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An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water

An optimized method is presented using liquid-liquid extraction and derivatization for the extraction of iodoacetic acid (IAA) and other haloacetic acids (HAA(9)) and direct extraction of iodoform (IF) and other trihalomethanes (THM(4)) from drinking water, followed by detection by gas chromatograph...

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Detalles Bibliográficos
Autores principales: Liu, Xiaolin, Wei, Xiao, Zheng, Weiwei, Jiang, Songhui, Templeton, Michael R., He, Gengsheng, Qu, Weidong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3628783/
https://www.ncbi.nlm.nih.gov/pubmed/23613747
http://dx.doi.org/10.1371/journal.pone.0060858
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author Liu, Xiaolin
Wei, Xiao
Zheng, Weiwei
Jiang, Songhui
Templeton, Michael R.
He, Gengsheng
Qu, Weidong
author_facet Liu, Xiaolin
Wei, Xiao
Zheng, Weiwei
Jiang, Songhui
Templeton, Michael R.
He, Gengsheng
Qu, Weidong
author_sort Liu, Xiaolin
collection PubMed
description An optimized method is presented using liquid-liquid extraction and derivatization for the extraction of iodoacetic acid (IAA) and other haloacetic acids (HAA(9)) and direct extraction of iodoform (IF) and other trihalomethanes (THM(4)) from drinking water, followed by detection by gas chromatography with electron capture detection (GC-ECD). A Doehlert experimental design was performed to determine the optimum conditions for the five most significant factors in the derivatization step: namely, the volume and concentration of acidic methanol (optimized values  = 15%, 1 mL), the volume and concentration of Na(2)SO(4) solution (129 g/L, 8.5 mL), and the volume of saturated NaHCO(3) solution (1 mL). Also, derivatization time and temperature were optimized by a two-variable Doehlert design, resulting in the following optimized parameters: an extraction time of 11 minutes for IF and THM(4) and 14 minutes for IAA and HAA(9); mass of anhydrous Na(2)SO(4) of 4 g for IF and THM(4) and 16 g for IAA and HAA(9); derivatization time of 160 min and temperature at 40°C. Under optimal conditions, the optimized procedure achieves excellent linearity (R(2) ranges 0.9990–0.9998), low detection limits (0.0008–0.2 µg/L), low quantification limits (0.008–0.4 µg/L), and good recovery (86.6%–106.3%). Intra- and inter-day precision were less than 8.9% and 8.8%, respectively. The method was validated by applying it to the analysis of raw, flocculated, settled, and finished waters collected from a water treatment plant in China.
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spelling pubmed-36287832013-04-23 An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water Liu, Xiaolin Wei, Xiao Zheng, Weiwei Jiang, Songhui Templeton, Michael R. He, Gengsheng Qu, Weidong PLoS One Research Article An optimized method is presented using liquid-liquid extraction and derivatization for the extraction of iodoacetic acid (IAA) and other haloacetic acids (HAA(9)) and direct extraction of iodoform (IF) and other trihalomethanes (THM(4)) from drinking water, followed by detection by gas chromatography with electron capture detection (GC-ECD). A Doehlert experimental design was performed to determine the optimum conditions for the five most significant factors in the derivatization step: namely, the volume and concentration of acidic methanol (optimized values  = 15%, 1 mL), the volume and concentration of Na(2)SO(4) solution (129 g/L, 8.5 mL), and the volume of saturated NaHCO(3) solution (1 mL). Also, derivatization time and temperature were optimized by a two-variable Doehlert design, resulting in the following optimized parameters: an extraction time of 11 minutes for IF and THM(4) and 14 minutes for IAA and HAA(9); mass of anhydrous Na(2)SO(4) of 4 g for IF and THM(4) and 16 g for IAA and HAA(9); derivatization time of 160 min and temperature at 40°C. Under optimal conditions, the optimized procedure achieves excellent linearity (R(2) ranges 0.9990–0.9998), low detection limits (0.0008–0.2 µg/L), low quantification limits (0.008–0.4 µg/L), and good recovery (86.6%–106.3%). Intra- and inter-day precision were less than 8.9% and 8.8%, respectively. The method was validated by applying it to the analysis of raw, flocculated, settled, and finished waters collected from a water treatment plant in China. Public Library of Science 2013-04-16 /pmc/articles/PMC3628783/ /pubmed/23613747 http://dx.doi.org/10.1371/journal.pone.0060858 Text en © 2013 Liu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Xiaolin
Wei, Xiao
Zheng, Weiwei
Jiang, Songhui
Templeton, Michael R.
He, Gengsheng
Qu, Weidong
An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water
title An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water
title_full An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water
title_fullStr An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water
title_full_unstemmed An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water
title_short An Optimized Analytical Method for the Simultaneous Detection of Iodoform, Iodoacetic Acid, and Other Trihalomethanes and Haloacetic Acids in Drinking Water
title_sort optimized analytical method for the simultaneous detection of iodoform, iodoacetic acid, and other trihalomethanes and haloacetic acids in drinking water
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3628783/
https://www.ncbi.nlm.nih.gov/pubmed/23613747
http://dx.doi.org/10.1371/journal.pone.0060858
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