Tatiana G Levitskaia
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Explore the profile of Tatiana G Levitskaia including associated specialties, affiliations and a list of published articles.
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41
Citations
98
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Recent Articles
1.
Harilal S, Duffy M, Brayfindley E, Levitskaia T, Moore E, Lumetta G, et al.
ACS Omega
. 2025 Jan;
9(51):50357-50366.
PMID: 39741829
Plutonium uranium reduction extraction (PUREX) is a liquid-liquid extraction process used to recover plutonium (Pu) and uranium (U) from irradiated uranium fuel for various nuclear-related applications. Despite extensive efforts, quantitative...
2.
Beck C, Cervantes J, Chiswell S, Greaney A, Johnson K, Levitskaia T, et al.
RSC Adv
. 2024 Nov;
14(48):35255-35274.
PMID: 39524081
During nuclear fuel reprocessing, radioiodine, can be released. The speciation of iodine drives its volatility, and partitioning processes are highly variable because they depend on facility operating conditions. Starting from...
3.
Boglaienko D, Hall G, DAnnunzio N, Levitskaia T
Sci Total Environ
. 2024 Aug;
951:175629.
PMID: 39159690
The review focuses on speciation and migration of anthropogenic ruthenium (Ru) originated from nuclear industry releases and presents updated information regarding Ru in the environment. It provides analysis of the...
4.
Kvashnina K, Claret F, Clavier N, Levitskaia T, Wainwright H, Yao T
Sci Rep
. 2024 Mar;
14(1):5907.
PMID: 38467714
No abstract available.
5.
Saslow S, Cordova E, Escobedo N, Qafoku O, Bowden M, Resch C, et al.
J Hazard Mater
. 2023 Aug;
459:132165.
PMID: 37531768
Mechanism of hexavalent chromium removal (Cr(VI) as CrO) by the weak-base ion exchange (IX) resin ResinTech® SIR-700-HP (SIR-700) from simulated groundwater is assessed in the presence of radioactive contaminants iodine-129...
6.
Katsenovich Y, Maria A, Williams J, Kandel S, Boglaienko D, Emerson H, et al.
J Hazard Mater
. 2023 Apr;
445:130546.
PMID: 37055961
Radioactive technetium-99 (Tc) present in waste streams and subsurface plumes at legacy nuclear reprocessing sites worldwide poses potential risks to human health and environment. This research comparatively evaluated efficiency of...
7.
Boglaienko D, Soltis J, Kukkadapu R, Du Y, Sweet L, Holfeltz V, et al.
Commun Chem
. 2023 Jan;
3(1):87.
PMID: 36703425
The sequestration of metal ions into the crystal structure of minerals is common in nature. To date, the incorporation of technetium(IV) into iron minerals has been studied predominantly for systems...
8.
Driscoll D, Shiery R, DAnnunzio N, Boglaienko D, Balasubramanian M, Levitskaia T, et al.
Inorg Chem
. 2022 Sep;
61(38):14987-14996.
PMID: 36099562
The aqueous hydration structure of the Bi ion is probed using a combination of extended X-ray absorption fine structure (EXAFS) spectroscopy and density functional theory (DFT) simulations of ion-water clusters...
9.
Lee E, Boglaienko D, McNamara B, Levitskaia T
Chemosphere
. 2022 Apr;
301:134680.
PMID: 35469900
This study presents a comparative analysis of several commercial removable materials for radioactive decontamination of steel surfaces using Am as representative radionuclide. The selection criteria of removable coatings for this...
10.
Kandel S, Katsenovich Y, Boglaienko D, Emerson H, Levitskaia T
J Hazard Mater
. 2021 Oct;
424(Pt B):127400.
PMID: 34638077
Elemental iron Fe is a promising reductant for removal of radioactive technetium-99 (Tc) from complex aqueous waste streams that contain sulfate, halides, and other inorganic anions generated during processing of...