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Copper and Mercury in Food, Biological and Pharmaceutical Samples: Spectrophotometric Estimation as Cu(DDTC)2

机译:食品,生物和制药样品中的铜和汞:分光光度法估计为Cu(DDTC)2

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An alternative spectrophotometric method was optimized and validated for the estimation of mercury using diethyldithiocarbamate (DDTC), a common reagent, widely used for the preconcentration and isolation of metal ions in complex matrices followed by their estimation by varied techniques. Diethyldithiocarbamate forms yellow Cu(DDTC)2 with copper and white Hg(DDTC)2 with mercury (having d10 system) which are extracted in CCl4. The UV-visible spectrum of Cu(DDTC)2 is very stable at pH 5.0 and has a maximum absorption (λmax) at 435 nm. Hg(DDTC)2 is more stable than Cu(DDTC)2. Estimation of mercury is based on a quantitative displacement of Cu(II) of Cu(DDTC)2 with the addition of mercury followed by the measurement of reduced absorbance. Primarily, method was optimized and validated for the estimation of copper. Therefore, simultaneous determination of Cu(II) and Hg(II) in mixture is proposed fractionating the extract. The molar specific coefficient (ε) for the mercury was 1.4 × 104 mol﹣1·L·cm﹣1 and for copper was 3.16 × 105 mol﹣1·L·cm﹣1 at 435 nm. The detection limits of Cu2+ and Hg2+ were 0.023 μg·mL﹣1 and 0.029 μg·mL﹣1, respectively. The calibration curve shows good linearity of 0.02 - 12.0 and 0.02 - 15.0 μg·mL﹣1 for the Cu2+ and Hg2+ determination, respectively. Proposed technique was applied to food, biological and pharmaceutical samples for the determination of Cu(II) and Hg(II).
机译:使用二乙基二硫代氨基甲酸酯(DDTC)(一种常用试剂)对分光光度法进行了优化和验证,该方法用于测定汞,该试剂是一​​种常用试剂,广泛用于复杂基质中金属离子的预浓缩和分离,然后通过各种技术对其进行估计。二乙基二硫代氨基甲酸酯与铜形成黄色的Cu(DDTC)2,与汞形成白色的Hg(DDTC)2(具有d10体系),并用CCl4萃取。 Cu(DDTC)2的紫外可见光谱在pH 5.0时非常稳定,在435 nm处具有最大吸收(λmax)。 Hg(DDTC)2比Cu(DDTC)2更稳定。汞的估算是基于添加了汞后对Cu(DDTC)2的Cu(II)进行定量置换,然后测量吸收度降低的结果。首先,对铜的估算方法进行了优化和验证。因此,建议同时测定混合物中的Cu(II)和Hg(II)以分离提取物。在435nm下,汞的摩尔比系数(ε)为1.4×104mol﹣1·L·cm﹣1,而铜为3.16×105mol﹣1·L·cm﹣1。 Cu2 +和Hg2 +的检出限分别为0.023μg·mL﹣1和0.029μg·mL﹣1。校准曲线对于Cu2 +和Hg2 +的测定分别显示出0.02-12.0和0.02-15.0μg·mL﹣1的良好线性。拟议的技术应用于食品,生物和制药样品中,用于测定Cu(II)和Hg(II)。

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