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Jolanta Kumirska

Researcher at University of Gdańsk

Publications -  102
Citations -  4511

Jolanta Kumirska is an academic researcher from University of Gdańsk. The author has contributed to research in topics: Derivatization & Chemistry. The author has an hindex of 31, co-authored 96 publications receiving 3530 citations.

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Cyanobacteria derived taste and odor characteristics in various lakes in China: Songhua Lake, Chaohu Lake and Taihu Lake.

TL;DR: Results show that the occurrence of T&O in Songhua Lake was the poorest for the lowest nutrient state, as a first report in T &O research field in China.
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Simultaneous determination of non-steroidal anti-inflammatory drugs and natural estrogens in the mussels Mytilus edulis trossulus.

TL;DR: This method could be used for monitoring these CEC in such organisms in order to expand the authors' knowledge of their influence on the water ecosystem, however, in such investigations smaller mussel organisms should be used.
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Thermodynamic studies for adsorption of ionizable pharmaceuticals onto soil.

TL;DR: Evaluated adsorption behavior of three ionizable, polar compounds occurring in different forms: cationic, anionic and neutral onto soil under various temperature conditions reveal that sorption of PRO is exothermic, spontaneous and enthalpy driven, Sorption of SGD is endothermic and spontaneous and entropy driven.
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Determination of the pattern of acetylation of low-molecular-weight chitosan used in biomedical applications.

TL;DR: Determination of the pattern of acetylation of chitosan samples (P(A) parameter) by (13)C NMR spectroscopy hitherto required depolymerization of the native chitOSans, but the present study has demonstrated that this step is not necessary for determining P(A).
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Trimethylsilyldiazomethane (TMSD) as a new derivatization reagent for trace analysis of selected non-steroidal anti-inflammatory drugs (NSAIDs) by gas chromatography methods

TL;DR: The derivatization of ibuprofen, ketoprofen and naproxen by trimethylsilyldiazomethane was shown to be simple, fast, efficient, and suitable for trace analysis.