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HYDROMETALLURGICAL RECOVERY OF RARE EARTH METALS FROM SPENT FCC CATALYSTS

机译:来自CCC催化剂的稀土金属氢冶金回收

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The recovery of rare earth metals from secondary sources has attracted much attention due to their ever expanding demand in the high-tech industry. The studies reported here focus on the hydrometallurgical recovery of lanthanum and cerium from spent fluid catalytic cracking (FCC) catalysts in a two-step process: leaching with nitric acid and solvent extraction by tri-n-butyl phosphate (TBP) and di(2-ethylhexyl)phosphoric acid (D2EHPA). The experiments show a high dissolution yield of about 93% lanthanum and 42% cerium in a single leaching step with 2 M (126 g/L) HNO_3 at 80 °C; only 11% aluminum has been dissolved simultaneously. In the subsequent solvent extraction step the best results for this leach liquor could be achieved using a 1:1 mixture of 25%) (v/v) TBP (0.92 M) and 25% (v/v) D2EHPA (0.76 M) in n-decane without the need for any pH adjustment. In that case La(Ⅲ) and Ce(Ⅲ) can be extracted with 60% and 74% yield respectively in one stage from the majority of accompanying matrix elements. In particular no extraction of Al(Ⅲ) could be observed under these conditions.
机译:由于其在高新技术产业的需求不断扩大,来自二级来源的稀土金属的回收率引起了很多关注。这里的研究侧重于两步工艺中从废液催化裂化(FCC)催化剂中镧和铈的液压冶金回收:用磷酸三丁酯(TBP)和DI(2)用硝酸和溶剂提取浸出(2 - 乙基己基)磷酸(D2ehPA)。实验显示,在80℃下,在单一浸出步骤中,在单个浸出步骤中具有高约93%镧和42%铈的高溶解产率;只有11%的铝同时溶解。在随后的溶剂萃取步骤中,使用25%)(V / v)Tbp(0.92m)和25%(v / v)d2ehpa(0.76米)的1:1混合物,可以实现该浸出液的最佳结果N-癸烷无需任何pH调整。在这种情况下,La(Ⅲ)和Ce(Ⅲ)可以分别在从大多数随附的基质元素中分别用60%和74%的产率提取。特别地,在这些条件下,可以观察到Al(Ⅲ)的提取。

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