Abstract Determination of calcium and zinc in gluconates oral solution and blood samples by liquid cathode glow discharge-atomic emission spectrometry
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Determination of calcium and zinc in gluconates oral solution and blood samples by liquid cathode glow discharge-atomic emission spectrometry

机译:液体阴极辉光放电 - 原子发射光谱法测定葡萄糖酸盐口腔溶液和血液样品中的钙和锌

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摘要

Abstract A novel flowing liquid cathode glow discharge (LCGD) was developed as an excitation source of the atomic emission spectrometry (AES) for the determination of Ca and Zn in digested calcium and zinc gluconates oral solution and blood samples, in which the glow discharge is produced between the electrolyte (as cathode) overflowing from a quartz capillary and the needle-like Pt anode. The electron temperature and electron density of LCGD were calculated at different discharge voltages. The discharge stability and parameters affecting the LCGD were investigated in detail. In addition, the measured results of real samples using LCGD-AES were verified by ICP-AES. The results showed that the optimized analytical conditions are pH = 1 HNO3 as supporting electrolyte, 4.5mLmin–1 solution flow rate. The power consumption of LCGD is 43.5–66.0W. The R 2 and the RSD ranged from 630 to 680V are 0.9942–0.9995 and 0.49%–2.43%, respectively. The limits of detections (LODs) for Zn and Ca are 0.014–0.033 and 0.011–0.097mgL–1, respectively, which are in good agreement with the closed-type electrolyte cathode atmospheric glow discharge (ELCAD). The obtained results of Ca and Zn in real samples by LCGD-AES are basically consistent with the ICP-AES and reference value. The results suggested that LCGD-AES can provide an alternative analytical method for the detection of metal elements in biological and medical samples. Graphical abstract Display Omitted Highlights ? A novel flowing LCGD-AES technique was established. ? The electron temperature (Te) and electron number density (Ne) were calculated. ? The stability and the optimized analytical conditions were investigated. ? The Ca and Zn in gluconates oral solution and blood samples were simultaneously determinate. ?
机译:<![CDATA [ 抽象 流动液体阴极发光放电(LCGD)提出了一种被开发为原子发射光谱法(AES)的为Ca的判定激励源和Zn的消化的葡萄糖酸钙锌口服溶液和血液样品,其中在电解质(如阴极)之间产生辉光放电,从石英毛细管和针状Pt阳极溢流。 LCGD的电子温度和电子密度在不同的放电电压来计算。喷出稳定性和影响LCGD参数详细进行了研究。另外,使用LCGD-AES实际样品的测量结果,通过ICP-AES检验。结果表明,优化的分析条件为:pH = 1个HNO 3 作为支持电解质,4.5 毫升分钟 - 1 溶液流速。 LCGD的功耗是43.5-66.0 W上。在 - [R 2 和RSD范围从630到680 V是0.9942-0.9995和0.49%-2.43%之间。检测的对锌,钙的限制(检测限)为0.014-0.033和0.011-0.097 毫克 - 1 ,分别,这是在与密闭型电解质阴极大气压辉光放电(ELCAD)非常一致。 Ca和Zn中通过LCGD-AES实际样品中所获得的结果与ICP-AES和参考值基本一致。结果表明,LCGD-AES可提供用于生物和医学样品中检测的金属元素的一种替代的分析方法 图形抽象 显示中省略 亮点 一种新颖flowi成立纳克LCGD-AES技术 <?CE:对位ID = “P0010” 视图= “所有”>电子温度(Ť e)和电子数密度(名词 E)进行了计算 <?CE:对ID = “P0015” 视图= “所有”>稳定性和优化的分析条件进行了考察 的Ca和Zn的葡糖酸盐口服溶液和血液样品同时确定的

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    Key Lab of Bioelectrochemistry and Environmental Analysis of Gansu Province College of Chemistry and Chemical Engineering Northwest Normal University;

    Key Lab of Bioelectrochemistry and Environmental Analysis of Gansu Province College of Chemistry and Chemical Engineering Northwest Normal University;

    Key Lab of Bioelectrochemistry and Environmental Analysis of Gansu Province College of Chemistry and Chemical Engineering Northwest Normal University;

    Key Lab of Bioelectrochemistry and Environmental Analysis of Gansu Province College of Chemistry and Chemical Engineering Northwest Normal University;

    Key Lab of Atomic and Molecular Physics &

    Functional Materials of Gansu Province College of Physics and Electronic Engineering Northwest Normal University;

    Key Lab of Atomic and Molecular Physics &

    Functional Materials of Gansu Province College of Physics and Electronic Engineering Northwest Normal University;

    Key Lab of Bioelectrochemistry and Environmental Analysis of Gansu Province College of Chemistry and Chemical Engineering Northwest Normal University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

    Liquid cathode glow discharge (LCGD); Atomic emission spectrometry (AES); Calcium and zinc gluconates oral solution; Blood; Calcium; Zinc;

    机译:液体阴极辉光放电(LCGD);原子发射光谱法(AES);钙和锌葡萄糖醇口服溶液;血液;钙;锌;

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