J
Joanna Karpińska
Researcher at University of Białystok
Publications - 88
Citations - 1688
Joanna Karpińska is an academic researcher from University of Białystok. The author has contributed to research in topics: Coenzyme Q10 & Photodegradation. The author has an hindex of 19, co-authored 82 publications receiving 1266 citations. Previous affiliations of Joanna Karpińska include University of Warsaw.
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Derivative spectrophotometry—recent applications and directions of developments
TL;DR: The presented paper provides useful information about state-of-the-art and possibilities offered by derivative spectrophotometry in pharmaceutical, clinical or environmental fields of analysis.
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Occurrence, removal, mass loading and environmental risk assessment of emerging organic contaminants in leachates, groundwaters and wastewaters
Justyna Kapelewska,Urszula Kotowska,Joanna Karpińska,Diana Kowalczuk,Agnieszka Arciszewska,Anna Świrydo +5 more
TL;DR: In this paper, a comprehensive study is presented, on the occurrence, removal, mass loading, and environmental risk assessment of 19 multi-class emerging organic contaminants in three Municipal Solid Waste landfills and three Wastewater Treatment Plants located at northeast Poland.
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HPLC method for simultaneous determination of retinol, α-tocopherol and coenzyme Q10 in human plasma
TL;DR: The proposed HPLC method with UV detection was applied to the determination of the levels of retinol, tocopherol and coenzyme Q(10) in plasma of healthy children and children treated by elimination diet.
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Analytical Properties of 2- and 10-Disubstituted Phenothiazine Derivatives
TL;DR: The physical and chemical properties of 2, 10-disubstituted phenothiazine derivatives are described in detail in this article in detail, such as their physical state, thermal stability and solubility.
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Peracids - New oxidants in advanced oxidation processes: The use of peracetic acid, peroxymonosulfate, and persulfate salts in the removal of organic micropollutants of emerging concern − A review
TL;DR: This paper compares PAA, PMS and PS-based processes for the first time in terms of kinetics and efficiency.