Preview

Alternative Energy and Ecology (ISJAEE)

Advanced search
Open Access Open Access  Restricted Access Subscription or Fee Access

THE SEPARATION METHOD OF A POLYDISPERSE GRANULAR LAYER ON FRACTION

https://doi.org/10.15518/isjaee.2017.07-09.105-111

Abstract

The method of removal of fine fraction from a polydisperse granular layer is experimentally investigated in order to increase its uniformity on the sizes of particles. This method is based on the earlier found out unusual effect consist in moving down the cylinder (tube) in fluidization layer; then inside the cylinder, the conditions for intensive pneumotransport of a firm phase are created. Consequently, the height, on which the disperse environment inside a tube rises, exceeds height of fluidization layer. Distinguishing feature of this method is absence of environmental contamination (a layer where of the fine fraction leaves is slightly motionless), and also is far less power consumption as energy is not spent on removal and transportation of minor particles, energy is spent only on minimal fluidization removal from a layer of fraction.

 

About the Authors

V. N. Korolev
Ural Federal University named after the first President of Russia B.N. Yeltsin
Russian Federation
D.Sc. (engineering), Professor of the Heat Engineering department


I. S. Parychev
Ural Federal University named after the first President of Russia B.N. Yeltsin
Russian Federation
Postgraduate of the Heat Engineering department


A. V. Ostrovskaya
Ural Federal University named after the first President of Russia B.N. Yeltsin
Russian Federation
Ph.D. (engineering), Associate Professor of the Heat Engineering department


S. A. Neyskaya
Ural Federal University named after the first President of Russia B.N. Yeltsin
Russian Federation
Ph.D. (engineering), Associate Professor of the Heat Engineering department


References

1. Hemery Y., Holopainen U., Lamp A.-M. Potential of dry fractionation of wheat bran for the development of food ingredients, part II: Electrostatic separation of particles. Journal of Cereal Science. 2011;(53/1): 9– 18 (in Eng.).

2. Surowiak A., Brozek M. A physical model of separation process by means of jigs. Physico-chemical Problems of Mineral Processing. 2016;(52/1):228–243 (in Eng.).

3. Paramonova O.L., Deryabin V.A., Farafontova E.P. Study of glass batch components segregation. Glass and Ceramics. 2012;(68/9–10):319–322 (in Eng.).

4. Semenov E.V. K voprosu o razdelenii vzvesi v vertikal’nom vozdušnom potoke. Teoret. osnovy him. tehnologii. 2009;(43/2):208–217 (in Russ.).

5. Jaklich M., Kochevar K., Srchih S., Dreu R. Granular matter transport in vertical pipes: The influence of pipe outlet conditions on gravity-driven granular flow. Acta Chimica Slovenica. 2016;(63/1):62–76 (in Eng.).

6. Lu C.H., Shi Q.F., Yang L., Sun G. Air-driven segregation in binary granular mixtures with same size but different densities. Chinese Physics Letters. 2008;(25/7):2542–2545 (in Eng.).

7. Schmidt M., Rieck C., Bueck A. Experimental investigation of process stability of continuous spray fluid-ized bed layering with external product separation. Chemical Engineering Science. 2015;(137):466–475 (in Eng.).

8. Wang Q., Yin W., Zhao B. The segregation behaviors of fine coal particles in a coal beneficiation fluidized bed. Fuel Processing Technology. 2014;(124):28– 34 (in Eng.).

9. Krasnyh V.Yu., Tolmachev E.M., Korolev V.N. Kvazikapillârnye èffekty v psevdoožižennyh sredah. Inženernaâ fizika. 2007;(2):19–22 (in Russ.).

10. Krasnyh V.Yu., Korolev V.N. Optimizaciâ ènergetičeskih zatrat na obrazovanie psevdoožižennogo sloâ pri sohranenii vysokoj intensivnosti vnešnego teploobmena. Promyšlennaâ ènergetika. 2006;(12):30– 33 (in Russ.).

11. Krasnykh V.Yu., Korolev V.N., Ostrovskaya A.V., Nagornov S.A. Pneumatic transportation of dispersed medium through a vertical tube immersed into a fluidized bed. Thermal engineering. 2013;(60/11):787– 790 (in Eng.).

12. Korolev V.N., Krasnyh V.Yu., Ostrovskaya A.V., Nagornov S.A. Teploobmen tel, častično pogružennyh v psevdoožižennyj sloj, i ego intensifikaciâ. International Scientific Journal for Alternative Energy and Ecology (ISJAEE). 2015;(4):102–106 (in Russ.).

13. Korolev V.N., Amarskaya I.B., Barmina O.A., Ostrovskaya A.V., Krasnyh V.Yu. Sposob udaleniâ melkih častic iz krupnozernistogo sloâ sypučih materialov. Pat. 2594494 R.F., MPK V07V 4/08 // Izobreteniâ. Poleznye modeli. 2016. Bul. # 23 (in Russ.).


Review

For citations:


Korolev V.N., Parychev I.S., Ostrovskaya A.V., Neyskaya S.A. THE SEPARATION METHOD OF A POLYDISPERSE GRANULAR LAYER ON FRACTION. Alternative Energy and Ecology (ISJAEE). 2017;(7-9):105-111. (In Russ.) https://doi.org/10.15518/isjaee.2017.07-09.105-111

Views: 1836


ISSN 1608-8298 (Print)