) was linearly dependent on organic-water volume fraction (φ{symbol}). Second, nitro-PAH k′ values increased with decrease in organic modifier concentration. Third, the slopes of log k′ vs. φ{symbol} plots were solvent-dependent. Larger slope values were found for nitro-PAHs in methanol-water than in acetonitrile-water mixtures for a particular compound. Fourth, slope values were dependent on the molecular structure of individual nitro-PAHs. Nitro-PAH retention times decreased with increase in column temperature. A linear dependence of log k′ on the reciprocal of the absolute column temperature, the Van `t Hoff plott, was observed for both organic modifiers over the temperature range studied. The standard enthalpic range (ΔH0) for nitro-PAH transfer from the mobile to the stationary pahse was determined. ΔH0 was dependent on organic modifier tupe and composition as well as solute structure. The enthalpy-entropy compensation effect was evaluated by plotting log k′ vs. - ΔH0 and used to interpret nitro-PAH retention mechanisms. A compensation effect was found for some mononitrated PAHs for both organic modifiers. The compensation temperatures were within the accepted range described for reversed-phase high-performance liquid chromatography systems. © 1990.
引用
收藏
页码:117 / 135
页数:19
相关论文
共 20 条
[1]   DETERMINATION OF HYDROPHOBIC PARAMETERS FOR PYRIDAZINONE HERBICIDES BY LIQUID-LIQUID PARTITION AND REVERSED-PHASE HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY [J].
BRAUMANN, T ;
GRIMME, LH .
JOURNAL OF CHROMATOGRAPHY, 1981, 206 (01) :7-15
[2]   QUANTITATIVE STRUCTURE-ACTIVITY-RELATIONSHIPS FOR HERBICIDES - REVERSED-PHASE LIQUID-CHROMATOGRAPHIC RETENTION PARAMETER, LOG KW, VERSUS LIQUID-LIQUID PARTITION-COEFFICIENT AS A MODEL OF THE HYDROPHOBICITY OF PHENYLUREAS, S-TRIAZINES AND PHENOXYCARBONIC ACID-DERIVATIVES [J].
BRAUMANN, T ;
WEBER, G ;
GRIMME, LH .
JOURNAL OF CHROMATOGRAPHY, 1983, 261 (03) :329-343
[3]  
CHMIELOWIEC J, 1979, J CHROMATOGR SCI, V17, P245, DOI 10.1093/chromsci/17.5.245
[4]  
DOHERTY PJ, 1985, THESIS TUFTS U MEDFO
[5]  
GENG XD, 1984, J CHROMATOGR, V296, P15
[6]   STOICHIOMETRIC DISPLACEMENT OF SOLVENT BY NON-POLAR SOLUTES IN REVERSED-PHASE LIQUID-CHROMATOGRAPHY [J].
GENG, XD ;
REGNIER, FE .
JOURNAL OF CHROMATOGRAPHY, 1985, 332 (SEP) :147-168
[7]   EFFECT OF TEMPERATURE ON HPLC SEPARATIONS USING C-1, C-4, C-8, AND C-18 ALKYL CHAIN BONDED SILICA COLUMNS [J].
ISSAQ, HJ ;
FOX, SD ;
LINDSEY, K ;
MCCONNELL, JH ;
WEISS, DE .
JOURNAL OF LIQUID CHROMATOGRAPHY, 1987, 10 (01) :49-70
[8]   INTERACTION INDEXES FOR PREDICTION OF RETENTION IN REVERSED-PHASE LIQUID-CHROMATOGRAPHY [J].
JANDERA, P ;
COLIN, H ;
GUIOCHON, G .
ANALYTICAL CHEMISTRY, 1982, 54 (03) :435-441
[9]  
JINNO K, 1984, J LIQ CHROMATOGR, V7, P887
[10]  
KRUZ JH, 1973, J CHROMATOGR, V83, P181