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Original Articles

Treatment with activated carbon and other adsorbents as an effective method for the removal of volatile compounds in agricultural distillates

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Pages 714-727 | Received 14 Oct 2016, Accepted 06 Jan 2017, Published online: 08 Feb 2017

References

  • Adam L, Versini G. 1996. A study on the possibilities to lower the content of methyl-alcohol in eaux-de-vie de fruits. Directorate-General XII Science, Research and Development EUR 16864 EN Published by the EUROPEAN COMMISSION Directorate-General XII Science, Research and Development B-1049 Brussels. Luxembourg: Office for Official Publications of the European Communities. ISBN 92-827-7208-X.
  • Allen SJ, Whitten L. 1998. The production and characterisation of activated carbons: a review. Dev Chem Eng Mineral Process. 6:231–261.
  • Antal MJ, Grønli M. 2003. The art, science, and technology of charcoal production. Ind Eng Chem Res. 42:1619–1640.
  • Arslanoğlu FN, Kar F, Arslan N. 2005. Adsorption of dark coloured compounds from peach pulp by using granular activated carbon. J Food Eng. 68:409–417.
  • Balcerek M, Pielech-Przybylska K, Dziekońska-Kubczak U, Patelski P, Strąk E. 2016. Fermentation results and chemical composition of agricultural distillates obtained from rye and barley grains and the corresponding malts as a source of amylolytic enzymes and starch. Molecules. 21:1320.
  • Balcerek M, Pielech-Przybylska K, Patelski P, Dziekońska-Kubczak U. 2016. The effect of the technique and parameters of distillation on the quality of grain spirits. In: Duda-Chodak A, Najgebauer-Lejko D, Drożdż I, Tarko T, editors. Monography: role of technological processes in the formation of the quality of food. Cracow (Poland): Oddział Małopolski Polskiego Towarzystwa Technologów Żywności; p. 108–117. ISBN 978-83-937001-6-5.
  • Balcerek M, Pielech-Przybylska K, Strąk E, Patelski P, Dziekońska-Kubczak U. 2016. Comparison of fermentation results and quality of the agricultural distillates obtained by application of commercial amylolytic preparations and cereal malts. Eur Food Res Technol. 242:321–335.
  • Biernacka P, Wardencki W. 2012. Volatile composition of raw spirits of different botanical origin. J Inst Brew. 118:393–400.
  • Briggs DE. 1998. Malts and malting. 1st ed. London: Blackie Academic & Profesional. Chapter 4, The biochemistry of malting; p. 223.
  • Cantanhede LB, Lima JB, Lopes GS, Farias R, Bezerra CWB. 2005. Uso de sílica e sílica-titania organofuncionalizadas para a remoção de Cu (II) em aguardentes. Ciênc Tecnol Aliment Campinas. 25:500–505.
  • Cantão FO, Melo WC, Cardoso MG, Anjos JP, Oliveira LCA. 2010. Avaliação e remoção de cobre em aguardentes de cana pela utilização dos aluminossilicatos: zeolita e bentonita. Ciȇnc Agrotecnol. 34:1109–1115.
  • Carabasa M, Ibarz A, Garza S, Barbosa-Cánovas GV. 1998. Removal of dark compounds from clarified fruit juices by adsorption processes. J Food Eng. 37:25–41.
  • Chida M, Sone Y, Tamur H. 2004. Aroma characteristics of stored tobacco cut leaves analyzed by a high vacuum distillation and canister system. J Agric Food Chem. 52:7918–7924.
  • Clarke RJ, Bakker J. 2004. Wine. Flavour chemistry. Oxford: Blackwell Publishing Ltd. Chapter 4, Volatile compounds; p. 155–158.
  • Corcho-Corral B, Olivares-Marín M, Valdes-Sánchez E, Fernández-González C, Macías-García A, Gómez-Serrano V. 2005. Development of activated carbon using vine shoots (Vitis vinifera) and its use for wine treatment. J Agric Food Chem. 53:644–650.
