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首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Spectrophotometric Determination of Copper(II) in Natural Waters and High Purity Thermal Boiler Water
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Spectrophotometric Determination of Copper(II) in Natural Waters and High Purity Thermal Boiler Water

机译:分光光度法测定天然水和高纯热力锅炉水中的铜(II)。

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A facile, highly sensitive and selective spectrophotometric procedure was developed for the determination of copper(II) in thermal boiler water using a newly synthesized reagent, N,N'-bis(salicylidene)ethylene-diamine (Salen). It is based on the reaction at pH 4-9 between the synthesized Salen and Cu(II) forming a deep green complex, Cu(II) Salen (1:1), that floats quantitatively with oleic acid surfactant. It exhibits a constant and maximum absorbance at 550 nm in both aqueous and surfactant layers. Beer's law is obeyed over the concentration range 0.25-6.35 mg L~(-1) with a detection limit of 0.005 mg L~(-1) for a standard aqueous solution of Cu(II) with a concentration of 3.82 mg L~(-1), molar absorp-tivities of 5.5 x 10~3 and 1.3 x 10~4 mol L~(-1) cm~(-1) in aqueous and surfactant layers, respectively. Sandell's sensitivity was calculated to be 0.244 μg cm~(-2) and the relative standard deviation (n = 9) was 0.19 %. The different analytical parameters affecting the flotation and determination processes were examined. The proposed procedure has been successfully applied to the analysis of Cu(II) in natural waters and high purity thermal water samples. The results obtained agree well with those samples analyzed by atomic absorption spectrometry.
机译:开发了一种简便,高灵敏度,选择性的分光光度法,使用新合成的试剂N,N'-双(水杨基)乙二胺(Salen)测定锅炉热水中的铜(II)。它基于合成的Salen与Cu(II)在pH 4-9之间形成深绿色络合物Cu(II)Salen(1:1)的反应,该络合物与油酸表面活性剂定量浮选。在水性和表面活性剂层中,它在550 nm处均显示出恒定且最大的吸光度。在浓度范围为0.25-6.35 mg L〜(-1)时符合比尔定律,对于标准浓度为3.82 mg L〜(2)的Cu(II)水溶液,检出限为0.005 mg L〜(-1)。 -1),在水和表面活性剂层中的摩尔吸收率分别为5.5 x 10〜3和1.3 x 10〜4 mol L〜(-1)cm〜(-1)。 Sandell的灵敏度计算为0.244μgcm〜(-2),相对标准偏差(n = 9)为0.19%。检查了影响浮选和确定过程的不同分析参数。拟议的程序已成功应用于天然水和高纯热水样品中的铜(II)分析。获得的结果与通过原子吸收光谱法分析的那些样品非常吻合。

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