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Articles

Variability in the levels of fungicide residues in final beer as they are influenced by various sequences of agrochemicals used for treatment on hops

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Pages 655-666 | Received 27 Feb 2023, Accepted 05 Apr 2023, Published online: 24 Apr 2023

References

  • Anastassiades M, Lehotay SJ, Štajnbaher D, Schenck FJ. 2003. Fast and easy multiresidue method employing acetonitrile extraction/partitioning and “Dispersive Solid-Phase Extraction” for the determination of pesticide residues in produce. J AOAC Int. 86(2):412–431. doi:10.1093/jaoac/86.2.412
  • Carvalho FP. 2017. Pesticides, environment, and food safety. Food Energy Secur. 6(2):48–60. doi:10.1002/fes3.108
  • Čejka P, Dvořák J, Čulík J, Jurková M, Horák T, Kellner V. 2009. The behaviour of toxic metals in the brewing process. Kvasný Průmysl. 55(4):100–105. doi:10.18832/kp2009010
  • Chrisfield BJ, Hopfer H, Elias RJ. 2020. Impact of copper fungicide use in hop production on the total metal content and stability of wort and dry-hopped beer. Beverages. 6(3):48. doi:10.3390/beverages6030048
  • Dušek M, Jandovská V, Olšovská J. 2018a. Analysis of multiresidue pesticides in dried hops by LC–MS/MS using QuEChERS extraction together with dSPE clean-up. J Inst Brew. 124(3):222–229. doi:10.1002/jib.490
  • Dušek M, Jandovská V, Olšovská J. 2018b. Tracking, behavior and fate of 58 pesticides originated from hops during beer brewing. J Agric Food Chem. 66(38):10113–10121. doi:10.1021/acs.jafc.8b03416
  • Dušek M, Vostřel J, Jandovská V, Mikyška A. 2023. Post-harvest recognition of various fungicide treatments for downy mildew of hops using comprehensive pesticide residue monitoring. Int J Pest Manag. 69(2):164–174. doi:10.1080/09670874.2020.1864507
  • EBC 2018. Method 8.8–bitterness of wort. In: Analytica EBC. EBC Analysis Committee. Nürnberg: Fachverlag Hans Carl.
  • EBC 2018. Method 7.5–bitter substances in hops and hop products: lead conductance value and total resin, soft resin and hard resin. EBC Analysis Committee. Nürnberg: Fachverlag Hans Carl.
  • EBC 2020. Method 9.8 - bitterness of beer. In: Analytica EBC. EBC Analysis Committee. Nürnberg: Fachverlag Hans Carl.
  • Grasswitz TR, James DG. 2009. Influence of hop yard ground flora on invertebrate pests of hops and their natural enemies. J Appl Entomol. 133(3):210–221. doi:10.1111/j.1439-0418.2008.01336.x
  • Hengel MJ, Shibamoto T. 2002. Method development and fate determination of pesticide-treated hops and their subsequent usage in the production of beer. J Agric Food Chem. 50(12):3412–3418. doi:10.1021/jf020089n
  • Inoue T, Nagatomi Y, Suga K, Uyama A, Mochizuki N. 2011. Fate of pesticides during beer brewing. J Agric Food Chem. 59(8):3857–3868. doi:10.1021/jf104421q
  • McCallan SEA. 1949. The nature of the fungicidal action of copper and sulfur. Bot Rev. 15(9):629–643. doi:10.1007/BF02861716
  • Miyake Y, Koji K, Matsuki H, Tajima R, Ono M. 1999. Fate of agrochemical residues, associated with malt and hops, during brewing. J Am Soc Brew Chem. 60(3):110–115.
  • Morimoto M, Kishimoto T, Kobayashi M, Yako N, Iida A, Wanikawa A, Kitagawa Y. 2010. Effects of Bordeaux mixture (copper sulfate) treatment on blackcurrant/muscat-like odors in hops and beer. J Am Soc Brew Chem. 68(1):30–33. doi:10.1094/ASBCJ-2009-1118-01
  • Navarro S, Vela N. 2009. Fate of pesticide residues during brewing. In: Preedy VR, editor. Beer in health and disease prevention. Cambridge (MA): Academic Press; p. 415–428.
  • Pscheidt JW. 2023. Copper-based bactericides and fungicides. Pacific Northwest Pest Management Handbooks. [accessed 2023 January 10]:[7 p.]. https://pnwhandbooks.org/plantdisease/pesticide-articles/copper-based-bactericides-fungicides.
  • Turner SF, Benedict CA, Darby H, Hoagland LA, Simonson P, Sirrine JR, Murphy KM. 2011. Challenges and opportunities for organic hop production in the United States. J Agron. 103(6):1645–1654. doi:10.2134/agronj2011.0131
  • Wietstock P, Kunz T, Waterkamp H, Methner FJ. 2015. Uptake and release of Ca, Cu, Fe, Mg, and Zn during beer production. J Am Soc Brew Chem. 73(2):179–184. doi:10.1094/ASBCJ-2015-0402-01

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