Zobrazeno 1 - 10
of 47
pro vyhledávání: '"Peter R, Zalupski"'
Autor:
Corey D. Pilgrim, Travis S. Grimes, Clayn Smith, Colt R. Heathman, Jopaul Mathew, Santa Jansone-Popova, Santanu Roy, Debmalya Ray, Vyacheslav S. Bryantsev, Peter R. Zalupski
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-17 (2023)
Abstract The complexation of trivalent lanthanides and minor actinides (Am3+, Cm3+, and Cf3+) by the acyclic aminopolycarboxylate chelators 6,6′-((ethane-1,2-diylbis–((carboxymethyl)azanediyl))bis–(methylene))dipicolinic acid (H4octapa) and 6,6
Externí odkaz:
https://doaj.org/article/e3db904849304af0b4282d08e1b21d54
Autor:
Gabriel B. Hall, Nathan P. Bessen, Peter R. Zalupski, Emily L. Campbell, Travis S. Grimes, Dean R. Peterman, Gregg J. Lumetta
Publikováno v:
Solvent Extraction and Ion Exchange. :1-19
Autor:
Yufei Wang, Stephen P. Mezyk, Jeffrey R. McLachlan, Travis S. Grimes, Peter R. Zalupski, Hailie M. T. O’Bryan, Andrew R. Cook, Rebecca J. Abergel, Gregory P. Horne
Publikováno v:
The Journal of Physical Chemistry B. 127:3931-3938
Autor:
Gregory P. Horne, Peter R. Zalupski, Dayna L. Daubaras, Cathy Rae, Stephen P. Mezyk, Bruce J. Mincher
Publikováno v:
Data in Brief, Vol 32, Iss , Pp 106271- (2020)
This article contains the individual datasets and complete reaction kinetics compilation for the formic acid/formate component of the kinetic model described in “Radiolytic Degradation of Formic Acid and Formate in Aqueous Solution: Modeling the Fi
Externí odkaz:
https://doaj.org/article/97abb96e9908468381f74e83f7bbef4b
Autor:
Gregory P. Horne, Brian M. Rotermund, Travis S. Grimes, Joseph M. Sperling, David S. Meeker, Peter R. Zalupski, Nicholas Beck, Zachary K. Huffman, Daniela Gomez Martinez, Andrew Beshay, Dean R. Peterman, Bobby H. Layne, Jason Johnson, Andrew R. Cook, Thomas E. Albrecht-Schönzart, Stephen P. Mezyk
Publikováno v:
Inorganic chemistry. 61(28)
Despite the significant impact of radiation-induced redox reactions on the accessibility and lifetimes of actinide oxidation states, fundamental knowledge of aqueous actinide metal ion radiation chemistry is limited, especially for the late actinides
Autor:
Peter R. Zalupski, Andrew R. Cook, Travis S. Grimes, Stephen P. Mezyk, David S. Meeker, Gregory P. Horne, Thomas E. Albrecht-Schönzart
Publikováno v:
Dalton Transactions. 50:10853-10859
Insight into the effects of radiolytic processes on the actinides is critical for advancing our understanding of their solution chemistry because the behaviour of these elements cannot be easily separated from the influence of their inherent radiatio
Autor:
Yuta Kumagai, Tatsuro Matsumura, Dean R. Peterman, Travis S. Grimes, Peter R. Zalupski, Gregory P. Horne, Shinichi Yamashita, Stephen P. Mezyk, Tomohiro Toigawa, Andrew R. Cook, David S. Meeker
Publikováno v:
Physical Chemistry Chemical Physics. 23:1343-1351
The candidate An(iii)/Ln(iii) separation ligand hexa-n-octylnitrilo-triacetamide (HONTA) was irradiated under envisioned SELECT (Solvent Extraction from Liquid waste using Extractants of CHON-type for Transmutation) process conditions (n-dodecane/0.1
Publikováno v:
Radiochimica Acta. 108:707-716
Separation of neptunium by solvent extraction has been based on tributylphosphate (TBP) for decades, but TBP is not fully incinerable, which adds to the burden of long-lived radioactive waste. Alternatives to TBP for uranium and plutonium extraction,
Autor:
Bruce J. Mincher, Andrew R. Cook, Andreas Wilden, Gregory P. Horne, Stephen P. Mezyk, Cathy Rae, Christopher A. Zarzana, Peter R. Zalupski
Publikováno v:
Physical chemistry, chemical physics 22(43), 24978-24985 (2020). doi:10.1039/D0CP04310A
To mitigate third phase formation in next generation used nuclear fuel reprocessing technologies, the addition of 1-octanol has been trialed. However, contradictory reports on the radiolytic effect of 1-octanol incorporation on separation ligand degr
Autor:
Peter R. Zalupski, Travis S. Grimes, Alexander S. Ivanov, Colt R. Heathman, Santa Jansone-Popova, Vyacheslav S. Bryantsev
Publikováno v:
Inorganic Chemistry. 59:138-150
The trivalent f-element coordination chemistry of a novel aminopolycarboxylate complexant was investigated. The novel reagent is an octadentate complexant that resembles diethylenetriamine-N,N,N',N″,N″-pentaacetic acid (DTPA), but a single N-acet