Fosu Allen Yushark, Demeusy Bastien, Diot Frédéric, Lavonen Tiina, Meriläinen Veronika, Bartier Danièle, Foucaud Yann, Kanari Ndue
GeoRessources, CNRS, Université de Lorraine, F-54000 Nancy, France.
VTT Technical Research Centre of Finland, FI-02044 Espoo, Finland.
Materials (Basel). 2024 Aug 23;17(17):4186. doi: 10.3390/ma17174186.
The chlorination of oxides of major concern in cassiterite concentrate with various chlorinating agents is investigated in light of their thermodynamic feasibilities to extract and recover their valuable metal components. Mechanisms responsible for the processes and their Gibbs free energy changes as a function of temperature to selectively separate and/or recover the metal(s) of interest and unwanted ones as their metallic chlorides are identified. Attention is given to gaseous (Cl and Cl + CO mixture) and solid (CaCl and MgCl) chlorine sources, from which Cl + CO shows no reaction selectivity for any of the oxides but a feasible metal chloride formation for all. Chlorine gas (Cl), on the other hand, could selectively form chlorides with metals of +2 oxidation state in their oxides, leaving those of high oxidation state unreacted. MgCl, unlike CaCl, is found capable of producing calcium, ferrous, and stannic chloride from their metallic oxides with enhanced reaction tendencies in the presence of silicon dioxide (SiO). An overall study of the thermodynamic feasibility of all chlorine sources looked at alongside operational and environmental viabilities suitably suggests MgCl for a selective extraction of the valuable metal components in a cassiterite concentrate, in which case, moderate temperatures seem promising.
从热力学可行性角度出发,研究了用各种氯化剂对锡石精矿中主要关注的氧化物进行氯化,以提取和回收其中的有价金属成分。确定了这些过程的作用机制及其吉布斯自由能随温度的变化情况,以便选择性地分离和/或回收目标金属以及将不需要的金属以金属氯化物的形式去除。重点关注气态(Cl和Cl + CO混合物)和固态(CaCl和MgCl)氯源,其中Cl + CO对任何氧化物都没有反应选择性,但对所有氧化物都能形成可行的金属氯化物。另一方面,氯气(Cl)能够与氧化物中氧化态为+2的金属选择性地形成氯化物,而使高氧化态的金属不发生反应。与CaCl不同,发现MgCl能够在二氧化硅(SiO)存在的情况下,从金属氧化物中生成氯化钙、氯化亚铁和氯化锡,且反应趋势增强。综合考虑所有氯源的热力学可行性以及操作和环境可行性,合适地表明MgCl可用于选择性提取锡石精矿中的有价金属成分,在这种情况下,适度的温度似乎很有前景。