  • Desotec. Activated carbon [Internet]. [cited 2016 Dec 30]. Available from: http://www.desotec.com/activated-carbon/types-of-activated-carbon/properties/ash-content-determination.
  • Dubey KV, Juwarkar AA, Singh SK. 2005. Adsorption–desorption process using wood-based activated carbon for recovery of biosurfactant from fermented distillery wastewater. Biotechnol Prog. 2:860–867.
  • Dudetskij IA, Khomutov VK, Popova ZN, Guz AP. 2001. Method of purifying aqueous alcoholic solutions. RU patent 2173705.
  • Eliseev VV, Glukhova LN, Vavilov VV, Bernikova NP. 2006. Method for producing vodka. RU patent 2272830.
  • European Commission. 2008. Regulation (EC) No 110/2008 of the European parliament and of the council of 15 January 2008 on the definition, description, presentation, labelling and the protection of geographical indications of spirit drinks and repealing council regulation (EEC) No 1576/89. Oj L. 39:16–54.
  • [IARC] International Agency for Research on Cancer. 1995. Dry cleaning, some chlorinated solvents and other industrial chemicals. In: IARC monographs on the evaluation of carcinogenic risks to humans. Vol. 63. Lyon: International Agency for Research on Cancer; p. 3194–3407.
  • [IARC] International Agency for Research on Cancer. 1999. Acetaldehyde. In: IARC monographs on the evaluation of carcinogenic risks to humans, re-evaluation of some organic chemicals, hydrazine and hydrogen peroxide. Vol. 71. Lyon: International Agency for Research on Cancer; p. 319–331.
  • [IARC] International Agency for Research on Cancer. 2002. Some traditional herbal medicines, some mycotoxins, naphthalene and styrene. In: IARC monographs on the evaluation of carcinogenic risks to humans. Vol. 82. Lyon: International Agency for Research on Cancer; p. 437–452.
  • Lachenmeier DW, Haupt S, Schulz K. 2008. Defining maximum levels of higher alcohols in alcoholic beverages and surrogate alcohol products. Regul Toxicol Pharmacol. 50:313–321.
  • Ligor T, Górecka H, Buszewski B. 1998. Sorbents for trapping organic pollutants from air. Int J Occup Saf Ergon. 4:153–167.
  • Lyons TP. 2003. Production of Scotch and Irish whiskies: their history and evolution. In: Jacques KA, Lyons TP, Kelsall DR, editors. The alcohol textbook. 4th ed. Nottingham: Nottingham University Press; p. 193–220.
  • Mahattanatawee K, Goodner KL, Baldwin EA. 2005. Volatile constituents and character impact compounds of selected Florida’s tropical fruit. Proc Fla State Hort Soc. 118:414–418.
  • Matias-Guiu P, Rodríguez-Bencomo JJ, Orriols I, Pérez-Correa JR, López F. 2016. Floral aroma improvement of Muscat spirits by packed column distillation with variable internal reflux. Food Chem. 213:40–48.
  • Mattson J, Mark H, Malbin M, Weber J, Crittenden WJ. 1969. Surface chemistry of active carbon. Specific adsorption of phenols. J Colloid Interf Sci. 31:116–130.
  • Mukhin VM, Shubina NA, Abramova IM, Zubova ID, Lupascu TG. 2009. New carbonic adsorbentsfor industrial sorting purification in vodka production. Environ Eng Manag J. 8:1017–1019.
  • Muñoz-González Y, Arriagada-Acuña R, Soto-Garrido G, García-Lovera R. 2009. Activated carbons from peach stones and pine sawdust by phosphoric acid activation used in clarification and decolorization processes. J Chem Technol Biotechnol. 84:39–47.
  • Ng L-K, Hupe M, Harnois J, Moccia D. 1996. Characterisation of commercial vodkas by solid-phase microextraction and gas chromatography/mass spectrometry analysis. J Sci Food Agric. 70:380–388.
  • Nikićević N, Tešević V. 2005. Possibilities for methanol content reduction in plum brandy. J Agric Sci. 50:49–60.
  • Nykänen L, Nykänen I. 1991. Distilled beverages. In: Maarse H, editor. Volatile compounds in foods and beverages. 1st ed. New York: Marcell Dekker, Inc; p. 547–558.
