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Application of Internal Standard Method for Several 3d-Transition Metallic Elements in Flame Atomic Absorption Spectrometry Using a Multi-wavelength High-resolution Spectrometer

机译:内标法在多波长高分辨率光谱仪火焰原子吸收光谱法中几种3d过渡金属元素的应用

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We investigated a simultaneous internal standard method in flame atomic absorption spectrometry (FAAS), in order to better the analytical precision of 3d-transition metals contained in steel materials. For this purpose, a new spectrometer system for FAAS, comprising a bright xenon lamp as the primary radiation source and a high-resolution Echelle monochromator, was employed to measure several absorption lines at a wavelength width of ca. 0.3 nm at the same time, which enables the absorbances of an analytical line and also an internal standard line to be estimated. In considering several criteria for selecting an internal standard element and the absorption line, it could be suggested that platinum-group elements: ruthenium, rhodium, or palladium, were suitable for an internal standard element to determine the 3d-transition metal elements, such as titanium, iron, and nickel, by measuring an appropriate pair of these absorption lines simultaneously. Several variances of the absorption signal, such as a variation in aspirated amounts of sample solution and a short-period drift of the primary light source, would be corrected and thus reduced, when the absorbance ratio of the analytical line to the internal standard line was measured. In Ti-Pd, Ni-Rh, and Fe-Ru systems chosen as typical test samples, the repeatability of the signal respnses was investigated with/without the internal standard method, resulting in better precision when the internal standard method was applied in the FAAS with a nitrous oxide–acetylene flame rather than an air–acetylene flame.
机译:我们研究了火焰原子吸收光谱法(FAAS)中的同时内标方法,以提高钢铁材料中3d过渡金属的分析精度。为此,采用了一种新的FAAS光谱仪系统,该系统包括一个明亮的氙灯作为主要辐射源,以及一个高分辨率的Echelle单色仪,用于测量波长大约为1的几个吸收线。同时为0.3 nm,可以估算分析线和内标线的吸光度。在考虑选择内标元素和吸收线的几种标准时,可以建议铂族元素:钌,铑或钯适合用作内标元素以确定3d过渡金属元素,例如钛,铁和镍,方法是同时测量一对合适的吸收线。当分析线与内标线的吸光度比为0时,将校正并因此减小吸收信号的一些变化,例如样品溶液的吸出量变化和主光源的短时漂移。测量。在选择作为典型测试样品的Ti-Pd,Ni-Rh和Fe-Ru系统中,使用/不使用内标方法研究了信号响应的可重复性,当在FAAS中使用内标方法时,可以提高精度用一氧化二氮-乙炔火焰,而不是空气-乙炔火焰。

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