International Conference on Innovative Ideas in Science 2015 | |
Optical luminescence studies of diffusion times at the potassium ethyl xanthate adsorption layer on the surface of sphalerite minerals | |
Todoran, R.^1 ; Todoran, D.^1 ; Anitas, E.M.^2,3 ; Szakács, Zs^1 | |
Technical University of Cluj Napoca, North University Centre of Baia Mare, Department of Economics and Physics, Dr. Victor Babes str., no. 62A, Baia Mare, Romania^1 | |
Joint Institute for Nuclear Research, Dubna, Russia^2 | |
Horia Hulubei National Institute of Physics and Nuclear Engineering, Bucharest-Magurele, Romania^3 | |
关键词: Adsorption kinetics; Constant temperature; Diffusion properties; Froth flotation process; Intensity measurements; Monochromatic radiation; Optical luminescence; Potassium ethyl xanthate; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/144/1/012012/pdf DOI : 10.1088/1757-899X/144/1/012012 |
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来源: IOP | |
【 摘 要 】
We propose reflectance measurements as a method for the evaluation of the kinetics of adsorption processes, to compute the diffusion times of the adsorption products at the thin layers formed at the sphalerite natural mineral-potassium ethyl xanthate solution interface. The method is based on the intensity measurement of the reflected monochromatic radiation obtained from the mineral-xanthate thin layer as a function of time. These determinations were made at the thin layer formed between the sphalerite or activated sphalerite natural minerals with potassium ethyl xanthate, for different solutions concentrations and pH values at constant temperature. Diffusion times of desorbed molecular species into the liquid bring important information about the global kinetics of the ions in this phase during adsorption processes at interfaces. Analysing the time dependence of this parameter one concluded on the diffusion properties of the xanthate molecule in the solution depending on its concentration and pH, knowing that at the initial time these molecules had a uniform spread. This method enabled us to determine that, in time interval of approximately 35 minutes to achieve dynamic equilibrium in the formation of the interface layer, one had three different kinetic behaviours of our systems. In the first 5-8 min one had highly adsorbent character, the state of equilibrium is followed by low adsorbent properties. Gaining information on the adsorption kinetics in the case of xanthate on mineral surface leads to the optimization of the industrial froth flotation process.
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