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2011 | 20 | 1 |

Tytuł artykułu

Using HPLC method with DAD detection for the simultaneous determination of 15 drugs in surface water and wastewater

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Using HPLC method with DAD detection for the simultaneous determination of 15 pharmaceuticals from different therapeutic groups in surface water and wastewater was proposed. The determined drugs included the analgesic non-steroidal anti-inflammatory drugs (NSAIDs) paracetamol (PAR), metamizole (MTZ), aspirin (ASP), salicylic acid (SAL), ibuprofen (IBU), ketoprofen (KET), diclofenac (DIC), and naproxen (NAP); the corticosteroids dexamethasone (DEX) and prednisolone (PRE); the β-blockers carvedilol (CAR), metoprolol (MET), propranolol (PRO), and sotalol (SOT); and the anticonvulsant carbamazepine (CBM). Three solid-phase extraction (SPE) columns were examined for the pre-concentration of water samples: the Oasis HLB, NEXUS and Bond Elut ENV. The concentration level for which each method was validated in spiked water samples was 0.2 μg/L. The Oasis HLB column yielded the best recovery efficiency. Different HPLC columns were examined to achieve the best separations with the shortest possible time. The best column, C30 and was used for the determination of drugs from water samples.. The proposed method was applied to the analysis of water samples, mostly from rivers, and can be used for screening as a rapid and low-cost analytical tool. However, to confirm the positive findings MS techniques should be applied.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

1

Opis fizyczny

p.21-28,fig.,ref.

Twórcy

  • Department of Analytical Chemistry, Chemical Faculty, Silesian University of Technology, Strzody 7, 44-100 Gliwice, Poland
autor

