Convectiv drying of disperesd materials before the thermochemical processing

Author:

Timerbaev N. F.1,Safin R. G.2,Ziatdinova D. F.2,Stepanova T. O.2

Affiliation:

1. Kazan State Power Engineering University

2. Kazan National Research Technological University

Abstract

Drying of wood materials is one of the most important processes not only of wood processing, but also of many other industries. Drying processes involve the removal of moisture as a result of a phase transition from a liquid or solid to a gaseous state. This is due to the high energy intensity and duration of the process, especially for colloidal materials. The latter is due to the fact that with intensive drying the quality of the finished product often decreases, for example, when drying lumber cracks and warps occur, which is unacceptable in the manufacture of thermally modified products. In cases of thermochemical processing of dispersed materials, the quality of raw materials is determined only by the final moisture content of dispersed materials.Questions of heat and mass transfer during the drying of materials were carried out by Girsh M., Lykov A.V., Lurye M.V., Sazhin B.S., Dolinsky A.A., Golubev L.G., Rudobashta S.P., Shubin G.S., Romankov PG, Ginzburg A.S., Mikhailov N.V., Mushtayev VI. and etc. The paper deals with convective technology of dispersive materials. The zone of convective drying of dispersed materials is presented. Experimental and mathematical modeling of the drying process of wet dispersed materials before thermochemical processing was carried out. The results of theoretical and experimental studies of changes in temperature and humidity in the drying bin are presented. The nature of changes in temperature and humidity of dispersed particles in a drying bin was determined. The effective height of the layer in the counter-current dryer is determined by calculation, depending on the moisture content of the fuel and the temperature of the exhaust flue gases.

Publisher

Kazan State Power Engineering University

Subject

Pharmacology (medical),Complementary and alternative medicine,Pharmaceutical Science

Reference15 articles.

1. Timerbaeva AL. Review of technical solutions for the implementation of the process of heattreatment of shreddedwood .Wood Industry. 2017;1:57-63.

2. Safin RG. Installation for the production of charcoal Pat 2582696 of the Russian Federation, IPC C10B 1/04. Declare 29. 12. 2014.publ. 27.04.2016.

3. Mettler MS. Top ten fundamental challenges of biomass pyrolysis for biofuels. Energy Environ Science. 2012(5): 797-809.

4. Taymarov MA, Timerbaev NF., Khusnullin II., Shulaev MV. Energy-saving installation for thermochemical decomposition of waste woodworking enterprises. Proceedings of the higher educational institutions. Energy sector problems. 2012;3-4:88-93.

5. Timerbaev NF. Modeling the process of direct-flow gasification of wood waste .Bulletin of Kazan University of Technology. 2011. № 7.

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