Citation: | WU Ai-xiang, YANG Ying, WANG Yi-ming, CHEN Hui, WANG Yong. Mathematical modelling of underflow concentration in a deep cone thickener and analysis of the dynamic compaction mechanism[J]. Chinese Journal of Engineering, 2018, 40(2): 152-158. doi: 10.13374/j.issn2095-9389.2018.02.004 |
[2] |
Henriquez J, Simms P. Dynamic imaging and modelling of multilayer deposition of gold paste tailings. Miner Eng, 2009, 22(2): 128
|
[3] |
Doucet J, Paradis R. Thickening/mud stacking technology-an environmental approach to residue management // Proceedings of the 13th International Seminar on Paste and Thickened Tailings. Nedlands, 2010: 3
|
[4] |
Verburg R. Potential environmental benefits of surface paste disposal // Proceedings of the 13th International Seminar on Paste and Thickened Tailings. Nedlands, 2010: 231
|
[7] |
Lake P, Boris M E, Gollaher T. High density paste thickener in Siberia // Proceedings of the 13th International Seminar on Paste and Thickened Tailings. Nedlands, 2010: 411
|
[8] |
Rosart J W. Advantages of bolted tank construction for paste thickeners // Proceedings of the 13th International Seminar on Paste and Thickened Tailings. Nedlands, 2010: 403
|
[9] |
Huynh L, Beattie D A, Fornasiero D, et al. Effect of polyphosphate and naphthalene sulfonate formaldehyde condensate on the rheological properties of dewatered tailings and cemented paste backfill. Miner Eng, 2006, 19(1): 28
|