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Dive into the research topics where Eva Niedobová is active.

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Featured researches published by Eva Niedobová.


Journal of Analytical Atomic Spectrometry | 2005

Vapour generation inductively coupled plasma optical emission spectrometry in determination of total iodine in milk

Eva Niedobová; Jiří Machát; Vítězslav Otruba; Viktor Kanický

Vapour generation inductively coupled plasma optical emission spectrometry (VG-ICP-OES) was used for the determination of the iodine content in milk samples. Modified alkaline ashing of the milk sample was employed for the total digestion of organic matrix constituents. A mixture of potassium hydroxide (2 mL, 2 mol L−1 in ethanol) and calcium nitrate (2 mL, 0.4 mol L−1 in ethanol) was used in the digestion step as an ashing aid for 2 ml of milk sample (or 200 mg of milk powder). Sample ash was then treated with hydrochloric acid (1.5 mL, 5 mol L−1) and sodium sulfite (1.25 mL, 1 mol L−1) for the elimination of carbonates, which would otherwise cause spectral interference. The vapour of elemental iodine was generated by means of oxidation of iodide by hydrogen peroxide (1 mol L−1) in sulfuric acid (5 mol L−1). Using a gas phase separator, matrix elements were completely eliminated; thus the spectral interference of phosphorus (178.222 nm) was removed and the most intense analytical line of iodine (178.218 nm) could be used for determination. The accuracy of the method was verified by analysis of CRM Non-Fat Milk Powder 1549 from NIST, as well as by the comparative study of VG-ICP-OES and ICP-MS results after alkaline solubilization (TMAH 2.5 mL, 10%). The limit of detection for the VG-ICP-OES method is 20 μg L−1 for original milk samples (based on 3σ of blank value). The concentration of iodine in real milk samples was found in the range 0.2–0.8 mg L−1 with a precision of determination from 0.5 to 3.5% (3 replicates).


Analytical and Bioanalytical Chemistry | 2005

Determination of free and total sulfur dioxide in wine samples by vapour-generation inductively coupled plasma–optical-emission spectrometry

Jiří Čmelík; Jiří Machát; Eva Niedobová; Vítězslav Otruba; Viktor Kanický


Mikrochimica Acta | 2005

Determination of Iodine in Enriched Chlorella by ICP-OES in the VUV Region

Eva Niedobová; Jiří Machát; Viktor Kanický; Vítězslav Otruba


Archive | 2005

Distribution of selenium and iodine in Chlorella cells enriched during cultivation

Jiří Machát; Iveta Burianová; Jiří Čmelík; Eva Niedobová; Jiří Doucha; Viktor Kanický


Chemicke Listy | 2005

Fractionation of iodine in iodine-enriched algae Chlorella

Jiří Machát; Iveta Burianová; Eva Niedobová; Jiří Doucha; Viktor Kanický


Archive | 2008

Generování těkavých par do indukčně vázaného plazmového výboje

Jiří Machát; Eva Niedobová; Jiří Čmelík; Lenka Havlásková; Radek Kavřík


Archive | 2008

GC-ICP-MS technique for speciation of organotin compounds

Jiří Machát; Veronika Pešková; Eva Niedobová


Bezpečnost jaderné energie | 2007

Experimental studies on interactions of molten LiFNaF salt withsome candidate structural materials for components of advancednuclear reactors

Oldřich Matal; Tomáš Šimo; Lukáš Nesvadba; Petr Sulovský; Jiří Machát; Eva Niedobová; Tomáš Vaculovič; Viktor Kanický; Christopher Latkoczy; Detlef Günther


Archive | 2006

Stanovení méně běžných analytů ICP spektrometrií ve spojení s technikou generování par

Jiří Machát; Eva Niedobová; Jiří Čmelík


Archive | 2005

Comparison of digestion techniques for determination of iodinein milk by vapour - generation inductively coupled plasma -optical emission spectrometry

Eva Niedobová; Jiří Machát; Viktor Kanický; Vítězslav Otruba

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Jiří Doucha

Academy of Sciences of the Czech Republic

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