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Minerals Flotation and Separation Techniques

TopicLeading institutions, researchers & key papers

This cluster of papers focuses on the study of nanobubbles and their applications in water treatment, particularly in flotation processes. It covers topics such as the generation, stability, and properties of nanobubbles, their interactions with hydrophobic surfaces, and their role in mineral flotation and other water treatment techniques.

20
Works

How has Minerals Flotation and Separation Techniques's publication output changed over time?

ScholarIQpublication output · 1982–2025

Output grew0% over the shown period — from 1 works in 1982 to 1 in 2025.

1
1
1
1
2
1
1
1982201120122014201520212025

What are the most-cited papers on Minerals Flotation and Separation Techniques?

ScholarIQmost cited works
Particle–bubble interaction and attachment in flotation
David I. Verrelli, P.T.L. Koh, Anh V. Nguyen
S33892871. 2011169 Citations
Particle shape effects in flotation. Part 1: Microscale experimental observations
David I. Verrelli, Warren J. Bruckard, P.T.L. Koh, M. Philip Schwarz, Bart Follink
S181849944. 2014124 Citations
Long-Term Stability of Different Kinds of Gas Nanobubbles in Deionized and Salt Water
Yali Zhou, Zhenyao Han, Chunlin He, Qin Feng, Kaituo Wang, Youbin Wang, Nengneng Luo, Gjergj Dodbiba, Yuezhou Wei, Akira Otsuki, Toyohisa Fujita
Materials. 2021113 CitationsOPEN ACCESS
A comparison of methods for measuring the induction time for bubble–particle attachment
David I. Verrelli, Boris Albijanic
S181849944. 201569 Citations

Where is Minerals Flotation and Separation Techniques research published, and who funds it?

ScholarIQvenues & funding sources

TOP JOURNALS

S143179485890
S181849944287
S33892871169

TOP FUNDERS

National Science Foundation
NIH
Wellcome Trust
European Research Council
Funder breakdown is a member featureSign up free to unlock

How much of the research on Minerals Flotation and Separation Techniques is open access?

ScholarIQopen access share
25%OPEN ACCESS
Gold
13%
Green
0%
Hybrid
0%
Bronze
13%
Closed
75%

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The volumetric liquid-phase mass transfer coefficient in bubble columns
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Particle shape effects in flotation. Part 1: Microscale experimental observations
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