dc.contributor.author |
Worawit, Chanatda |
|
dc.contributor.author |
Alahmad, Waleed |
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dc.contributor.author |
Miró, Manuel |
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dc.contributor.author |
Varanusupakul, Pakorn |
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dc.date.accessioned |
2021-10-25T06:38:03Z |
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dc.identifier.uri |
http://hdl.handle.net/11201/155938 |
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dc.description.abstract |
[eng] In this study, we have developed a simple and effective hybrid extraction method based on the incorporation of raw carbon nanosorbents and octanol in the pores of a hollow-fiber membrane for improving the extraction efficiency of relatively polar organic compounds. Trihalomethanes (THMs) were used as model analytes. Three types of carbon nanosorbents (graphite, graphene, and multi-walled carbon nanotubes) were studied. The carbon sorbent incorporating membrane was used in a two-phase mode liquid-phase microextraction, with 1-octanol as the acceptor solution. Using a graphite-reinforced hollow-fiber membrane and an extraction time of 10 min, enrichment factors of 40-71 were obtained for trichloromethane, bromodichloromethane, bromoform, and chlorodibromomethane. Linear working ranges of 0.2-100 μg L−1 and limits of detection ranging from 0.01 μg L−1 (for CHCl2Br and CHClBr2) to 0.1 μg L−1 (for CHCl3) were achieved. The minimum detectable concentrations were far below the maximum concentration levels (60-200 μg L−1) set by the WHO for drinking water. The carbon-sorbent-reinforced hollow-fiber liquid-phase microextraction afforded higher extraction efficiency and shorter extraction time compared with conventional hollow-fiber liquid-phase microextraction. Finally, the method was applied to the analysis of real water samples, such as drinking water, tap water, and swimming pool water samples. |
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dc.format |
application/pdf |
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dc.relation.isformatof |
Versió postprint del document publicat a: https://doi.org/10.1016/j.talanta.2020.120902 |
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dc.relation.ispartof |
Talanta, 2020, vol. 215, num. 120902, p. 1-8 |
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dc.rights |
(c) Elsevier B.V., 2020 |
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dc.subject.classification |
54 - Química |
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dc.subject.other |
54 - Chemistry. Crystallography. Mineralogy |
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dc.title |
Combining graphite with hollow-fiber liquid-phase microextraction for improving the extraction efficiency of relatively polar organic compounds |
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dc.type |
info:eu-repo/semantics/article |
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dc.type |
info:eu-repo/semantics/acceptedVersion |
|
dc.date.updated |
2021-10-25T06:38:03Z |
|
dc.date.embargoEndDate |
info:eu-repo/date/embargoEnd/2022-08-02 |
|
dc.embargo |
2022-08-02 |
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dc.rights.accessRights |
info:eu-repo/semantics/embargoedAccess |
|
dc.identifier.doi |
https://doi.org/10.1016/j.talanta.2020.120902 |
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