Study on the Vibration Lamella Thickener and its Application in Mineral Processing Plant

Article Preview

Abstract:

The development status and research progress of inclined plate sedimentation equipment, as well as the research progress of how to prevent the blockage of sedimentation channel were discussed. The main disadvantages of traditional inclined plate thickener were analyzed. A kind of new type lamella thickener which could vibrate the inclined plate was introduced. The core technologies of the vibration lamella thickener are that the inclined plate sedimentation channels are integrated and modularized, the integral sloping plate group module are suspension supported by using springs and each module mounted an independent mechanical vibration excite. By implementing an intermittent high frequency weak vibration to the sloping plate group module, the regular automatic cleaning of the surface of inclined plate was carried out, which could prevent the fine materials adhesive to the oblique plate and guarantee the settlement channel is not blocked, so as to achieve the purpose of long-term stable operation of the equipment. Vibration lamella thickener has been used in many concentrators successfully, including the classification of feed pulp, desliming and thicken of middle materials, dewatering and thickening of concentrate and tailing, and paste discharge of tailing thicken at al.. It is highly valued from clients by their good application in practical production.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

333-341

Citation:

Online since:

November 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] W. Q. Wang: Metallic Ore Dressing Abroad. [5](1998), p.5.

Google Scholar

[2] X. L. Wang, Y. P. Huang, X. L. Zhou and W. Q. Wang: Metal mine. [2] (1999), p.21.

Google Scholar

[3] X. L. Wang: Doctoral Dissertation of Kunming Uni. of Sci. and Tec. (2003).

Google Scholar

[4] X. L. Zhou, W. B. Zhang and W. Q. Wang: Mining and Metallurgical Engineering. Vol.25[1] (2005), p.23.

Google Scholar

[5] B. J. Gutierrez, V. U. Monter, G. A. Zamudio, C. D. Rascon, A. T. Pastrana and G. S. Garcia. Mexico Patent, MX19960004952 (1996).

Google Scholar

[6] H. Gerhard, J. Britta, B. Volker, R. Andreas. Europe Patent, 20020809 (2002).

Google Scholar

[7] S. Reinhard and W. Herbert. Europe Patent, 20070006515 (2007).

Google Scholar

[8] W. Kenneth. Sweden Patent. WO1995SE00236 (1995).

Google Scholar

[9] K.P. Galvin, A. Callen, J. Zhou and E. Doroodchi: Minerals Engineering. Vol.18 (2005), p.19.

Google Scholar

[10] G. N. Ranlam, K.P. Galvin: Minerals Engineering. Vol.14 [9] (2001), p.1081.

Google Scholar

[11] K.P. Galvin, A.M. Callen and S. Spear: Minerals Engineering. Vol.23 (2010), p.339.

Google Scholar

[12] S.A. Macpherson, S.M. Iveson and K.P. Galvin: Minerals Engineering. Vol. 23 (2010), p.74.

Google Scholar

[13] S.A. Macpherson, S.M. Iveson and K.P. Galvin: Minerals Engineering. Vol. 24 (2001), p.1046.

Google Scholar

[14] L. Z. Yao: Mining machinery. [12] (1990), p.46.

Google Scholar

[15] W. Q. Wang, X. L. Zhou, Y. P. Huang, W. B. Fu and X. J. Wang: Chinese Patent ZL 99117370.8(1999).

Google Scholar

[16] X. L. Zhou: Thesis for master degree of Kunming Uni. of Sci. and Tech. (1993).

Google Scholar

[17] W. Q. Wang, X. L. Zhou, Y. P. Huang, X .L. Wang and X. J. Wan: Proceedings of the Fourth National Symposium on mineral processing equipment .China Mining. [8](2001).

Google Scholar

[18] Z. M. Zhang and W. B. Fu: Proceedings of the Fourth National Symposium on mineral processing equipment. China Mining. [8] (2001).

Google Scholar

[19] J. Ziolo: Chemical Engineering Science. Vol. 51 [1] (1996), p.149

Google Scholar

[20] P. D. Thompson and K.P. Galvin: Minerals Engineering. Vol.10 [1] (1997), p.97

Google Scholar

[21] D. Nelson, J. Liu and K.P. Galvin: Minerals Engineering.Vol.10 [8](1997), p.871

Google Scholar

[22] X. L. Wang, Y. P. Huang, X. L. Zhou and W. Q. Wang: Metal mine. [3] (1999), p.21

Google Scholar

[23] X. L. Zhou: Chinese Patent. ZL 200710066389.X (2007).

Google Scholar

[24] X. L. Zhou, W. Y. Hu, Z. Y. Long, S. M. Wen and W. B. Zhang: International Patent. PCT /CN2011/070163 (2011).

Google Scholar

[25] X. L. Zhou: The Ninth National Conference on mineral Processing. Modern mining (Special Edition). [9] (2009), p.55

Google Scholar