首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Simultaneous determination of arsenic and antimony in steels and pure coppers by high power nitrogen microwave induced plasma atomic emission spectrometry coupled
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Simultaneous determination of arsenic and antimony in steels and pure coppers by high power nitrogen microwave induced plasma atomic emission spectrometry coupled

机译:高功率氮微波诱导等离子体原子发射光谱法同时测定钢和纯铜中的砷和纯铜锑

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The feasibility of an annular-shaped high power nitrogen microwave induced plasma atomic emission spectrometry (N{sub}2-MIP-AES) has been studied for the simultaneous determination of arsenic and antimony in combination with the hydride generation method. Under the optimized experimental conditions, the best attainable detection limits at As I 228.812 and Sb I 231.147 nm lines were 4.13 and 4.50 ng/ml for arsenic and antimony, respectively, with a linear dynamic range of 10 to 10,000 ng/ml in concentrations. The presence of several diverse elements was found to cause more or less a depressing interference by the proposed technique. Of the several pre-reductants examined, thiourea was found to be the most preferable to reduce arsenic and antimony from their pentavalent state to trivalent one prior to hydride generation. Therefore, thiourea was utilized as a pre-reductant for the determination of total arsenic and antimony concentration, i.e., As(III) +As(V) and Sb(III) + Sb(V). When arsenic and antimony in steels were determined simultaneously, a large amount of Fe(III) in the solution caused a severe depressing interference, while the presence of Fe(II) showed little or no significant interference. Of the several interference-releasing agents examined, both thiourea and L-ascorbic acid were found to be the most preferable to reduce Fe(III) to Fe(II). When arsenic and antimony in high purity coppers were determined simultaneously, copper of principal constituent interfered to a great extent. Thiourea was found to reduce the depressing interference from copper, so that any separation procedure of copper matrix was not necessary. The proposed method using thiourea not only as a pre-reductant but also as an interference-releasing agent was applied to the simultaneous determination of low concentrations of arsenic and antimony in carbon steels and high pure coppers. The results obtained by this method were in good agreement with the certified values.
机译:已经研究了环形高功率氮微波诱导等离子体原子发射光谱法(N {亚} 2-MIP-AES)的可行性,用于同时测定砷和锑与氢化物产生方法。在优化的实验条件下,砷和锑分别为砷和锑的最佳可获得的检测限度为I28.812和Sb I 231.147 nm线。发现了几种不同元素的存在通过所提出的技术引起更多或更少的令人沮丧的干扰。在检查的几种预氧化还原剂中,发现硫脲是最优选的,最优选在氢化物生成之前将砷和锑从其五价状态减少到三价。因此,使用硫脲作为预还原剂,用于测定总砷和锑浓度,即(III)+ AS(v)和Sb(III)+ Sb(v)。当同时测定钢中的砷和锑时,溶液中的大量Fe(III)导致严重的抑郁干扰,而Fe(II)的存在表现出很少或没有显着的干扰。在检查过的几种干扰释放试剂中,发现硫脲和L-抗坏血酸都是最优选的,以最优选减少Fe(III)至Fe(II)。当同时确定高纯度涂布器中的砷和锑时,主要成分的铜在很大程度上干扰。发现硫脲减少了铜的抑制干扰,从而不需要任何铜基质的分离过程。使用硫脲的所提出的方法不仅是预制剂,还应用于干扰释放剂,以同时测定碳钢和高纯铜的低浓度砷和锑。通过该方法获得的结果与认证价值吻合良好。

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