首页> 美国卫生研究院文献>The Journal of Automatic Chemistry >High current–density anodic electrodissolution in flow–injection systems forthe determination of aluminium copper and zinc in non–ferroalloys by flameatomic absorption spectrometry
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High current–density anodic electrodissolution in flow–injection systems forthe determination of aluminium copper and zinc in non–ferroalloys by flameatomic absorption spectrometry

机译:流动注射系统中的高电流密度阳极电溶解火焰法测定非铁合金中的铝铜和锌原子吸收光谱法

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摘要

An automatic procedure with a high current-density anodic electrodissolution unit (HDAE) is proposed for the determination of aluminium, copper and zinc in non-ferroalloys by flame atomic absorption spectrometry, based on the direct solid analysis. It consists of solenoid valve-based commutation in a flow-injection system for on-line sample electro-dissolution and calibration with one multi-element standard, an electrolytic cell equipped with two electrodes (a silver needle acts as cathode, and sample as anode), and an intelligent unit. The latter is assembled in a PC-compatible microcomputer for instrument control, and for data acquisition and processing. General management of the process is achieved by use of software written in Pascal. Electrolyte compositions, flow rates, commutation times, applied current and electrolysis time were investigated. A 0.5 mol l-1 HN03 solution was elected as electrolyte and 300 A/cm2 as the continuous current pulse.The performance of the proposed system was evaluated by analysing aluminium in Al-alloy samples, and copper/zinc in brassand bronze samples, respectively. The system handles about 50samples per hour. Results are precise (R.S.D. < 2%) and inagreement with those obtained by ICP-AES and spectrophotometryat a 95% confidence level.
机译:在直接固体分析的基础上,提出了一种具有高电流密度阳极电溶装置(HDAE)的自动程序,用于火焰原子吸收光谱法测定非铁合金中的铝,铜和锌。它由在进样系统中基于电磁阀的换向组成,用于在线溶解样品并使用一种多元素标准液进行校准,电解池配有两个电极(银针作为阴极,样品作为阳极) )和一个智能单元。后者被组装在与PC兼容的微型计算机中,用于仪器控制以及数据采集和处理。通过使用Pascal编写的软件可以对过程进行常规管理。研究了电解质组成,流速,换向时间,施加电流和电解时间。选用0.5 mol l -1 HNO3溶液为电解液,300 A / cm 2 为连续电流脉冲。铝合金样品和黄铜中的铜/锌和青铜样品。该系统可处理约50个每小时采样数。结果精确(R.S.D. <2%)与通过ICP-AES和分光光度法获得的结果一致置信水平为95%。

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