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1.
J Radioanal Nucl Chem ; 314(1): 69-75, 2017.
Article in English | MEDLINE | ID: mdl-28989213

ABSTRACT

Flotation tailings from copper production are deposits of copper and other valuable metals, such as Mo, V and U. New hydrometallurgical technologies are more economical and open up new possibilities for metal recovery. This work presents results of the study on the extraction of copper by mixed extractant consisting p-toluidine dissolved in toluene. The possibility of simultaneous liquid-liquid extraction of molybdenum and vanadium was examined. D2EHPA solutions was used as extractant, and recovery of individual elements compared for the representative samples of ore and copper flotation tailings. Radiometric methods were applied for process optimization.

2.
Mater Sci Eng C Mater Biol Appl ; 67: 629-635, 2016 Oct 01.
Article in English | MEDLINE | ID: mdl-27287162

ABSTRACT

A new technology for the production of radiopharmaceutical (90)Y microspheres in the form of spherical yttrium oxide grains obtained by sol-gel method has been described. The authors present and discuss the results of investigations performed in the development of new production technology of yttrium microspheres and determination of their physic-chemical properties. The final product has the structure of spherical yttrium oxide grains with a diameter 25-100µm, is stable and free from contaminants. Irradiation of 20mg samples of grains with diameter of 20-50µm in the thermal neutron flux of 1.7×10(14)cm(-2)s(-1) at the core of MARIA research nuclear reactor allowed to obtain microspheres labelled with the (90)Y isotope on the way of the nuclear reaction (89)Y(n, ɤ)(90)Y. Specific activity of irradiated microspheres has been determined by application of absolute triple to double coincidence ratio method (TDCR) and has been evaluated at 190MBq/mg Y. (90)Y microspheres prepared by the proposed technique can be regarded as a promising medical material for radioembolization of liver malignancies.


Subject(s)
Embolization, Therapeutic , Liver Neoplasms/therapy , Microspheres , Radiopharmaceuticals , Yttrium Radioisotopes , Humans , Radiopharmaceuticals/chemistry , Radiopharmaceuticals/pharmacokinetics , Radiopharmaceuticals/pharmacology , Yttrium Radioisotopes/chemistry , Yttrium Radioisotopes/pharmacokinetics , Yttrium Radioisotopes/pharmacology
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