  • Nykänen L, Suomalainen H. 1983. Aroma of beer, wine and distilled alcoholic beverages. Berlin (Germany): Akademie-Verlag. Chapter 2, Formation of aroma compounds by yeast; p. 3–15.
  • Oliveira RG, Wang RZ, Li TX. 2010. Adsorption characteristic of methanol in activated carbon impregnated with lithium chloride. Chem Eng Technol. 33:1679–1686.
  • Paine A, Davan AD. 2001. Defining a tolerable concentration of methanol in alcoholic drinks. Hum Exp Toxicol. 20:563–568.
  • Pielech-Przybylska K, Balcerek M, Nowak A, Patelski P, Dziekońska-Kubczak U. 2016. Influence of yeast on the yield of fermentation and volatile profile of ‘Węgierka Zwykła’ plum distillates. J Ins Brew. 122:612–623.
  • Rohsenow DJ, Howland J. 2010. The role of beverage congeners in hangover and other residual effects of alcohol intoxication: a review. Curr Drug Abuse Rev. 3:76–79.
  • Sales S, Howland J, Arnedt JT, Almeida AB, Greece J, Minsky S, Kempler CS. 2010. Intoxication with bourbon versus vodka: effects on hangover, sleep, and next-day neurocognitive performance in young adults. Alcohol Clin Exp Res. 34:509–518.
  • Schwarz KJ, Boitz LI, Methner F-J. 2012. Enzymatic formation of styrene during wheat beer fermentation is dependent on pitching rate and cinnamic acid content. J Inst Brew. 118:280–284.
  • Siříštová L, Melzoch K. 2009. Přehled metod purifikace lihu využívaných v nápojovém průmyslu. Kv Prům. 55:16–20.
  • Siříštová L, Prinosilova S, Riddellova K, Hajslova J, Melzoch K. 2012. Changes in quality parameters of vodka filtered through activated charcoal. J Food Sci. 5:474–482.
  • Soto ML, Moure A, Domínguez H, Parajó JC. 2011. Recovery, concentration and purification of phenolic compounds by adsorption: a review. J Food Eng. 105:27.
  • Spagna G, Pifferi PG, Grilli M. 1999. The stabilization of white wines against oxidation by means of non-traditional polymeric compounds. Alcologia. 11:87–95.
  • Stelmach S. 2008. The study of thermal regeneration of of used activated carbons (Badania termicznej regeneracji zużytych węgli aktywnych). Arch Gosp Odp Ochr Środ. 8:21–32.
  • Stephens R, Ling J, Heffernan TM, Heather N, Jones K. 2008. A review of the literature on the cognitive effects of alcohol hangover. Alcohol Alcohol. 43:163–170.
  • Tešević V, Nikićević N, Jovanović A, Djoković D, Vujisić L, Vučković I, Bonić M. 2005. Volatile components from old plum brandies. Food Technol Biotechnol. 43:367–372.
  • Unger KK. 1990. Packings and stationary phases in chromatographic techniques. New York: Marcel Dekker; p. 331–370.
  • Wang S, Peng Y. 2009. Natural zeolites as effective adsorbents in water and wastewater treatment. Chem Eng J. 156:11–24.
  • Yao M 2008. Removal of volatile organic compounds from indoor air using regenerative activated carbon fiber cloth [A dissertation]. Michigan Technology University; p. 89. Available from: https://books.google.pl/books?id=N1MwTuijcZ8C&printsec=frontcover&hl=pl&source=gbs_ge_summary_r&cad=0#v=onepage&q&f=false.
  • Yaylayan VA. 2006. Precursors, formation and determination of furan in food. J Verbrauch Lebensm. 1:5–9.
  • Zacaroni LM, Magriotis MZ, das Graças Cardoso M, Santiago WD, Mendonça JG, Vieira SS, Nelson DL. 2015. Natural clay and commercial activated charcoal: properties and application for the removal of copper from cachaça. Food Contr. 47:536–544.
  • Zhang Z, Nong G, Shaw CY, Gao L. 2000. Adsorption capacity of activated carbon for n-alkane VOCs. Proc Eng Solutions Indoor Air Qual Prob. 17–19:244–253. Available from: www.nrc.ca/irc/ircpubs

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