用双(水杨醛)正苯二胺分光光度法测定真实、环境、生物、地质和土壤样品中的痕量金。

Rubina Soomro, M Jamaluddin Ahmed, Najma Memon, Humaira Khan
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引用次数: 13

摘要

建立了金(III)与双(水杨醛)正苯二胺(BSOPD)在水溶液和胶束介质中快速反应测定痕量金的简便、高灵敏度、选择性和快速分光光度法。BSOPD与金(III)在微酸性溶液中反应形成1:1的棕黄配合物,在水介质和胶束介质中均在490 nm处有最大吸收峰。该方法最值得注意的一点是,在非离子型TritonX-100表面活性剂的存在下,金- bsopd络合物的摩尔吸光率几乎比在水溶液中观察到的值高10倍,从而提高了该方法的灵敏度和选择性。在水溶液和胶束介质中的表观摩尔吸收率分别为2.3 × 10(4) L mol(-1) cm(-1)和2.5 × 10(5) L mol(-1) cm(-1)。反应是瞬时的,在490 nm下10 min后达到最大吸光度,在室温下保持恒定超过24 h。分别在0.1 ~ 30mg L(-1)和0.01 ~ 30mg L(-1)的水溶液和表面活性剂介质中金(III)的线性校准图。研究了50多种阳离子、阴离子和络合剂对1 mg L(-1) Au(III)的干扰;在胶束水溶液中,大多数金属离子在相当数量的情况下是可耐受的。在胶束水溶液中,Sandell的灵敏度为5 ng cm(-2),检出限为1 ng mL(-1),相对标准偏差(n = 9)为2%。其灵敏度和选择性明显高于文献中其他试剂。该方法成功地用于几种标准参比物质(合金和钢材)、环境水样(饮用水和污染水样)、生物样品(血液和尿液)、地质、土壤和复杂合成混合物中的金的测定。所得结果与原子吸收分光光度法(AAS)分析结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A simple and selective spectrophotometric method for the determination of trace gold in real, environmental, biological, geological and soil samples using bis (salicylaldehyde) orthophenylenediamine.

A simple high sensitive, selective, and rapid spectrophotometric method for the determination of trace gold based on the rapid reaction of gold(III) with bis(salicylaldehyde)orthophenylenediamine (BSOPD) in aqueous and micellar media has been developed. BSOPD reacts with gold(III) in slightly acidic solution to form a 1:1 brownish-yellow complex, which has an maximum absorption peak at 490 nm in both aqueous and micellar media. The most remarkable point of this method is that the molar absorptivities of the gold-BSOPD complex form in the presence of the nonionic TritonX-100 surfactant are almost a 10 times higher than the value observed in the aqueous solution, resulting in an increase in the sensitivity and selectivity of the method. The apparent molar absorptivities were found to be 2.3 x 10(4) L mol(-1) cm(-1) and 2.5 x 10(5) L mol(-1) cm(-1) in aqueous and micellar media, respectively. The reaction is instantaneous and the maximum absorbance was obtained after 10 min at 490 nm and remains constant for over 24 h at room temperature. The linear calibration graphs were obtained for 0.1-30 mg L(-1) and 0.01-30 mg L(-1) of gold(III) in aqueous and surfactant media, respectively. The interference from over 50 cations, anions and complexing agents has been studied at 1 mg L(-1) of Au(III); most metal ions can be tolerated in considerable amounts in aqueous micellar solutions. The Sandell's sensitivity, the limit of detection and relative standard deviation (n = 9) were found to be 5 ng cm(-2), 1 ng mL(-1) and 2%, respectively in aqueous micellar solutions. Its sensitivity and selectivity are remarkably higher than that of other reagents in the literature. The proposed method was successfully used in the determination of gold in several standard reference materials (alloys and steels), environmental water samples (potable and polluted), and biological samples (blood and urine), geological, soil and complex synthetic mixtures. The results obtained agree well with those samples analyzed by atomic absorption spectrophotometry (AAS).

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