The highly selective nitrogen donor ligand CyMe4BTBP for An(III) separation by solvent extraction was irradiated in a 60Co γ-source under varying conditions. Organic solutions of 10 mmol/L ligand in 1-octanol were contacted with different concentrations of nitric acid to observe the influence of an aqueous phase during irradiation. In subsequent liquid-liquid extraction experiments, distribution ratios of 241Am and 152Eu were determined. Distribution ratios decreased with increasing absorbed dose when irradiation was performed in the absence of nitric acid. With addition of nitric acid, initial distribution ratios remained constant over the whole examined dose range up to 300 kGy. For qualitative determination of radiolysis products, HPLC-M...
Efficient recovery of minor actinides from a genuine spent fuel solution has been successfully demon...
Low doses of gamma radiation were given to four different solvents containing C5-BTBP and CyMe4-BTBP...
A closed nuclear fuel cycle combining new separation technologies along with generation III and gene...
The highly selective nitrogen donor ligand CyMe4BTBP for An(III) separation by solvent extraction wa...
The highly selective nitrogen donor ligands CyMe4BTBP and CyMe(4)BTPhen where gamma-irradiated under...
The highly selective nitrogen donor ligands CyMe4BTBP and CyMe4BTPhen where γ–irradiated under ident...
The radiolytic stability of the highly selective ligands CyMe4BTBP and CyMe4BTPhen against ionizing ...
N-donor ligands are currently discussed as promising extractants in the hydrometallurgical separatio...
Chemical processes intended for the separation of various elements in used nuclear fuel will inetvit...
The stability of solvents containing the C5-BPP (2,6-Bis(5-(2,2-dimethylpropyl)-1H-pyrazol-3-yl)pyri...
The recently developed ligand MF2-BTBP dissolved in cyclohexanone is a promising solvent for the gro...
The recently developed ligand MF2-BTBP dissolved in cyclohexanone is a promising solvent for the gro...
An industrial liquid liquid extraction process for reprocessing of spent nuclear fuel will inevitabl...
Recovery of trivalent minor actinides or of the transuranium elements from highly active raffinate c...
Radiolytic stability of the extractants N,N,N’,N’-tetraoctyl diglycolamide (TODGA) and 2,9-bis(5,5,8...
Efficient recovery of minor actinides from a genuine spent fuel solution has been successfully demon...
Low doses of gamma radiation were given to four different solvents containing C5-BTBP and CyMe4-BTBP...
A closed nuclear fuel cycle combining new separation technologies along with generation III and gene...
The highly selective nitrogen donor ligand CyMe4BTBP for An(III) separation by solvent extraction wa...
The highly selective nitrogen donor ligands CyMe4BTBP and CyMe(4)BTPhen where gamma-irradiated under...
The highly selective nitrogen donor ligands CyMe4BTBP and CyMe4BTPhen where γ–irradiated under ident...
The radiolytic stability of the highly selective ligands CyMe4BTBP and CyMe4BTPhen against ionizing ...
N-donor ligands are currently discussed as promising extractants in the hydrometallurgical separatio...
Chemical processes intended for the separation of various elements in used nuclear fuel will inetvit...
The stability of solvents containing the C5-BPP (2,6-Bis(5-(2,2-dimethylpropyl)-1H-pyrazol-3-yl)pyri...
The recently developed ligand MF2-BTBP dissolved in cyclohexanone is a promising solvent for the gro...
The recently developed ligand MF2-BTBP dissolved in cyclohexanone is a promising solvent for the gro...
An industrial liquid liquid extraction process for reprocessing of spent nuclear fuel will inevitabl...
Recovery of trivalent minor actinides or of the transuranium elements from highly active raffinate c...
Radiolytic stability of the extractants N,N,N’,N’-tetraoctyl diglycolamide (TODGA) and 2,9-bis(5,5,8...
Efficient recovery of minor actinides from a genuine spent fuel solution has been successfully demon...
Low doses of gamma radiation were given to four different solvents containing C5-BTBP and CyMe4-BTBP...
A closed nuclear fuel cycle combining new separation technologies along with generation III and gene...