Lynch, A.J.; Watt, J.S.; Finch, J.A.; Harbort, G.E. (2007). "History of flotation technology". In Jameson, G.J.; Fuerstenau, M.C.; Yoon, R.-H. (eds.). Froth flotation : a century of innovation. Littleton, Colo.: Society for Mining, Metallurgy, and Exploration. p. 65. ISBN978-0873352529. Retrieved 17 November 2021.
Fuerstenau, D.W. (2007). "A century of developments in the chemistry of flotation technology". In Jameson, G.J.; Fuerstenau, M.C.; Yoon, R.-H. (eds.). Froth flotation : a century of innovation. Littleton, Colo.: Society for Mining, Metallurgy, and Exploration. p. 3. ISBN978-0873352529. Retrieved 17 November 2021.
Elizabeth R. Burkhardt "Potassium and Potassium Alloys" in Ullmann's Encyclopedia of Industrial Chemistry, Wiley-VCH, 2006. doi:10.1002/14356007.a22_031.pub2
Roy, Subrata; Datta, Amlan; Rehani, Sandeep (2015). "Flotation of copper sulphide from copper smelter slag using multiple collectors and their mixtures". International Journal of Mineral Processing. 143: 43–49. doi:10.1016/j.minpro.2015.08.008.
Mouat, Jeremy (March 1996). "The Development of the Flotation Process: Technological Change and the Genesis of Modern Mining, 1898-1911". Australian Economic Review. 36 (1): 3–31. doi:10.1111/aehr.361001.
Nguyen, Anh V (12 June 1996). "On modelling of bubble–particle attachment probability in flotation". International Journal of Mineral Processing. 53 (4): 225–249. doi:10.1016/S0301-7516(97)00073-2.
Shahbazi, B. (2010). "Bubble–particle collision and attachment probability on fine particles flotation". Chemical Engineering and Processing: Process Intensification. 49 (6): 622–627. Bibcode:2010CEPPI..49..622S. doi:10.1016/j.cep.2010.04.009.
Shahbazi, B. (2010). "Bubble–particle collision and attachment probability on fine particles flotation". Chemical Engineering and Processing: Process Intensification. 49 (6): 622–627. Bibcode:2010CEPPI..49..622S. doi:10.1016/j.cep.2010.04.009.