Bibliografia

  • 1. FARRE M., PETROVIC M., BARCELO D. Recently developed GC/MS and LC/MS methods for determining NSAIDs in water samples. Anal. Bioanal. Chem. 387, 1203, 2007.
  • 2. HONG H. N., KIM H. N., PARK K. S., LEE S. K., GU M. B. Analysis of the effects diclofenac has on Japanese medaka (Oryzias latipes) using real-time PCR. Chemosphere 67, 2115, 2007.
  • 3. ZHOU J. L., ZHANG Z. L., BANKS E., GROVER D., JIANG J. Q. Pharmaceutical residues in wastewater treatment works effluents and their impact on receiving river water. J. Hazard. Mater. 166, 655, 2009.
  • 4. KASPRZYK-HORDERN B., DINSDALE R. M., GUWY A. J. Illicit drugs and pharmaceuticals in the environment – Forensic applications of environmental data, Part 2: Pharmaceuticals as chemical markers of faecal water contamination. Environ. Pollut. 157, 1778, 2009.
  • 5. MOMPELAT S., LE BOT B., THOMAS O. Occurrence and fate of pharmaceutical products and by-products, from resource to drinking water. Environ. Int. 35, 803, 2009.
  • 6. RODIL R., QUINTANA J. B., LOPEZ-MAHIA P., MUNIATEGUI-LORENZO S., PRADA-RODRIGUEZ D. Multiresidue analytical method for the determination of emerging pollutants in water by solid-phase extraction and liquid chromatography-tandem mass spectrometry. J. Chromatogr., A 1216, 2958, 2009.
  • 7. AZZOUZ A., SOUHAIL B., BALLESTEROS E. Continuous solid-phase extraction and gas chromatographymass spectrometry determination of pharmaceuticals and hormones in water samples. J. Chromatogr., A 1217, 2956, 2010.
  • 8. MATAMOROS V., JOVER E., BAYONA J. M. Part-per-Trillion Determination of Pharmaceuticals, Pesticides, and Related Organic Contaminants in River Water by Solid-Phase Extraction Followed by Comprehensive Two-Dimensional Gas Chromatography Time-of-Flight Mass Spectrometry. Anal. Chem. 82, 699, 2010.
  • 9. GRACIA-LOR E., SANCHO J. V., HERNANDEZ F. Simultaneous determination of acidic, neutral and basic pharmaceuticals in urban wastewater by ultra high-pressure liquid chromatography-tandem mass spectrometry. J. Chromatogr., A 1217, 622, 2010.
  • 10. VERA-CANDIOTI L., GIL GARCIA M. D., MARTINEZ GALERA M., GOICOECHEA H. C. Chemometric assisted solid-phase microextraction for the determination of antiinflammatory and antiepileptic drugs in river water by liquid chromatography-diode array detection. J. Chromatogr., A 1211, 22, 2008.
  • 11. GIL GARCIA M. D., CANADA CANADA F., CULZONI M. J., VERA-CANDIOTI L., SIANO G. G., GOICOECHEA H. C., MARTINEZ GALERA M. Chemometric tools improving the determination of antiinflammatory and antiepileptic drugs in river and wastewater by solid-phase microextraction and liquid chromatography diode array detection. J. Chromatogr., A 1216, 5489, 2009.
  • 12. TOGOLA A., BUDZINSKI H. Analytical development for analysis of pharmaceuticals in water samples by SPE and GC–MS. Anal. Bioanal. Chem. 388, 627, 2007.
  • 13. MOLDOVAN Z., CHIRA R., ALDER A. C. Environmental exposure of pharmaceuticals and musk fragrances in the Somes River before and after upgrading the municipal wastewater treatment plant Cluj-Napoca, Romania. Environ. Sci. Pollut. Res. 16, (S1), S46, 2009.
  • 14. HERNANDO M. D., HEATH E., PETROVIC M., BARCELO D. Trace-level determination of pharmaceutical residues by LC-MS/MS in natural and treated waters. A pilot-survey study. Anal. Bioanal. Chem. 385, 985, 2006.
  • 15. GRUJIC S., VASILJEVIC T., LAUSEVIC M. Determination of multiple pharmaceutical classes in surface and ground waters by liquid chromatography-ion trap-tandem mass spectrometry. J. Chromatogr., A 1216, 4989, 2009.
  • 16. NEBOT C., GIBB S. W., BOYD K. G. Quantification of human pharmaceuticals in water samples by high performance liquid chromatography-tandem mass spectrometry. Anal. Chim. Acta 598, 87, 2007.
  • 17. GARCIA-AC A., SEGURA P. A., VIGLINO L., FURTOS A., GAGNON C., PREVOST M., SAUVE S. On-line solidphase extraction of large-volume injections coupled to liquid chromatography-tandem mass spectrometry for the quantitation and confirmation of 14 selected trace organic contaminants in drinking and surface water. J. Chromatogr., A 1216, 8518, 2009.
  • 18. ZHANG J., LEE H. K. Application of dynamic liquid-phase microextraction and injection port derivatization combined with gas chromatography-mass spectrometry to the determination of acidic pharmaceutically active compounds in water samples. J. Chromatogr., A 1216, 7527, 2009.
  • 19. ES’HAGHI Z. Determination of widely used non-steroidal anti-inflammatory drugs in water samples by in situ derivatization, continuous hollow fiber liquid-phase microextraction and gas chromatography-flame ionization detector. Anal. Chim. Acta 641, 83, 2009.
  • 20. RICHARDSON S. D. Water Analysis: Emerging Contaminants and Current Issues. Anal. Chem. 81, 4645, 2009.
  • 21. PIRAM A., SALVADOR A., GAUVRIT J. Y., LANTERI P., FAURE R. Development and optimisation of a single extraction procedure for the LC/MS/MS analysis of two pharmaceutical classes residues in sewage treatment plant. Talanta 74, 1463, 2008.
  • 22. GROSS M., PIZZOLATO T. M., PETROVIC M., DE ALDA M. J. J., BARCELO D. Trace level determination of β-blockers in waste waters by highly selective molecularly imprinted polymers extraction followed by liquid chromatography- quadrupole-linear ion trap mass spectrometry. J. Chromatogr., A 1189, 374, 2008.
  • 23. HERNANDO M. D., MEZCUA M., FERNANDEZ-ALBA A. R., BARCELO D. Environmental risk assessment of pharmaceutical residues in wastewater effluents, surface waters and sediments. Talanta 69, 334, 2006.
  • 24. YU Z., PELDSZUS S., HUCK P. M. Optimizing gas chromatographic-mass spectrometric analysis of selected pharmaceuticals and endocrine-disrupting substances in water using factorial experimental design. J. Chromatogr., A 1148, 65, 2007.
  • 25. VERENITCH S. S., LOWE C. J., MAZUMDER A. Determination of acidic drugs and caffeine in municipal wastewaters and receiving waters by gas chromatographyion trap tandem mass spectrometry. J. Chromatogr., A 1116, 193, 2006.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.dl-catalog-71b8a44e-6f58-4947-ac37-1e5d72571bf4
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