首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >On-line flow injection solid sample introduction digestion and analysis: spectrophotometric and atomic absorption determination of iron, copper and zinc in multi-vitamin tablets
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On-line flow injection solid sample introduction digestion and analysis: spectrophotometric and atomic absorption determination of iron, copper and zinc in multi-vitamin tablets

机译:在线流动注射固体样品引入消解和分析:分光光度法和原子吸收法测定多种维生素片中的铁,铜和锌

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An on-line flow injection system with solid sample introduction, digestion, treatment and analysis was proposed. The solid sample powder is inserted into a special chamber and carried by the digestion solution to a thermally heated PVC coil (1.4 mm i.d,). The analyte metal as the chloro-complex was retained on a coarse-particle (> 0.5 mm) anion exchange resin mini column. The resin beads are held between two plastic screens which allow insoluble residue to pass through to waste. After a brief column wash, the analyte is eluted with diluted HNO3 and determined spectrophotometrically or by atomic absorption. The proposed novel configuration of the multi-channel pinch valve allows handling slurries without tube blockage or valve damage. The system performance was tested by the determination of Fe, Zn and Cu in multi-vitamin tablets. Fe was determined spectrophotometrically as the thiocyanate complex while Zn and Cu were determined by atomic absorption. Compared with conventional digestion and analysis procedures the flow system yields a reasonably accurate relative error(RE) <2% and precise results with relative standard deviation (R.S.D.) in the range of 2.5-4.2%. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 18]
机译:提出了一种具有固体样品引入,消化,处理和分析功能的在线流动注射系统。将固体样品粉末插入一个特殊的腔室中,并由消解溶液携带到加热的PVC盘管(内径1.4毫米)。作为氯配合物的分析物金属保留在粗颗粒(> 0.5 mm)阴离子交换树脂微型柱上。树脂珠被固定在两个塑料筛之间,这两个塑料筛允许不溶的残留物通过而进入废物。短暂的色谱柱洗涤后,将分析物用稀HNO3洗脱,并通过分光光度法或原子吸收法测定。所提出的新颖的多通道夹管阀配置允许处理泥浆而不会堵塞管或阀。通过测定多种维生素片剂中的铁,锌和铜来测试系统性能。分光光度法测定铁为硫氰酸盐络合物,而锌和铜则通过原子吸收法测定。与常规消解和分析程序相比,该流动系统可产生合理准确的相对误差(RE)<2%和精确结果,相对标准偏差(R.S.D.)在2.5-4.2%的范围内。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:18]

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