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Kinetics study of platinum and base metals precipitation in gas–liquid chloride system

机译:铂和碱金属沉淀在煤气 - 氯化物体系中的动力学研究

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The use of dissolved sulphur from gaseous phase was tested for its ability to precipitate platinum ions in chloride system with alterations in the parameters such as metal ion concentration, hydrochloric acid concentration, pressure and temperature. The precipitation process was analysed on the basis of mass transfer coefficient, diffusivity models and also by absorption kinetic models. The maximum physical and reactive absorption capacity for sulphur dioxide was found to be 0.015 and 0.018?mol/L, respectively, at 298.15?K and 1.125 bars in a short contact time of 10?min. Based on the sulphur dioxide solubility data in gas–liquid system for both physical and reactive absorption conditions, the introduction of sulphur atoms in the chloride system was achieved. The mass transfer coefficients obtained for all metal ions were in the range 0.10–0.26?min?1, while the diffusivity of SO2 at different temperatures and pressures was found to be in the range (2.36–3.43)?×?10?9 and (1.36–2.22)?×?10?9 m2s?1, respectively. Thermodynamic parameters such as the changes in Gibbs free energy, enthalpy and entropy were also evaluated. The results indicated that the precipitation of platinum and base metals in gas–liquid (G–L) chloride system was an endothermic process.
机译:测试使用来自气相的溶解硫,以便其在氯化物体系中沉淀铂离子的能力,其参数中的改变如金属离子浓度,盐酸浓度,压力和温度。基于传质系数,扩散型模型以及吸收动力学模型分析沉淀过程。将二氧化硫的最大物理和反应吸收能力分别为0.015和0.018Ω摩尔/升,在短接触时间为10Ω·k和1.125巴。基于对物理和反应性吸收条件的气液系统中的二氧化硫溶解度数据,实现了氯化物体系中的硫原子。为所有金属离子获得的传质系数为0.10-0.26≤1,同时发现SO2在不同温度和压力下的扩散性在范围内(2.36-3.43)?×10?9和(1.36-2.22)?×10?9m2s?1分别。还评估了热力学参数,例如Gibbs自由能,焓和熵的变化。结果表明,铂和氯化物体系中铂和贱金属的沉淀是吸热过程。

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