Author:
Ivashchuk O.S., ,Atamanyuk V.M.,Gnativ Z.Ya.,Chyzhovych R.A.,Zherebetskyi R.R.
Abstract
The article describes the results of experimental studies on kinetics of the filtration drying of corn distillery stillage, which has previously proven its effectiveness in drying other crops and various dispersed materials. The experimental data are presented in the form of graphical plots describing the change of material moisture over time depending on the temperature of the drying agent (60, 70, 80 and 900С) and the layer height (40, 80, 120 and 160 mm). The obtained results are analyzed and the changes that occur on the filtration drying curves depending on the change in the material layer height and drying agent temperature are described. It is shown that the filtration drying time of alcohol distillery stillage increases with increasing the material layer height. It is determined that the drying potential remains constant at the same parameters of the drying agent. It is shown that the rate of moisture removal during the filtration drying does not depend on the material layer height. It is found that the average residual moisture of corn alcohol distillery stillage is 3.140.06 wt.%; this value satisfies industrial needs for an increase in its shelf life and the possibility of long-term storage and transportation.
Publisher
SHEI Ukrainian State University of Chemical Technology
Subject
Materials Chemistry,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference14 articles.
1. 1. Glovyn NM. Vplyv spyrtovoyi bardy na agrokhimichni vlastyvosti gruntu [Effect of alcohol on bards agrochemical soil properties]. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies. Series "Agricultural Sciences". 2017; 19(74): 192-195. (in Ukrainian). doi: 10.15421/nvlvet7442.
2. 2. Beltran FJ, Alvarez PM, Rodriguez EM, Garcia-Araya JF, Rivas J. Treatment of high strength distillery wastewater (cherry stillage) by integrated aerobic biological oxidation and ozonation. Biotechnol Prog. 2001; 17(3): 462-467. doi: 10.1021/bp010021c.
3. 3. Nataraj SK, Hosamani KM, Aminabhavi TM. Distillery wastewater treatment by the membrane-based nanofiltration and reverse osmosis processes. Water Res. 2006; 40(12): 2349-2356. doi: 10.1016/j.watres.2006.04.022.
4. 4. Wilkie AC. Chapter 16. Biomethane from biomass, biowaste, and biofuels. In: Wall JD, Harwood CS, Demain A, editors. Bioenergy. ASM Press; 2008. p. 195-205.
5. 5. Mazur AH, Tsikhanovska VM, Hontaruk YV. Perspektyvy virobnytsva bіogazu na spirtovykh zavodakh Vіnnyts'koyi oblastі [Prospects of the production of biogas at the factories of Vinnyts'ya region, Ukraine]. Naukovі Pratsі Іnstytutu Bіoenergetychnykh Kul'tur і Tsukrovykh Buryakіv. 2013; 19: 245-249. (in Ukrainian).
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