화학공학소재연구정보센터
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No. Article
1 Flotation frother mixtures: Decoupling the sub-processes of froth stability, froth recovery and entrainment
McFadzean B, Marozva T, Wiese J
Minerals Engineering, 85, 72, 2016
2 Effect of nanoparticles on froth stability and bubble size distribution in flotation
Cilek EC, Karaca S
International Journal of Mineral Processing, 138, 6, 2015
3 The link between froth surface grade and flotation feed grade
Hadler K
Minerals Engineering, 78, 32, 2015
4 The implications of the froth recovery at the laboratory scale
Amelunxen P, Sandoval G, Barriga D, Amelunxen R
Minerals Engineering, 66-68, 54, 2014
5 Visualization of flow in froth
Blonde P, Finch JA
Minerals Engineering, 35, 16, 2012
6 The use of machine vision to predict flotation performance
Morar SH, Harris MC, Bradshaw DJ
Minerals Engineering, 36-38, 31, 2012
7 Frothing behavior of aqueous solutions of oleic acid
Atrafi A, Gomez CO, Finch JA, Pawlik M
Minerals Engineering, 36-38, 138, 2012
8 The use of the froth surface lamellae burst rate as a flotation froth stability measurement
Morar SH, Bradshaw DJ, Harris MC
Minerals Engineering, 36-38, 152, 2012
9 The effect of froth depth on air recovery and flotation performance
Hadler K, Greyling M, Plint N, Cilliers JJ
Minerals Engineering, 36-38, 248, 2012
10 The role of frother on the detachment of particles from bubbles
Ata S
Minerals Engineering, 24(5), 476, 2011