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Original Articles

Spectrophotometric determination of low levels arsenic species in beverages after ion-pairing vortex-assisted cloud-point extraction with acridine red

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Pages 259-270 | Received 18 Jul 2015, Accepted 06 Nov 2015, Published online: 07 Dec 2015

References

  • Chen B, Allen J, Corns WT, Stockwell PB. 2012. The use of ıon chromatography hydride generation atomic fluorescence spectrometry (HPLC-HG-AFS) for arsenic speciation in apple juice. In: Understanding the Geological and Medical Interface of Arsenic-As 2012: Proceedings of the 4th International Congress on Arsenic in the Environment; 2012 Jul 22–27; Cairns (Australia): CRC Press; p. 407.
  • Cheng K, Choi K, Kim J, Sung IH, Chung DS. 2013. Sensitive arsenic analysis by carrier-mediated counter-transport single drop microextraction coupled with capillary electrophoresis. Microchemical J. 106:220–225.
  • Conklin SD, Chen PE. 2012. Quantification of four arsenic species in fruit juices by ion-chromatography–inductively coupled plasma–mass spectrometry. Food Additives Contaminants: Part A. 29:1272–1279.
  • Escudero LB, Martinis EM, Olsina RA, Wuilloud RG. 2013. Arsenic speciation analysis in mono-varietal wines by on-line ionic liquid-based dispersive liquid–liquid microextraction. Food Chem. 138:484–490.
  • Feng B, Tian J, Jiao YC, Liu YG. 2013. Determination of trace arsenic in food and flavor by microwave digestion-hydride generation atomic absorption spectrometry. Food Sci. 10:64.
  • Hagiwara K, Inui T, Koike Y, Nakamura T. 2013. Determination of diphenylarsinic acid, phenylarsonic acid and ınorganic arsenic in drinking water by graphite-furnace atomic-absorption spectrometry after simultaneous separation and preconcentration with solid-phase extraction disks. Anal Sci. 29:1153–1158.
  • Hashemniaye-Torshizi R, Ashraf N, Arbab-Zavar MH. 2014. Hydride generation coupled to microfunnel-assisted headspace liquid-phase microextraction for the determination of arsenic with UV–Vis spectrophotometry. Environ Monit Assess. 186:8381–8389.
  • Hughes MF. 2002. Arsenic toxicity and potential mechanisms of action. Toxicol Lett. 133:1–16.
  • IARC. 1987. Arsenic and inorganic arsenic compounds. [ cited 2006 Aug 9]. Available from: http://www.inchem.org/documents/iarc/vol23/arsenic.html
  • Jiang Y, Hua M, Wu B, Ma H, Pan B, Zhang Q. 2014. Enhanced removal of arsenic from a highly laden industrial effluent using a combined coprecipitation/nano-adsorption process. Environ Sci Pollut Res. 21:6729–6735.
  • Joint FAO/WHO Expert Committee on Food Additives. 2010. Seventy-second meeting, Rome, 16–25 February 2010 Summary and Conclusions. Issued 16th March 2010. Rome: Joint FAO/WHO Expert Committee on Food Additives. [cited 2013 Jan 29]. Available from: http://whqlibdoc.who.int/trs/WHO_TRS_959_eng.pdf
  • Jomova K, Jenisova Z, Feszterova M, Baros S, Liska J, Hudecova D. 2011. Arsenic: toxicity, oxidative stress and human disease. J Appl Toxicol. 31:95–107.
  • Kai W, Hong M, Shu L, Zhixiu Z. 2013. Determination of trace arsenic in water by total reflection X-ray fluorescence spectrometry. J Inspection Quarantine. 2:9.
  • Liu Q, Lin C, Zhang X, Wen G, Liang A. 2014. A simple and sensitive fluorescence method for the determination of trace ozone in air using acridine red as a probe. Luminescence. 29:1102–1106.
  • Luo Y, Ma L, Zhang X, Liang A, Jiang Z. 2015. SERS detection of dopamine using label-free acridine red as molecular probe in reduced graphene oxide/silver nanotriangle sol substrate. Nanoscale Res Lett. 10:230–238.
  • Maratta A, Acosta M, Martinez LD, Pacheco PH, Gil RA. 2013. Ultratrace arsenic determination through hydride trapping on oxidized multiwall carbon nanotubes coupled to electrothermal atomic absorption spectrometry. J Anal At Spectrom. 28:916–922.
  • Pal A, Jana NR, Sau TK, Bandyopadhyay M, Pal T. 1996. Spectrofluorimetric determination of arsenic in water samples. Anal Commun. 33:315–317.
  • Sauvé S. 2014. Time to revisit arsenic regulations: comparing drinking water and rice. BMC Public Health. 14:465–477.
  • Shirkhanloo H, Rouhollahi A, Mousavi HZ. 2011. Ultra-trace arsenic determination in urine and whole blood samples by flow ınjection-hydride generation atomic absorption spectrometry after preconcentration and speciation based on dispersive liquid-liquid microextraction. Bull Korean Chem Soc. 32:3923–3927.
  • Ulusoy HI, Akcay M, Ulusoy S, Gürkan R. 2011. Determination of ultra-trace arsenic species in water samples by hydride generation atomic absorption spectrometry after cloud-point extraction. Anal Chim Acta. 703:137–144.
  • Wang Z, Nadeau L, Sparling M, Forsyth D. 2015. Determination of arsenic species in fruit juice and fruit drink products using ıon pair chromatography coupled to ınductively coupled plasma mass spectrometry. Food Anal Methods. 8:173–179.
  • Welna M, Szymczycha-Madeja A, Pohl P. 2014. Optimization of sample preparation of carrot-fruit juice for determination of antimony, arsenic, and selenium by hydride generation-ınductively coupled plasma optical emission spectrometry. Anal Lett. 47:2104–2119.
  • Woislawski S. 1953. The spectrophotometric determination of ionization constants of basic dyes. J Am Chem Soc. 75:5201–5203.
  • Wu H, Wang X, Liu B, Liu Y, Li S, Lu J, Tian J, Zhao W, Yang Z. 2011. Simultaneous speciation of inorganic arsenic and antimony in water samples by hydride generation-double channel atomic fluorescence spectrometry with on-line solid-phase extraction using single-walled carbon nanotubes micro-column. Spectrochim Acta Part B At Spectrosc. 66:74–80.
  • Yiantzi E, Psillakis E, Tyrovola K, Kalogerakis N. 2010. Vortex-assisted liquid–liquid microextraction of octylphenol, nonylphenol and bisphenol-A. Talanta. 80:2057–2062.

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