1 |
Use of polyethylene oxide to improve flotation of fine molybdenite Alvarez A, Gutierrez L, Laskowski JS Minerals Engineering, 127, 232, 2018 |
2 |
Sodium hexametaphosphate and sodium silicate as dispersants to reduce the negative effect of kaolinite on the flotation of chalcopyrite in seawater Ramirez A, Rojas A, Gutierrez L, Laskowski JS Minerals Engineering, 125, 10, 2018 |
3 |
Use of dispersants in flotation of molybdenite in seawater Rebolledo E, Laskowski JS, Gutierrez L, Castro S Minerals Engineering, 100, 71, 2017 |
4 |
Review of the flotation of molybdenite. Part I: Surface properties and floatability Castro S, Lopez-Valdivieso A, Laskowski JS International Journal of Mineral Processing, 148, 48, 2016 |
5 |
Depressing effect of flocculants on molybdenite flotation Castro S, Laskowski JS Minerals Engineering, 74, 13, 2015 |
6 |
Effect of frothers and dodecylamine on bubble size and gas holdup in a downflow column Corona-Arroyo MA, Lopez-Valdivieso A, Laskowski JS, Encinas-Oropesa A Minerals Engineering, 81, 109, 2015 |
7 |
Effect of frothers on bubble coalescence and foaming in electrolyte solutions and seawater Castro S, Miranda C, Toledo P, Laskowski JS International Journal of Mineral Processing, 124, 8, 2013 |
8 |
From amine molecules adsorption to amine precipitate transport by bubbles: A potash ore flotation mechanism Laskowski JS Minerals Engineering, 45, 170, 2013 |
9 |
Copper-molybdenum ores flotation in sea water: Floatability and frothability Ramos O, Castro S, Laskowski JS Minerals Engineering, 53, 108, 2013 |
10 |
Settling velocities of particulate systems 18: Solid flux density determination by ultra-flocculation Concha F, Rulyov NN, Laskowski JS International Journal of Mineral Processing, 104, 53, 2012 |