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Automatic flow system for simultaneous determination of iron and chromium in steel alloys employing photometers based on LEDs as radiation source

机译:自动流系统用于同时测定钢合金中的铁和铬采用基于LED的光度计作为辐射源

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摘要

A multicommutated flow system for simultaneous determination of iron and chromium in steel alloys by photometry is described. The flow network consisted of an automatic injector and four solenoid valves assembled to form two independent analytical pathways, each one comprising reaction coils and a flow cell. The light source (LED) and detector (photodiode) were attached to the flow cells to form a compact unit. The flow system was microcomputer controlled by Quick BASIC 4.5 software, which carried out all steps of the analytical procedure. The feasibility of the system was proved by the determination of iron and chromium in steel alloys and its accuracy was accessed by comparing results with those obtained by plasma atomic emission spectrometry (ICP-AES). No significant difference at the 95% confidence level was observed. Other profitable features such as low reagent consumption (0.33 mg 1,10-phenantroline and 0.03 mg 1,5-diphenylcarbazide per determination); relative standard deviations (n = 5) of 0.4% for iron and 1.2% for chromium; and an analytical throughput of 160 determinations per h were also achieved.
机译:描述了用于通过光度法同时测定钢铁合金中铁和铬的多换向流动系统。流动网络由一个自动进样器和四个电磁阀组成,这些电磁阀组装在一起以形成两个独立的分析路径,每个路径都包含反应线圈和流通池。将光源(LED)和检测器(光电二极管)连接到流通池以形成紧凑的单元。流动系统是由Quick BASIC 4.5软件控制的微计算机,该软件执行了分析过程的所有步骤。通过测定钢合金中的铁和铬证明了该系统的可行性,并通过将结果与等离子原子发射光谱法(ICP-AES)进行比较,从而获得了系统的准确性。在95%置信水平下未观察到显着差异。其他有利的特征,例如试剂消耗低(每次测定0.33 mg 1,10-菲咯啉和0.03 mg 1,5-二苯基咔嗪);铁的相对标准偏差(n = 5)为0.4%,铬为1.2%;同时还实现了每小时160次测定的分析通量。

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