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Recovery of Nickel and Cobalt from Bioleaching of Nickel Laterite Ores by Ion Exchange Resins

机译:通过离子交换树脂从镍红土的生物浸出中恢复镍和钴

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This study compares the use of an aminophosphonate chelating resin Purolite S950 and a sulphonic acid strong cation exchange resin Purolite C160H to recover nickel and cobalt from the synthetic bioleach solutions. Batch adsorption of metal citrate is performed as a function of metal citrate concentration (15~2000 mg/L) and solution pH (0.01M and 0.1M citric acid). The adsorption mechanism as inferred from the fit to Langmuir (LM), Freundlich (FM) and Redlich-Peterson (RP) models demonstrates that nickel citrate adsorbed onto C160H appears monolayer in comparison to that adsorbed onto S950 exists multilayer. In contrast, cobalt citrate adsorption onto both C160H and S950 agrees with the LM model. The results have shown that loading capacities of nickel and cobalt citrate onto C160H are 60 and 65 mg/g whereas those observed onto S950 are 16mg/g and 6 mg/g respectively. These are achieved in metal citrate prepared in 0.1 M citric acid. Resin regeneration is conducted in using 2 M nitric acid solution. The results show high efficiency of nickel and cobalt citrate elution from Purolite C160H. Findings from this study suggest Purolite C160H is a suitable adsorbent for recovering nickel and cobalt from bioleaching solutions.
机译:该研究比较了氨基膦酸螯合树脂丙醇S950和磺酸强阳离子交换树脂猪灰石C160H的用途,以从合成的Biolofach溶液中回收镍和钴。金属柠檬酸盐的批量吸附是金属柠檬酸盐浓度(15〜2000mg / L)和溶液pH(0.01m和0.1M柠檬酸)的函数。从拟合到Langmuir(LM),Freundlich(FM)和Redlich-Peterson(RP)模型推断的吸附机制表明,吸附在C160h上的镍酸镍相比,与吸附到S950上存在多层体。相反,柠檬酸钴吸附到C160H和S950上同意LM模型。结果表明,将柠檬酸镍和柠檬酸钴的容量加载到C160H上为60和65mg / g,而观察到S950的那些分别为16mg / g和6mg / g。这些在0.1M柠檬酸中制备的金属柠檬酸盐中实现。使用2M硝酸溶液进行树脂再生。结果表明,铜矿C160h的镍和柠檬酸钴洗脱的高效率。本研究的发现表明猪灰石C160H是从生物浸出溶液中回收镍和钴的合适吸附剂。

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