Zitieren

1. Adadi, P., Kovaleva, E., Glukhareva, T., Shatunova, S.A. & Petrov, A.S. (2017). Production and analysis of non-traditional beer supplemented with sea buckthorn. Agron. Res. 15, 1831–1845. https://doi.org/10.15159/AR.17.060. Search in Google Scholar

2. Belcar, J., Matłok, N. & Gorzelany, J. (2020). Technological assessment of winter cultivar of common wheat (Triticum aestivum L.) and winter barley (Hordeum vulgare L.) for pale malt production. Acta Univ. Cib. Series E: Food Technology. 1(24), 89-98. https://doi.org/10.2478/aucft-2020-0024. Search in Google Scholar

3. Benzie, O. F. F. & Strain, J. J. (1996). The ferric Reducing Ability of Plasma (FRAP) as a Measure of „Antioxidant Power”: The FRAP Assay. Analytical Biochemistry. 239, 70-76. DOI: 10.1006/abio.1996.02928660627 Open DOISearch in Google Scholar

4. Bogdan, P., Kordialik-Bogacka, E. (2016). Antioxidant activity of beers produced with the addition of unmalted quinoa and amaranth. FOOD. Science. Technology. Quality. 3 (106), 118-126. Search in Google Scholar

5. Byeon, Y. S., Lim, S.-T., Kim, H.-J., Kwak, H. S. & Kim, S. S. (2021). Quality Characteristics of Wheat Malts with Different Country of Origin and Their Effect on Beer Brewing. J. Food Quality. ID:2146620. Search in Google Scholar

6. Cao, L., Zhou, G., Guo, P. & Li, Y. (2011). Influence of pasteurising intensity on beer flavour stability. J. Inst. Brew. 117, 587–592. https://doi.org/10.1002/j.2050-0416.2011.tb00508.x Search in Google Scholar

7. Depraetere, S., Delvaux, F., Coghe, S. & Delvaux, F. R. (2004). Wheat Variety and Barley Malt Properties: Influence on Haze Intensity and Foam Stability of Wheat Beer. J. Inst. Brew. 110(3), 200-206. https://doi.org/10.1002/j.2050-0416.2004.tb00203.x Search in Google Scholar

8. Ditrych, M., Kordialik-Bogacka, E. & Czyżowska, A. (2015). Antiradical and Reducing Potential of Commercial Beer. Czech J. Food Sci. 33(3), 261-266. doi: 10.17221/658/2014-CJFS Open DOISearch in Google Scholar

9. European Brewery Convention. Analytica EBC. (2004). Hans Carl Getrӓnke-Fachverlag, Nürnberg. Search in Google Scholar

10. Evans, D. E., Sheehan, M. C. & Stewart, D.C. (1999). The Impact of Malt Derived Proteins on Beer Foam Quality. Part II: The Influence of Malt Foam – positive Proteins and Non-starch Polysaccharides on Beer Foam Quality. J. Inst. Brew. 105, 2, 171-178.10.1002/j.2050-0416.1999.tb00016.x Search in Google Scholar

11. Faltermaier A., Waters D., Becker T., Arendt E. & Gastl M. (2014). Common wheat (Triticum aestivum L.) and its use as a brewing cereal – a review. J. Inst. Brew. 120, 1-15. http://doi.org/10.1002/jib.107.10.1002/jib.107 Search in Google Scholar

12. FAO. (2019). FAOSTAT Statistical Database; Food and Agriculture Organization of the United Nations (FAO). Available online: http://www.fao.org/faostat/en/#data/QC (accessed on 19 September 2021). Search in Google Scholar

13. Fogarasi, A.-L., Kun, S., Tankó, G., Stefanovits-Bányai, É., & Hegyesné-Vecseri, B. (2015). A comparative assessment of antioxidant properites, total phenolic content of einkorn, wheat, barley and their malts. Food Chem. 167, 1-6. DOI: 10.1016/j.food-chem.2014.06.084 Open DOISearch in Google Scholar

14. Gudio, L., A., Curto, P., Bovin N., Benismail, C., Goncalves, A. & Barro, S. (2007). Predicting the organoleptic stability of beer from chemical data using multivariate analysis. E. Food Res. and Techn. 226, 57-62.10.1007/s00217-006-0508-5 Search in Google Scholar

15. Habschied, K., Košir, I. N., Krstanović, V., Kumrić, G. & Mastanjević, K. (2021). Beer Polyphenols – Bitterness, Astrigency, and Off-Flavors. Beverages. 7, 38. https://doi.org/10.3390/beverages7020038 Search in Google Scholar

