The production of 82Sr at iThemba LABS is performed by the proton bombardment of a RbCl target using the facility's Vertical-Beam Target Station (VBTS). 82Sr is separated from the target material using a method based on target dissolution, using dilute ammonium chloride solution, and the use of chromatographic methods on Purolite S950 ion exchange resin. After performing a further purification step using AG MP-50 macroporous cation exchange resin, the result is a product with a high radionuclidic purity and negligible Rb and Fe impurity content
A procedure was developed for separating rubidium from irradiated aluminum encapsulated uranium. The...
In seven production runs, 75,000 curies of Sr/sup 90/ were isolated and purified in the ion-exchange...
Abstract Many radioisotopes with potential medical applications are difficult to produce routinely, ...
A new chemical separation process has been developed at Los Alamos for the isolation of /sup 82/Sr f...
82Rb is a positron-emitting radionuclide widely used in nuclear cardiology. One great advantage is i...
The recently reported cross-section data for the production of 82Sr via the natRb(p,xn) 82Sr process...
Investigations allowing obtaining of 82Sr isotope upon irradiation of target RbCl by internal proton...
Analysis of the various nuclear reactions for the production of radionuclide 82Sr was performed and ...
A procedure was developed for separating rubidium from irradiated aluminum encapsulated uranium. The...
85Sr was produced via the 85Rb(p,n)85Sr reaction. Rubidium chloride deposition on copper substrate w...
Strontium-82, produced by spallation reaction with medium-energy pro ton beams, was used to evaluate...
Strontium-82 (t1/2 = 25.5 d) is one of the medical isotopes produced on a large scale at the Isotope...
An improved ‘2Sr—'2Rb generator system, based on the complexing ion-exchange resin Chelex-1...
The cyclotron production of 88Y at iThemba LABS is performed via the reaction 88Sr(p,n)88Y. The yiel...
This invention is comprised of a process for making {sup 82}Sr by bombarding a molybdenum target enr...
A procedure was developed for separating rubidium from irradiated aluminum encapsulated uranium. The...
In seven production runs, 75,000 curies of Sr/sup 90/ were isolated and purified in the ion-exchange...
Abstract Many radioisotopes with potential medical applications are difficult to produce routinely, ...
A new chemical separation process has been developed at Los Alamos for the isolation of /sup 82/Sr f...
82Rb is a positron-emitting radionuclide widely used in nuclear cardiology. One great advantage is i...
The recently reported cross-section data for the production of 82Sr via the natRb(p,xn) 82Sr process...
Investigations allowing obtaining of 82Sr isotope upon irradiation of target RbCl by internal proton...
Analysis of the various nuclear reactions for the production of radionuclide 82Sr was performed and ...
A procedure was developed for separating rubidium from irradiated aluminum encapsulated uranium. The...
85Sr was produced via the 85Rb(p,n)85Sr reaction. Rubidium chloride deposition on copper substrate w...
Strontium-82, produced by spallation reaction with medium-energy pro ton beams, was used to evaluate...
Strontium-82 (t1/2 = 25.5 d) is one of the medical isotopes produced on a large scale at the Isotope...
An improved ‘2Sr—'2Rb generator system, based on the complexing ion-exchange resin Chelex-1...
The cyclotron production of 88Y at iThemba LABS is performed via the reaction 88Sr(p,n)88Y. The yiel...
This invention is comprised of a process for making {sup 82}Sr by bombarding a molybdenum target enr...
A procedure was developed for separating rubidium from irradiated aluminum encapsulated uranium. The...
In seven production runs, 75,000 curies of Sr/sup 90/ were isolated and purified in the ion-exchange...
Abstract Many radioisotopes with potential medical applications are difficult to produce routinely, ...