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Trace analysis of resin acids in surface waters by direct injection liquid chromatography time of flight mass spectrometry and triple quadrupole mass spectrometry.
Brunswick, Pamela; Blajkevitch, Oxana; Chow, Liane; MacInnis, Ceara; van Aggelen, Graham; Kim, Marcus; Shang, Dayue.
Affiliation
  • Brunswick P; Pacific and Yukon Laboratory for Environmental Testing, Science & Technology Branch, Environment and Climate Change, Canada North Vancouver, British Columbia, Canada. Electronic address: pamela.brunswick@ec.gc.ca.
  • Blajkevitch O; Pacific and Yukon Laboratory for Environmental Testing, Science & Technology Branch, Environment and Climate Change, Canada North Vancouver, British Columbia, Canada.
  • Chow L; Pacific and Yukon Laboratory for Environmental Testing, Science & Technology Branch, Environment and Climate Change, Canada North Vancouver, British Columbia, Canada.
  • MacInnis C; Pacific and Yukon Laboratory for Environmental Testing, Science & Technology Branch, Environment and Climate Change, Canada North Vancouver, British Columbia, Canada.
  • van Aggelen G; Pacific and Yukon Laboratory for Environmental Testing, Science & Technology Branch, Environment and Climate Change, Canada North Vancouver, British Columbia, Canada.
  • Kim M; Agilent Technologies Inc., Ontario, Canada.
  • Shang D; Pacific and Yukon Laboratory for Environmental Testing, Science & Technology Branch, Environment and Climate Change, Canada North Vancouver, British Columbia, Canada. Electronic address: dayue.shang@ec.gc.ca.
J Chromatogr A ; 1656: 462558, 2021 Oct 25.
Article in En | MEDLINE | ID: mdl-34597902
ABSTRACT
A rapid and sensitive liquid chromatography (LC) quadrupole time of flight (QTOF) method has been developed for the determination of resin acid concentrations in aqueous pulp and paper effluent related samples. Calibration R2 of ≥0.995 for twelve resin acids, namely dehydroabietic, 8(14)-abietenic, dihydroisopimaric, levopimaric, neoabietic, pimaric, sandaracopimaric, abietic, isopimaric, palustric, chlorodehydroabietic, and dichlorodehydroabietic acids, was demonstrated in the range 1 µgL-1 to 40 µgL-1. An improved lower limit of quantitation was achieved without use of complex sample extraction and clean-up procedures undertaken by other published methods. Excellent precision and accuracy results were achieved for dehydroabietic, chlorodehydroabietic, dichlorodehydroabietic, isopimaric (integrated inclusive of all C20H30O2 resin acids), dihydroisopimaric and 8(14)-abietenic resin acids, with t-99 percentile detection limits spanning the range 0.05 to 0.07 µgL-1. While measurement for the C20H30O2 resin acids by isopimaric equivalence is considered semi-quantitative and could be an under estimate for the abietic acid component, the developed method demonstrated clear advantage over time consuming, hazardous, and unstable derivatization procedures used for gas chromatography and capillary electrophoresis. The developed LC/QToF method was successfully transferred to an LC triple quadrupole mass spectrometer for routine high throughput trace level analysis. Real world samples, including sea water and estuary water, demonstrated excellent spike recoveries by this procedure, indicating that the method is well suited to the monitoring of industrially derived resin acids in environmental surface waters. While no interferences were observed during routine sample analysis using myristic-1-13C acid and palmitic-1-13C acid internal standards, these were later substituted by myristic-d27 and palmitic-d31 acid in order to improve method robustness for environmental samples where endogenous parent fatty acids could be present.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Resins, Plant / Acids Language: En Journal: J Chromatogr A Year: 2021 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Resins, Plant / Acids Language: En Journal: J Chromatogr A Year: 2021 Document type: Article
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