1 |
Effects of lizardite on pentlandite flotation at different pH: Implications for the role of particle-particle interaction Liu C, Zhang WC, Song SX, Li HQ Minerals Engineering, 132, 8, 2019 |
2 |
The effect of amino trimethylene phosphonic acid on the flotation separation of pentlandite from lizardite Liu C, Ai GH, Song SX Powder Technology, 336, 527, 2018 |
3 |
Kinetics of flue gas CO2 mineralization processes using partially dehydroxylated lizardite Hariharan S, Mazzotti M Chemical Engineering Journal, 324, 397, 2017 |
4 |
Dissolution of dehydroxylated lizardite at flue gas conditions: III. Near-equilibrium kinetics Hariharan S, Repmann-Werner M, Mazzotti M Chemical Engineering Journal, 298, 44, 2016 |
5 |
The significance of the serpentinite characteristics in mineral carbonation by "the AA Route" Lavikko S, Eklund O International Journal of Mineral Processing, 152, 7, 2016 |
6 |
Dissolution of dehydroxylated lizardite at flue gas conditions: I. Experimental study Werner M, Hariharan S, Zingaretti D, Baciocchi R, Mazzotti M Chemical Engineering Journal, 241, 301, 2014 |
7 |
Dissolution of dehydroxylated lizardite at flue gas conditions: II. Kinetic modeling Hariharan S, Werner M, Hanchen M, Mazzotti M Chemical Engineering Journal, 241, 314, 2014 |
8 |
The solution chemistry of carbonate and implications for pyrite flotation Feng B, Luo XP Minerals Engineering, 53, 181, 2013 |
9 |
The effect of lizardite surface characteristics on pyrite flotation Feng B, Feng QM, Lu YP Applied Surface Science, 259, 153, 2012 |
10 |
Mechanisms for the improved flotation of ultrafine pentlandite and its separation from lizardite in saline water Peng YJ, Bradshaw D Minerals Engineering, 36-38, 284, 2012 |