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Investigating the chlorination of acidic pharmaceuticals and by-product formation aided by an experimental design methodology.
Water Res. 2010 Jan; 44(1):243-55.WR

Abstract

The degradation of seven acidic drugs and two metabolites during chlorination was investigated by liquid chromatography-mass spectrometry (LC-MS). A triple-quadrupole (QqQ) system was used to follow the time course of the pharmaceuticals and by-products, while a quadrupole time-of-flight (Q-TOF) system was also used for the identification of the by-products. Under strong chlorination conditions (10mg/L Cl(2), 24h), only four of the target compounds were significantly degraded: salicylic acid, naproxen, diclofenac and indomethacine. The degradation kinetics of these four compounds were investigated at different concentrations of chlorine, bromide and pH by means of a Box-Behnken experimental design. Depending on these factors, measured pseudo-first order half-lives were in the ranges: 23-573h for salicylic acid, 13-446min for naproxen, 5-328min for diclofenac and 0.4-13.4min for indomethacine. Also, it was observed that chlorine concentration was the overall most significant factor, followed by the bromide concentration (except for indomethacine), resulting in increased degradation kinetics as they are increased. The degradation path of salicylic acid, naproxen and diclofenac consisted of aromatic substitution of one or two hydrogens by chlorine and/or bromide. Moreover, for diclofenac, two other by-products corresponding to a decarboxylation/hydroxylation pathway from the monohalogenated products were also identified. On the other hand, indomethacine degradation did not lead to halogenation products but to oxidation ones. The investigation of these by-products in real samples by LC-MS/MS (QqQ) showed that the halogenated derivates of salicylic acid occurred in all the drinking water and wastewater samples analysed.

Authors+Show Affiliations

Department of Analytical Chemistry, Nutrition and Food Sciences, IIAA - Institute for Food Analysis and Research, University of Santiago de Compostela, 15782 Santiago de Compostela, Spain. jb.quintana@usc.esNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

19800649

Citation

Quintana, José Benito, et al. "Investigating the Chlorination of Acidic Pharmaceuticals and By-product Formation Aided By an Experimental Design Methodology." Water Research, vol. 44, no. 1, 2010, pp. 243-55.
Quintana JB, Rodil R, López-Mahía P, et al. Investigating the chlorination of acidic pharmaceuticals and by-product formation aided by an experimental design methodology. Water Res. 2010;44(1):243-55.
Quintana, J. B., Rodil, R., López-Mahía, P., Muniategui-Lorenzo, S., & Prada-Rodríguez, D. (2010). Investigating the chlorination of acidic pharmaceuticals and by-product formation aided by an experimental design methodology. Water Research, 44(1), 243-55. https://doi.org/10.1016/j.watres.2009.09.018
Quintana JB, et al. Investigating the Chlorination of Acidic Pharmaceuticals and By-product Formation Aided By an Experimental Design Methodology. Water Res. 2010;44(1):243-55. PubMed PMID: 19800649.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Investigating the chlorination of acidic pharmaceuticals and by-product formation aided by an experimental design methodology. AU - Quintana,José Benito, AU - Rodil,Rosario, AU - López-Mahía,Purificación, AU - Muniategui-Lorenzo,Soledad, AU - Prada-Rodríguez,Darío, Y1 - 2009/09/10/ PY - 2009/05/19/received PY - 2009/08/29/revised PY - 2009/09/05/accepted PY - 2009/10/6/entrez PY - 2009/10/6/pubmed PY - 2010/2/4/medline SP - 243 EP - 55 JF - Water research JO - Water Res VL - 44 IS - 1 N2 - The degradation of seven acidic drugs and two metabolites during chlorination was investigated by liquid chromatography-mass spectrometry (LC-MS). A triple-quadrupole (QqQ) system was used to follow the time course of the pharmaceuticals and by-products, while a quadrupole time-of-flight (Q-TOF) system was also used for the identification of the by-products. Under strong chlorination conditions (10mg/L Cl(2), 24h), only four of the target compounds were significantly degraded: salicylic acid, naproxen, diclofenac and indomethacine. The degradation kinetics of these four compounds were investigated at different concentrations of chlorine, bromide and pH by means of a Box-Behnken experimental design. Depending on these factors, measured pseudo-first order half-lives were in the ranges: 23-573h for salicylic acid, 13-446min for naproxen, 5-328min for diclofenac and 0.4-13.4min for indomethacine. Also, it was observed that chlorine concentration was the overall most significant factor, followed by the bromide concentration (except for indomethacine), resulting in increased degradation kinetics as they are increased. The degradation path of salicylic acid, naproxen and diclofenac consisted of aromatic substitution of one or two hydrogens by chlorine and/or bromide. Moreover, for diclofenac, two other by-products corresponding to a decarboxylation/hydroxylation pathway from the monohalogenated products were also identified. On the other hand, indomethacine degradation did not lead to halogenation products but to oxidation ones. The investigation of these by-products in real samples by LC-MS/MS (QqQ) showed that the halogenated derivates of salicylic acid occurred in all the drinking water and wastewater samples analysed. SN - 1879-2448 UR - https://www.unboundmedicine.com/medline/citation/19800649/Investigating_the_chlorination_of_acidic_pharmaceuticals_and_by_product_formation_aided_by_an_experimental_design_methodology_ L2 - https://linkinghub.elsevier.com/retrieve/pii/S0043-1354(09)00598-3 DB - PRIME DP - Unbound Medicine ER -