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REMOVAL FE (III) FROM DILUTE SOLUTIONS CONTAINING ZN (II) BY ION FLOTATION TECHNIQUES

机译:通过离子浮选技术从含有Zn(II)的稀释溶液中的去除Fe(III)

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Iron concentration by ion flotation techniques, from sulfate solutions in presence of zinc was studied in a laboratory flotation column by continuous mode using a synthesized sand shell plate sparger, an anionic collector, promoters, and surfactant propylenglicol 400. Effects of experimental parameters, such as the concentration of reagent: potassium amyl xanthate and dithiophosphate, superficial gas velocity, and superficial liquid velocity were studied in terms of the recovery and enrichment of Fe (III). The results show that the iron elimination from the solution in the presence and absence of zinc (II) are of 59 percent and 72 percent respectively. The flotation efficiencies decrease with an increase of the concentration of xanthate and air flow rate. The best recovery was achieved, at Ig 0.1 cm/s, Jl 0.72 cm/s and a mixture of xanthate and dithiophosphate as promoter. It was also demonstrated that it is possible to selectively separate and concentrate iron (III) from solutions containing zinc. The behavior of iron ion flotation in a flotation column is reported in this research as a gas hold up, superficial gas velocity, bubble size and superficial bubbles area flux function. The results show that the extraction of aqueous ions of metal iron by ion flotation is strongly affected by: [C], Jg (cm/s), eg ( percent ), Db (mm), Jl (cm/s), y Sb (s~(-1)).
机译:通过使用合成的砂壳板喷射器,阴离子收集器,启动子和表面活性剂丙基丙基400,通过连续模式在实验室浮选塔中研究了离子浮选技术的铁浓度。通过连续模式在实验室浮选柱中研究了实验室浮选塔。实验参数的影响,如研究了试剂的浓度:在Fe(III)的回收和富集方面,研究了氨基氨基酯和二硫代磷酸钾,浅表气体速度和浅表液体速度。结果表明,来自锌(II)的存在和不存在溶液中的溶液的铁分别为59%和72%。浮选效率随着黄原酸盐和空气流速的浓度而降低。以Ig 0.1cm / s,J10.72cm / s和黄嘌呤和二硫代磷酸磷酸磷酸酯的混合物实现了最佳回收。还证明了可以从含锌的溶液中选择性地分离和浓缩铁(III)。本研究报告了浮选塔中铁离子浮选的行为,作为气体阻塞,浅表气体速度,气泡尺寸和浅表泡沫函数。结果表明,通过离子浮选提取金属铁水离子水离子水溶液受到:[C],JG(CM / S),例如(百分比),dB(mm),JL(CM / S),Y SB (S〜(-1))。

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