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Original Articles

Reduction in pesticide residue levels in olives by ozonated and tap water treatments and their transfer into olive oil

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Pages 128-136 | Received 29 Jun 2015, Accepted 27 Oct 2015, Published online: 26 Nov 2015

References

  • Amvrazi EG, Albanis TA. 2008. Multiclass pesticide determination in olives and their processing factors in olive oil: comparison of different olive oil extraction systems. J Agric Food Chem. 56:5700–5709.
  • Beyer A, Biziuk M. 2008. Applications of sample preparation techniques in the analysis of pesticides and PCBs in food. Food Chem. 108:669–680.
  • Cabras P, Angioni A, Garau VL, Melis M, Piris FM, Karim M, Minelli EV. 1997. Persistence of insecticide residues in olives and olive oil. J Agric Food Chem. 45:2244–2247.
  • Cabras P, Angioni A. 2000. Pesticide residues in grapes, wine, and their processing products. J Agric Food Chem. 48:967–973.
  • CFR. 2015. Code of federal regulations [Internet]. Title 21, Part 173. Sec. 173.368 Ozone. [cited 2015 Oct 19]. Available from: http://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfcfr/CFRSearch.cfm?fr=173.368
  • Cunha SC, Lehotay SJ, Mastovska K, Fernandes JO, Beatriz M, Oliveira PP. 2007. Evaluation of the QuEChERS sample preparation approach for the analysis of pesticide residues in olives. J Sep Sci. 30:620–632.
  • Cunha SC, Lehotay SJ, Mastovska K, Fernandes JO, Beatriz M, Oliveira PP. 2010. Sample preparation approaches for the analysis of pesticide residues in olives and olive oils. In: Preedy VR, Watson RR, editors. Olives and olive oil in health and disease prevention. San Diego (CA): Elsevier Inc.; p. 653–666.
  • Dömötörova M, Matisova E. 2008. Fast gas chromatography for pesticide residues analysis. J Chromatogr A. 1207:1–16.
  • EFSA. 2011. Modification of the existing MRLs for cypermethrin in various crops [Internet]. EFSA J. 9:2280. European Food Safety Authority (EFSA), Parma, Italy. [ cited 2015 Jan 2]. Available from: http://www.efsa.europa.eu/sites/default/files/scientific_output/files/main_documents/2280.pdf
  • EPA. 2001. The incorporation of water treatment effects on pesticide removal and transformation in food quality protection act (FQPA) [Internet]. Office of Pesticide Programs, United States Environmental Protection Agency (USEPA). [ cited 2015 Jan 2]. Available from: http://www.epa.gov/oppfead1/trac/science/water_treatment.pdf
  • EU. 1991. Commission Regulation (EEC) 2568/91 on the characteristics of olive oil and olive-residue oil and on the relevant methods of analysis [Internet]. [ cited 2015 Oct 19]. Available from: http://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:31991R2568&from=en
  • Ferreira JR, Tainha AM. 2006. Organophosphorus insecticide residues in olives and olive oil. Pestic Sci. 14:167–172.
  • Garcia-Reyes JF, Ferrer C, Gomez-Ramos MJ, Molina-Diaz A, Fernandez-Alba AR. 2007. Determination of pesticide residues in olive oil and olives. Trends Anal Chem. 26:239–251.
  • Hercegova A, Dömötörova M, Kruzlicova D, Matisova E. 2006. Comparison of sample preparation methods combined with fast gas chromatography- mass spectrometry for ultratrace analysis of pesticide residues in baby food. J Sep Sci. 29:1102–1109.
  • Hwang ES, Cash JN, Zabik MJ. 2001. Postharvest treatments for the reduction of mancozeb in fresh apples. J Agric Food Chem. 49:3127–3132.
  • Ikeura H, Kobayashi F, Tamaki M. 2011. Removal of residual pesticide, fenitrothion, in vegetables by using ozone microbubbles generated by different methods. J Food Eng. 103:345–349.
  • Jiang Y, Shibamoto T, Li Y, Pan C. 2013. Effect of household and commercial processing on acetamiprid, azoxystrobin and methidathion residues during crude rapeseed oil production. Food Addit Contam A. 30:1279–1286.
  • Karaca H, Velioglu YS. 2007. Ozone applications in fruits and vegetables processing. Food Rev Int. 23:91–106.
  • Karaca H, Walse SS, Smilanick JL. 2012. Effect of continuous 0.3 µl/L gaseous ozone exposure on fungicide residues on table grape berries. Postharvest Biol Tec. 64:154–159.
  • Kruve A, Künnapas A, Herodes K, Leito I. 2008. Matrix effects in pesticide multi-residue analysis by liquid chromatography-mass spectrometry. J Chromatogr A. 1187:58–66.
  • Kusvuran E, Yildirim D, Mavruk F, Ceyhan M. 2012. Removal of chlorpyrifos ethyl, tetradifon and chlorothalonil pesticide residues from citrus by using ozone. J Hazard Mater. 241–242:287–300.
  • Ong KC, Cash JN, Zabik MJ, Siddiq M, Jonesc AL. 1996. Chlorine and ozone washes for pesticide removal from apples and processed apple sauce. Food Chem. 55:153–160.
  • QuEChERS. 2011. Variation of QuEChERS-method for vegetable oil samples (fatty matrix without water) [Internet]. [ cited 2014 Jan 2]. Available from: http://quechers.cvua-stuttgart.de/pdf/q-oil.pdf
  • SANCO. 2013. Guidance document on analytical quality control and validation procedures for pesticide residues analysis in food and feed (SANCO/12571) [Internet]. [ cited 2014 Dec 2]. Available from: http://ec.europa.eu/food/plant/pesticides/guidance_documents/docs/qualcontrol_en.pdf
  • Spurlock F, Lee M. 2008. Synthetic pyrethroid use patterns, properties and environmental effects. In: Gan J, Spurlock F, Dendley P, Weston DP, editors. Synthetic pyrethroids. ACS symposium series. Washington (DC): American Chemical Society; Vol. 991. p. 3–25.
  • Suslow TV. 2004. Ozone applications for postharvest disinfection of edible horticultural crops. Oakland (CA): University of California Publication 8133; p. 1–8.
  • Turkish Food Codex. 2010. Legislation of olive oil and pomace oil. Legislation no. 2010/35 [Internet]. [ cited 2015 Oct]. Available from: www.resmigazete.gov.tr/eskiler/2010/08/2010807-9.htm
  • Whangchai K, Uthaibutra J, Phiyanalinmat S, Pengphol S, Nomura N. 2011. Effect of ozone treatment on the reduction of chlorpyrifos residues in fresh lychee fruits. Ozone-Sci Eng. 33:232–235.
  • Wu J, Lan C, Chan GYS. 2009. Organophosphorus pesticide ozonation and formation of oxon intermediates. Chemosphere. 76:1308–1314.
  • Wu J, Luan T, Lan C, Lo WH, Chan GYS. 2007a. Efficacy evaluation of low-concentration of ozonated water in removal of residual diazinon, parathion, methyl-parathion and cypermethrin on vegetable. J Food Eng. 79:803–809.
  • Wu J, Luan T, Lan C, Lo TWH, Chan GYS. 2007b. Removal of residual pesticides on vegetable using ozonated water. Food Control. 18:466–472.
  • Xu L. 1999. Use of ozone to improve the safety of fresh fruits and vegetables. Food Technol. 53:58–62.

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