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J Chromatogr Sci ; 49(6): 469-75, 2011.
Article in English | MEDLINE | ID: mdl-21682997

ABSTRACT

Analysis of dissolved methane, ethylene, acetylene, and ethane in water is crucial in evaluating anaerobic activity and investigating the sources of hydrocarbon contamination in aquatic environments. A rapid chromatographic method based on phase equilibrium between water and its headspace is developed for these analytes. The new method requires minimal sample preparation and no special apparatus except those associated with gas chromatography. Instead of Henry's Law used in similar previous studies, partition coefficients are used for the first time to calculate concentrations of dissolved hydrocarbon gases, which considerably simplifies the calculation involved. Partition coefficients are determined to be 128, 27.9, 1.28, and 96.3 at 30°C for methane, ethylene, acetylene, and ethane, respectively. It was discovered that the volume ratio of gas-to-liquid phase is critical to the accuracy of the measurements. The method performance can be readily improved by reducing the volume ratio of the two phases. Method validation shows less than 6% variation in accuracy and precision except at low levels of methane where interferences occur in ambient air. Method detection limits are determined to be in the low ng/L range for all analytes. The performance of the method is further tested using environmental samples collected from various sites in Nova Scotia.


Subject(s)
Chromatography, Gas/methods , Fresh Water/chemistry , Hydrocarbons, Acyclic/analysis , Acetylene/analysis , Ethane/analysis , Ethylenes/analysis , Gases/analysis , Linear Models , Methane/analysis , Nova Scotia , Reproducibility of Results , Sensitivity and Specificity , Temperature
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