14 research outputs found

    Determination of Gold by High-Resolution Continuum Source Atomic Absorption Spectrometry with Chemical Vapor Generation

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    The analytical potential of chemical vapor generation and high-resolution continuum source atomic absorption spectrometry (CVG HR-CS AAS) with quartz tube atomization in determination of gold was evaluated. The volatile species of gold were formed by reaction with sodium tetrahydroborate(III) in the presence of hydrochloric acid. The influence of didodecyldimethylammonium bromide (DDAB) and sodium diethyldithiocarbamate (DDTC) on the absorbance was investigated. The concentration limit of detection was 2.6 ng mL-1 for Au. The precision of measurement at 20 ng mL-1 of Au was 10% of the relative standard deviation (RSD). The accuracy of this method was validated by analyses of NRCC PCT-1a (Copper-Nickel Sulfide Concentrate with Noble Metals), NIST SRM 2710 (Montana Soil) and NIST SRM 1643e (Trace Element in Water) certified reference materials. The measured Au contents in these three reference materials were in satisfactory agreement with the certified values. This method was also applied for gold determination in coal fly ash, sediment and nickel alloy

    Estimation of materials microstructure parameters using computer program SigmaScan Pro

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    Tyt. z nag艂贸wka.Bibliografia s.40.Dost臋pny r贸wnie偶 w formie drukowanej.ABSTRACT: Possibilities of SigmaScan Pro computer program applications in quantitative characterization of materials microstructure are described in this paper. The studies were carried out for microstructures of different types, i.e. granular single phase, dispersed and lamellar. Furthermore possibilities of shape factors utilization in quantitative studies of microstructure, particularly in range of microstructure sta-bility are presented in details. STRESZCZENIA: W pracy przedstawiono mo偶liwo艣ci pomiarowe komputerowego programu do analizy obrazu SigmaScan Pro pod k膮tem ilo艣ciowego opisu mikrostruktury materia艂贸w. Analiz臋 przeprowadzono dla r贸偶nych typ贸w mikrostruktury stali, mianowicie: jednofazowej, dyspersyjnej oraz p艂ytkowej. Szczeg贸艂owo przedstawiono mo偶liwo艣ci wykorzystania wsp贸艂czynnik贸w kszta艂tu w ilo艣ciowych badaniach mikrostruktury, w szczeg贸lno艣ci w zagadnieniach stabilno艣ci struktury. KEYWORDS: image analysis, SigmaScan Pro, stereology, shape factors. S艁OWA KLUCZOWE: analiza obrazu, SigmaScan Pro, stereologia, wsp贸艂czynniki kszta艂tu
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