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Effect of Surface Modification with Different Acids on the Functional Groups of AF 5 Catalyst and Its Catalytic Effect on the Atmospheric Leaching of Enargite

机译:不同酸对AF 5催化剂官能团的表面改性的影响及其对烯基矿石大气浸出的催化作用

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Carbon-based catalysts can assist the oxidative leaching of sulfide minerals. Recently, we presented that AF 5 Lewatit® is among the catalysts with superior enargite oxidation capacity and capability to collect elemental sulfur on its surface. Herein, the effect of acid pre-treatment of the AF 5 catalyst was studied on the AF 5 surface, to further enhance the catalytic properties of AF 5. The AF 5 catalyst was pretreated by hydrochloric acid, nitric acid and sulfuric acid. The results showed that the acid treatment drastically changes the surface properties of AF 5. For instance, the concentration of quinone-like functional groups, which are ascribed to the catalytic properties of AF 5, is 45.4% in the sulfuric acid pre-treatment AF 5 and only 29.8% in the hydrochloric acid-treated AF 5. Based on the C 1s X-ray photoelectron spectroscopy (XPS) results the oxygenated carbon is 30.6% in the sulfuric acid-treated AF 5, 29.2% in the nitric acid-treated AF 5 and 28.3% in the hydrochloric acid-treated AF 5. The nitric acid pre-treated AF 5 resulted in the highest copper recovery during the oxidative enargite leaching process, recovering 98.8% of the copper. The sulfuric acid-treated AF 5 recovered 97.1% of the enargite copper into the leach solution. Among different leaching media and pre-treatment the lowest copper recovery was achieved with the HCl pre-treated AF 5 which was 88.6%. The pre-treatment of AF 5 with acids also had modified its elemental sulfur adsorption capacity, where the sulfur adsorption on AF 5 was increased from 30.9% for the HCl treated AF 5 to 51.1% for the sulfuric acid-treated AF 5.
机译:碳基催化剂可以帮助硫化物矿物的氧化浸出。最近,我们提出了AF 5 Lewatit&Reg;是具有优异的烯根钛矿氧化能力和能力的催化剂中,以收集其表面上的元素硫。在此,研究了AF 5表面的酸预处理的酸预处理的影响,以进一步增强AF 5的催化性能。通过盐酸,硝酸和硫酸预处理AF5催化剂。结果表明,酸治疗大大改变了AF5的表面性质。例如,醌类官能团的浓度归因于AF 5的催化性能,在硫酸预处理AF中为45.4%在盐酸处理的AF5中仅为29.8%。基于C 1S X射线光电子能谱(XPS)结果,含氧碳在硫酸处理的AF 5中为30.6%,硝酸中的29.2% - 在盐酸处理的AF5中处理的AF 5和28.3%。硝酸预处理的AF5导致氧化液体浸出过程中的最高铜回收,回收铜的98.8%。将硫酸处理的AF 5回收97.1%的烯基铜进入浸出溶液。在不同的浸出介质和预处理中,通过HCl预处理的AF 5实现最低铜回收,所述AF 5为88.6%。 AF 5与酸的预处理还改变了其元素的硫吸附能力,其中AF 5上的硫吸附从HCl处理的AF 5至51.1%的30.9%增加到硫酸处理的AF5。

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