Optical luminescence studies of diffusion times at the potassium ethyl xanthate adsorption layer on the surface of sphalerite minerals

R. Todoran, D. Todoran, E. Anitas, Z. Szakács
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Abstract

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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闪锌矿物表面乙基黄药钾吸附层扩散次数的光学发光研究
我们提出反射率测量作为一种评估吸附过程动力学的方法,以计算吸附产物在闪锌矿天然矿物-乙基黄药钾溶液界面形成的薄层上的扩散次数。该方法是基于测量矿物-黄原酸盐薄层反射单色辐射随时间变化的强度。在不同的溶液浓度和pH值的恒温条件下,用乙基黄药钾在闪锌矿或活化闪锌矿天然矿物之间形成的薄层上进行测定。解吸分子物种进入液体的扩散时间为界面吸附过程中该相离子的整体动力学提供了重要信息。通过分析这个参数的时间依赖性,我们可以得出黄原药分子在溶液中的扩散特性,这取决于它的浓度和pH值,知道在初始时刻这些分子具有均匀的扩散。该方法使我们能够确定,在大约35分钟的时间间隔内实现界面层形成的动态平衡,我们的系统有三种不同的动力学行为。在前5 ~ 8 min具有高吸附性,随后达到平衡状态,吸附性较低。获得黄原药在矿物表面的吸附动力学信息有助于工业泡沫浮选工艺的优化。
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