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      Insights into the influence of temperature on the adsorption behavior of sodium oleate and its response to flotation of quartz

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          COMPASS:  An ab Initio Force-Field Optimized for Condensed-Phase ApplicationsOverview with Details on Alkane and Benzene Compounds

          H H Sun (1998)
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            High-concentration zeta potential measurements using light-scattering techniques

            Zeta potential is the key parameter that controls electrostatic interactions in particle dispersions. Laser Doppler electrophoresis is an accepted method for the measurement of particle electrophoretic mobility and hence zeta potential of dispersions of colloidal size materials. Traditionally, samples measured by this technique have to be optically transparent. Therefore, depending upon the size and optical properties of the particles, many samples will be too concentrated and will require dilution. The ability to measure samples at or close to their neat concentration would be desirable as it would minimize any changes in the zeta potential of the sample owing to dilution. However, the ability to measure turbid samples using light-scattering techniques presents a number of challenges. This paper discusses electrophoretic mobility measurements made on turbid samples at high concentration using a novel cell with reduced path length. Results are presented on two different sample types, titanium dioxide and a polyurethane dispersion, as a function of sample concentration. For both of the sample types studied, the electrophoretic mobility results show a gradual decrease as the sample concentration increases and the possible reasons for these observations are discussed. Further, a comparison of the data against theoretical models is presented and discussed. Conclusions and recommendations are made from the zeta potential values obtained at high concentrations.
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              An overview of the beneficiation of iron ores via reverse cationic flotation

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                Author and article information

                Contributors
                Journal
                International Journal of Mining Science and Technology
                International Journal of Mining Science and Technology
                Elsevier BV
                20952686
                March 2022
                March 2022
                : 32
                : 2
                : 399-409
                Article
                10.1016/j.ijmst.2021.12.006
                d79b5370-fdf7-42d8-8f8a-9d19ffbd633d
                © 2022

                https://www.elsevier.com/tdm/userlicense/1.0/

                http://creativecommons.org/licenses/by-nc-nd/4.0/

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