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Hydrocarbon, in water

An easy to use nomograph has been developed for the solubility of liquid hydrocarbons in water at ambient conditions (25°C). The accuracy of the nomograph has been checked against available solubility data. Performance of the nomograph has been compared with the predictions given by two available analytical correlations. The nomograph is much simpler to use and far more accurate than either of the analytical methods. [Pg.360]

Regression Constants and Nomograph Coordinates for the Soiubilities of Liquid Hydrocarbons in Water at 25°C... [Pg.360]

The Determination of 6 Specific Polynuclear Aromatic Hydrocarbons in Waters [Using High-Performance Liquid Chromatography,Thin-layer Chromatography], 1985... [Pg.315]

Dietz EA Jr, Singley KF. 1979. Determination of chlorinated hydrocarbons in water by headspace gas chromatography. Anal Chem 51 1809-1814. [Pg.261]

Many process mixtures, notably fermentations, require sample preconcentration, microdialysis, microfiltration, or ultrafiltration prior to analysis. A capillary mixer has been used as a sample preparation and enrichment technique in microchromatography of polycyclic aromatic hydrocarbons in water.8 Microdialysis to remove protein has been coupled to reversed phase chromatography to follow the pharmacokinetics of the metabolism of acetaminophen into acetaminophen-4-O-sulfate and acetaminophen-4-O-glucu-ronide.9 On-line ultrafiltration was used in a process monitor for Aspergillus niger fermentation.10... [Pg.90]

Hahn P., Tacke M., Jakusch M., Mizaikoff B., Detection of hydrocarbons in water by MIR evanescet-wave spectroscopy with flattened silver halide fibres, Applied Spectroscopy 2001 55 39-43. [Pg.75]

Krska R., Kellner R., Schiessl U., Tacke M. and Katzir, Fiber optic sensor for chlorinated hydrocarbons in water based on infrared fibers and tunable diode lasers, Appl. Phys. Lett., 1993 63 (14), 1868-1871 A. [Pg.153]

Almgren, M., Grieser, F., Powell, J. R., Thomas, J. K. (1979) A correlation between the solubility of aromatic hydrocarbons in water and micellar solutions, with their normal boiling points. J. Chem. Eng. Data 24, 285-287. [Pg.49]

Al-Sahhaf, T. A. (1989) Prediction of the solubility of hydrocarbons in water using UNIFAC. J. Environ. Sci. Health A24, 49-56. [Pg.49]

Kabadi, V. N., Danner, R. P. (1979) Nomograph solves for solubilities of hydrocarbons in water. Hydrocarbon Processing, 68, 245-246. [Pg.53]

Mackay, D., Shiu, W. Y., Wolkoff, A. W. (1975) Gas chromatographic determination of low concentration of hydrocarbons in water by vapor phase extraction. In Water Quality Parameters. ASTM STP 573, pp. 251-258, American Society for Testing and Materials, Philadelphia, PA. [Pg.55]

May, W. E., Wasik, S. P., Freeman, D. H. (1978b) Determination of the solubility behavior of some polycyclic aromatic hydrocarbons in water. Anal. Chem. 50, 997-1000. [Pg.55]

Connolly, J.F. (1966) Solubility of hydrocarbons in water near the critical solution temperatures. J. Chem. Eng. Data 11, 13-16. [Pg.397]

Farkas, E.J. (1965) New method for determining hydrocarbon-in-water solubilities. Anal. Chem. 37, 1173-1175. [Pg.398]

Mackay, D., Shiu, W.Y., Wolkoff, A.W. (1975) Gas chromatographic determination of low concentrations of hydrocarbons in water by vapor phase extraction. ASTM STP 573, pp. 251-258, Am. Soc. Testing and Materials, Philadelphia, Pennsylvania. Macknick, A.B., Prausnitz, J.M. (1979) Vapor pressures of high-molecular-weight hydrocarbons.. /. Chem. Eng. Data 24, 175-178. Mac/ynski. A., Wioeniewska-Goclowska, B., Goral, M. (2004) Recommended liquid-liquid equilibrium data. Part 1. Binary alkane-water systems. J. Phys. Chem. Ref. Data 33, 549-577. [Pg.401]

Keeley, D.F., Hoffpauir, M.A., Meriweather, J.R. (1988) Solubility of aromatic hydrocarbons in water and sodium chloride solutions of different ionic strengths Benzene and Toluene. J. Chem. Eng. Data 33, 87-89. [Pg.610]

Leinonen, PJ. (1972) The Solubility of Hydrocarbons in Water. M.A.Sc. Thesis, University of Toronto, Toronto, Canada. [Pg.611]

Herbes, S.E. (1981) Rates of microbial transformation of polycyclic aromatic hydrocarbons in water and sediments in the vicinity of coal-coking waste water discharge. Appl. Environ. Microbiol. 41, 20-28. [Pg.907]

Zepp, R.G., Scholtzhauer, P.F. (1979) Photoreactivity of selected aromatic hydrocarbons in water. In Polynuclear Aromatic Hydrocarbons. Jones, P.W., Leber, P., Editors, pp. 141-58. Ann Arbor Sci. Publ. Inc., Ann Arbor, Michigan. [Pg.918]

Wasik SP, Brown RL (1973) Determination of hydrocarbon solubility in seawater and the analysis of hydrocarbons in water-extracts. In Proceedings of the conference on prevention and control of oil spills. American Petroleum Institute, Washington, DC, pp 223-237... [Pg.443]

LeRoux JH (1975) Instrument for detecting and measuring trace quantities of hydrocarbons in water. South African Patent No. 02.379 (Cl BOID GOIF)... [Pg.453]

Futoma, D.J., S.R. Smith, T.E. Smith, and J. Tanaka. 1981. Polycyclic Hydrocarbons in Water Systems. CRC Press, Boca Raton, FL. 190 pp. [Pg.1399]


See other pages where Hydrocarbon, in water is mentioned: [Pg.168]    [Pg.169]    [Pg.165]    [Pg.360]    [Pg.361]    [Pg.71]    [Pg.645]    [Pg.195]    [Pg.887]    [Pg.991]    [Pg.496]    [Pg.50]    [Pg.51]    [Pg.55]    [Pg.400]    [Pg.606]    [Pg.611]    [Pg.612]    [Pg.901]    [Pg.903]    [Pg.911]    [Pg.911]    [Pg.419]   
See also in sourсe #XX -- [ Pg.136 ]




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VLLE in Hydrocarbon-Water Systems

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