16. He, G., Du, J., Zhang, K., Wei, G. & Wang, W. (2012). Antioxidant capability and potableness of fresh cloudy wheat beer stored at different temperatures. J. Inst. Brew. 118, 386-392. DOI 10.1002/jib.5 Open DOISearch in Google Scholar

17. Hoff, S., Lund, M.N., Petersen, M. A., Frank, W., & Andersen, M.L. (2013). Storage stability of pasteurized non-filtered beer. J. Inst. Brew. 119, 172–181. DOI:10.1002/jib.85 Open DOISearch in Google Scholar

18. Hu, X., Jin, Y., & Du, J. (2019). Differences in protein content and foaming properties of cloudy beers based on wheat malt content. J. Inst. Brew. 125, 235-241. https://doi.org/10.1002/jib.550. Search in Google Scholar

19. Ignatov, I., Kaneva, M., Valchev, M., & Vasileva, N. (2014). Research on the fermentation process in wheat beer. PROCEEDINGS OF THE INTERNATIONAL CONFERENCE „AGRI-FOOD SCIENCES, PROCESSES AND TECHNOLOGIES”. AGRI FOOD. May 14-15, 2014. Sibiu, Romania. Search in Google Scholar

20. Kucharczyk, K., Tuszyński, T., & Żyła, K. (2018). Effect of yeast dose on the content of amino acids (FAN) in beer produced in multi-tank technology. Adv. in Food Proces. Tech. 2; 20-24. Search in Google Scholar

21. Kucharczyk, K. & Tuszyński, T. 2017. Presence of diacetyl and 2,3-pentaodione in beer. FOOD. Science. Technology. Quality. 24,4(113), 17-26. DOI: 10.15193/zntj/2017/113/207 Open DOISearch in Google Scholar

22. Kunze, W. (2010). Technology Brewing and Malting. 4th updated edition. VLB Berlin, Germany, ISBN 978-3-921690-64-2. Search in Google Scholar

23. Mascia, I., Fadda, C., Dostálek, P., Olšovská, J., & Del Caro, A. (2014). Preliminary characterization of an Italian craft durum wheat beer. J. Inst. Brew. 120, 495-499. DOI 10.1002/jib.176. Open DOISearch in Google Scholar

24. Michalski, J., Sąsiadek, W., & Owsiany, K. (2018). Characteristics of selected chemical compounds responsible for the organoleptic characteristics of beer. Scientific works of the Univ. of Economics in Wrocław. 542, 106-121. Search in Google Scholar

25. Oliver, G. (2012). A mesa do mestre-cervejeiro: descobrindo os prazeres das cervejas e das comidas verdadeiras. Editora Senac São Paulo, ISBN: 9788539601745. Search in Google Scholar

26. PN-A-79093-6:2000. Beer - Research methods - Determination of carbon dioxide content. (2000). Polish Committee for Standardization. Search in Google Scholar

27. Re, R., Pellegrini, N., Proteogente, A., Pannala, A., Yang, M., & Rice-Evans, C. (1999). Antioxidants activity applying and improved ABTS radical cation decolorization assay. Free Radical Biology & Medicine. 26, 9/10; 1231-1237. DOI: 10.1016/s0891-5849(98)00315-3 Open DOISearch in Google Scholar

28. Szwajgier, D. (2009). Content of Individual Phenolic Acids in Worts and Beers and their Possible Contribution to the Antiradical Activity of Beer. J. Inst. Brew. 115(3), 243-252. DOI:10.1002/j.2050-0416.2009.tb00376.x Open DOISearch in Google Scholar

29. Verstrepen, K. G. Derdelinck, J., Dufour, J. Winderick, J. Thevelein, I. Pretorius, F. & Delvaux F. T. (2003). Flavor-active esters: Adding fruitiness to beer. J. of Bioscience and Bioengineering. 96, 2, 110–118. Search in Google Scholar

30. Wu, X., Du, J., Zhang, K., Ju, Y., & Jin, Y. (2015). Changes in protein molecular weight during cloudy wheat beer brewing. J. Inst. Brew.121, 137-144. DOI 10.1002/jib.198 Open DOISearch in Google Scholar

31. Xie, L., Jin, Y., Du, J., & Zhang, K. (2014). Water – soluble protein molecular weight distribution and effects on wheat malt quality during malting. J. Inst. Brew. 120, 399-403. DOI 10.1002/jib.182. Open DOISearch in Google Scholar

32. Yin, H., Deng, Y., He, Y., Dong, J., Lu, J., & Chang, Z. (2017). A preliminary study of the quality attributes of a cloudy wheat beer treated by flash pasteurization. J. Inst. Brew. 123, 366-372. DOI 10.1002/jib.429. Open DOISearch in Google Scholar

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