首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section B. Applied Earth Science >Investigation of zinc dissolution and cadmium precipitation rates in a Cd~(2+)/Zn cementation system
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Investigation of zinc dissolution and cadmium precipitation rates in a Cd~(2+)/Zn cementation system

机译:Cd〜(2 +)/ Zn胶结系统中锌的溶解和镉的沉淀速率研究

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In this paper, an investigation of the Cd~(2+)/Zn cementation system is attempted through a semi-theoretical approach, correlating the rates of zinc dissolution and cadmium precipitation under various conditions. Two series of experiments were carried out using zinc in the form of sticks and dust, respectively, while cadmium ions were dissolved as sulphates. The parameters examined were temperature (25-50 deg C), additives (H_2SO_4, NH_4OH, Na_2SO_4), stirring speed (200-600 rpm), initial CcF~+ concentration and granulometric size of zinc dust (0-78-1-84 mm). In the second group of tests, continuous recording of pH change versus time was carried out. Total dissolved solids curves versus pH were constructed for each experiment showing solid cadmium to be the only precipitated phase, and mass balances for the two elements were evaluated for all tests. To account for the sampling position in the reactor, a new concept, the normalisation coefficient, is introduced and evaluated, correlating the species' concentrations in the system. Also time expansion was taken into account and equilibrium constants were evaluated. Based on the above, a correlation equation between the rates of zinc dissolution and cadmium precipitation is derived theoretically and it is confirmed by the experimental results. This analysis demonstrated the important role of Ph for the system kinetics and the considerable effect obtained using normalisation coefficient on the experimental data. The plots of the normalised Cd~(2+) concentrations in the solution versus Zn~(2+) dissolved, verify the proposed linear dependence between the rates of cadmium precipitation and zinc dissolution.
机译:本文通过半理论方法研究了Cd〜(2 +)/ Zn胶结体系,研究了不同条件下锌的溶解速率与镉的沉淀速率之间的关系。使用锌分别以棒和粉尘的形式进行了两个系列的实验,而镉离子则以硫酸盐的形式溶解。检查的参数为温度(25-50摄氏度),添加剂(H_2SO_4,NH_4OH,Na_2SO_4),搅拌速度(200-600 rpm),初始CcF〜+浓度和锌粉的粒度(0-78-1-84)毫米)。在第二组测试中,连续记录pH随时间的变化。绘制每个实验的总溶解固体相对于pH的曲线,显示出固态镉是唯一的沉淀相,并针对所有测试评估了这两种元素的质量平衡。为了说明反应堆中的采样位置,引入并评估了一个新概念,即归一化系数,将物种在系统中的浓度关联起来。还考虑了时间扩展并评估了平衡常数。在此基础上,理论推导了锌溶解速率与镉沉淀速率之间的相关方程式,并得到了实验结果的证实。该分析证明了Ph对于系统动力学的重要作用,以及使用归一化系数对实验数据获得的相当大的影响。溶液中归一化的Cd〜(2+)浓度与Zn〜(2+)的关系图证实了镉沉淀速率与锌溶解之间的线性相关性。

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