首页> 外文会议>International Conference on Advances in Energy and Environmental Science >Study on Spectrophotometric Determination of Trace Copper after Flotation Separation using Sodium Chloride-Ammonium Thiocyanate-Dodecyl Dimethyl Benzyl Ammonium Chloride System
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Study on Spectrophotometric Determination of Trace Copper after Flotation Separation using Sodium Chloride-Ammonium Thiocyanate-Dodecyl Dimethyl Benzyl Ammonium Chloride System

机译:使用氯化钠 - 硫氰酸钠 - 十二烷基二甲基氯化铵系统分光光度法分光光度法测定痕量铜

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The paper presents a novel method for the spectrophotometric determination of trace Cu~(2+) after flotation separation using sodium chloride-ammonium thiocyanate-dodecyl dimethyl benzyl ammonium chloride system. The effects of the dosages of NH_4SCN and dodecyl dimethyl benzyl ammonium chloride (DDBAC), various salts and acidity etc. on the flotation yield of Cu~(2+) have been investigated. The possible flotation separation mechanism of Cu~(2+) was discussed. The results showed that by controlling pH4.0, in NaCl-NH_4SCN-DDBAC system, the water-insoluble ternary association complex of (DDBAC)_2[Cu(SCN)_4] which produced by Cu~(2+) and SCN~-, DDBAC cation (DDBAC~+) floated above water phase and liquid-solid phases were formed with clear interface, while Mn~(2+), Ni~(2+), Fe~(2+) and Al~(3+) could not be floated, so Cu~(2+) was floated quantitatively. Thereby, the quantitative separation of Cu~(2+) from the above metal ions could be achieved. A new spectrophotometric method of determination of trace copper by flotation separation was established. The proposed method has been successfully applied to the determination of Cu~(2+) in various environmental water samples with satisfactory results.
机译:本文介绍了使用氯化钠 - 硫氰酸钠 - 十二烷基二甲基氯化铵体系分离浮选分离后痕量Cu〜(2+)分光光度法测定的新方法。研究了NH_4SCN和十二烷基二甲基苄基氯化铵(DDBAC),各种盐和酸性等剂量的影响。研究了Cu〜(2+)的浮选产率。讨论了Cu〜(2+)的可能浮选分离机制。结果表明,通过控制NaCl-NH_4SCN-DDBAC系统,通过Cu〜(2+)和ScN〜 - - 的水不溶性三元关联复合物,用透明界面形成漂浮在水相和液体固相的DDBAC阳离子(DDBAC〜+),而Mn〜(2+),Ni〜(2+),Fe〜(2+)和Al〜(3+ )不能漂浮,因此Cu〜(2+)定量漂浮。由此,可以实现来自上述金属离子的Cu〜(2+)的定量分离。建立了一种通过浮选分离测定痕量铜的新分光光度法。该方法已成功应用于各种环境水样中Cu〜(2+)的测定,结果令人满意。

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