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Establishment of the Analytical Method for Residual Pharmaceuticals in Raw Water Using Online Sample Preparation and High Resolution Orbitrap LC/ESI-MS  

Hwang, Yoonjung (Water Quality Research Institute)
Sin, Sanghee (Water Quality Research Institute)
Park, Jongsuk (Water Quality Research Institute)
Publication Information
Abstract
In this study, the analytical method for 27 residual pharmaceuticals in raw water was developed. Online sample preconcentration/extraction and analysis with high resolution Orbitrap mass spectrometry (LC-ESI/Orbitrap MS) were performed. The calibration curves showed good linearities (above $r^2$ = 0.998) in the range of 5 ~ 1,000 ng/L. The method detection limit and the limit of quantification were 1.1 ~ 10.0 ng/L and 3.4 ~ 31.7 ng/L, respectively. Recoveries of the target compounds were between 70.1% and 115.8% (except cefadroxil, cefradine, vancomycin, and iopromide (50.2 ~ 67.0%)). The optimized analytical method can be useful to determine the residual pharmaceuticals in raw water.
Keywords
High resolution; Online sample preconcentration; LC-ESI/Orbitrap MS; Residual pharmaceuticals;
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Times Cited By KSCI : 3  (Citation Analysis)
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1 Lin, W. C., Chen, H. C., and Ding, W. H. (2005). Determination of Pharmaceuticals Residues in Waters by Solid-Phase Extraction and Large-Volume On-Line Derivatization with Gas Chromatography-Mass Spectrometry, Journal of Chromatography A, 1065(2), pp. 279-285.   DOI   ScienceOn
2 Loraine, G., A., and Pettigrove, M. E. (2006). Seasonal Variations in Concentrations of Pharmaceuticals and Personal Care Products in Drinking Water and Reclaimed Wastewater in Southern Califormia, Environmental Science and Technology, 40(3), pp. 687-695.   DOI   ScienceOn
3 Nakada, N., Kiri, K., Shinohara, H., Harada, A., Kuroda, K., and Takizawa, S. (2008). Evaluation of Pharmaceuticals and Personal Care Products as Water-Soluble Molecular Markers of Sewage, Environmental Science and Technology, 42(17), pp. 6347-6353.   DOI   ScienceOn
4 National Institute of Environmental Research (NIER). (2009a). A Study on Analytical Method of Residual Pharmaceutical and Survey (II), pp. 1-145. [Korean Literature]
5 National Institute of Environmental Research (NIER). (2009b). Manual on Analytical Method of Pharmaceutical in Environment (Water Quality Section), 11-1480523-000433-01, pp. 1-117. [Korean Literature]
6 Oh, H. K., Kagawa, C., Urase, T., Simazaki, D., and Kunikane, S. (2006). Removal of Ionic and Non-Ionic Pharmaceuticals Using Granular Activated Carbon, Journal of Korean Society of Environmental Engineers, 28(11), pp. 1192-1197. [Korean Literature]
7 Park, J. I., Kim, M. H., Choi, K. H., Kim, Y. H., and Kim, M. Y. (2007). Environmental Risk Assessment of Pharmaceuticals: Model Application for Estimating Pharmaceutical Exposures in the Han River Basin, KEI-2007-RE-06, Korea Environment Institute, pp. 1-2. [Korean Literature]
8 Perez-Estrada, L. A., Malato, S., Gernjak, W., Agüera, A., Thurmann, E. M., Ferrer, I., and Fernández-Alba, A. R. (2005). Photo-Fenton Degradation of Diclofenac: Identification of Main Intermediates and Degradation Pathway, Environmental Science and Technology, 39(21), pp. 8300-8306.   DOI   ScienceOn
9 Son, H. J. and Jang, S. H. (2011). Occurrence of Residual Pharmaceuticals and Fate, Residue and Toxic Effect in Drinking Water Resources, Journal of Korean Society of Environmental Engineers, 33(6), pp. 453-479. [Korean Literature]
10 Ternes, T. A., Meisenheimer, M., Mcdowell, D., Sacher, F., Brauch, H. J., Haist-Gulde, B., Preuss, G., Wilmw, U., and Zulei-Seibert, N. (2002). Removal of Pharmaceuticals During Water Treatment, Environmental Science and Technology, 36(17), pp. 3855-3863.   DOI   ScienceOn
11 USEPA (2007). Method 1694: Pharmaceuticals and Personal Care Products in Water, Soil, Sediment and Biosolids by HPLC/MS/MS, EPA-821-R-002, pp. 1-72.
12 Vieno, N. M., Tuhkanen, T., and Kronberg, L. (2005). Seasonal Variation in the Occurrence of Pharmaceuticals in Effluents from a Sewage Treatment Plant and in the Recipient Water, Environmental Science and Technology, 39(21), pp. 8220-8226.   DOI   ScienceOn
13 Choi, K. H., Kim, P. G., and Park, J. I. (2009). Pharmaceuticals in Environment and Their Implication in Environmental Health, Journal of Korean Society of Environmental Health, 35(6), pp. 433-446. [Korean Literature]   DOI   ScienceOn
14 Halling-Sørensen, B., Nors Nielsen, S., Lanzky, P. F., Ingerslev, F., Holten Lützhøft, H. C., and Jørgensen, S. E. (1998). Occurrence, Fate and Effects of Pharmaceutical Substances in the Environment - a Review, Chemosphere, 36(2), pp. 357-393.   DOI   ScienceOn
15 Jang, J. H., Kim, Y. S., and Choi, J. W. (2012). Fast and Accurate Determination of Algal Toxins in Water using Online Preconcentration and UPLC-Orbitrap Mass Spectrometry, Journal of Korean Society on Water Environment, 28(6), pp. 843-850. [Korean Literature]
16 Kim, J. G. (2006). Proteomics on Mass Spectrometry, Molecular and Cellular Biology News, 18(3), pp. 25-30. [Korean Literature]
17 Kolpin, D. W., Furlong, E, T., Meyer, M. T., Thurman, E. M., Zaugg, S. D., Barber, L. B., and Buxton, H. T. (2002). Pharmaceuticals, Hormones, and Other Organic Wastewater Contaminants in U.S. Streams, 1999-2000: A National Reconnaissance, Environmental Science and Technology, 36(6), pp. 1202-1211.   DOI   ScienceOn