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Chemical Reduction of Fe(Ⅲ) in Nickel Lateritic Wastewater to Recover Metals by Ion Exchange

机译:通过离子交换化学还原镍红土废水中的Fe(Ⅲ)以回收金属

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Wastewater from nickel lateritic process still has valuable metals that could be recovered. Using an ion exchange to recovery these metals, the iron becomes a problem due to the fact that it precipitate at pH 2. The aim of this research was to make iron soluble by reducing Fe~(+3) to Fe~(+2). A synthetic solution was prepared with sulfate ferric. The reducing agent sodium dithionite was used and the potential was varied (initial potential: 700, 600, 500, 450 e 400 mV) using as a reference the Pourbaix diagram for iron created by HydroMedusa software. The pH was ranged between 0.5 and 2.5, the reducing agent's concentration was 0.5 M and the reaction time ranged between 30 and 120 min at room temperature. The ferric iron and total iron concentration were verified using a spectrophotometer with 5-sulfosalicylic acid (SSA) to determine Fe(Ⅲ) and ammonia to determine Fe(Ⅱ) and Fe(Ⅲ) in 500 and 425 nm, respectively. The results indicated that total reduction was at 400 MV in any pH between 0.5 and 2, but less than 40% in pH 2.5 at this potential value.
机译:镍红土法生产的废水中仍含有可以回收的有价值的金属。使用铁离子交换来回收这些金属,由于铁在pH 2下沉淀,铁成为一个问题。该研究的目的是通过将Fe〜(+3)还原为Fe〜(+2)使铁可溶。 。用硫酸铁制备合成溶液。使用连二亚硫酸钠还原剂,并使用HydroMedusa软件创建的铁的Pourbaix图作为参考,改变电势(初始电势:700、600、500、450 e 400 mV)。在室温下,pH值在0.5至2.5之间,还原剂的浓度为0.5M,反应时间在30至120分钟之间。用分光光度计用5-磺基水杨酸(SSA)验证三价铁和总铁的浓度,分别测定500 nm和425 nm中的Fe(Ⅲ)和氨气,分别测定Fe(Ⅱ)和Fe(Ⅲ)。结果表明,在该电位值下,pH在0.5至2之间时,在400 MV下总还原量为400 MV,但在pH 2.5下,其总还原量不到40%。

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