Several types of generators have been developed for the production of 99mTc. Due to its excellent performances, the chromatographic type, based on the fission-produced 99Mo sorbed in alumina, is predominant. Technetium-99m is obtained in the form of sodium pertechnetate-99mTc. However, due to the known disadvantages of the production of (n, f)99Mo, attempts are made to avoid uranium fission. The technologies based on (n, g)99Mo (sublimation, extraction, gel) are, with the exception of the gel generator, of limited importance. Certain nuclear reactions in cyclotrons can produce 99Mo (or directly 99mTc) but the obtained results are still not satisfying. Technetium-99m is used in the form of radiopharmaceuticals which are prepared by addition of 99mTc-eluate to the inactive components comprised in the 'cold' kits. The chromatographic (n, f)99Mo/99mTc generator and several 99mTc-radiopharmaceuticals have been developed and are regularly produced in the Vinča Institute of Nuclear Sciences (Laboratory for Radioisotopes)
A simulation experiment was used to study the interaction of river water with different soils (arable land, orchards, meadows, pastures and forestland). The results obtained by sequential extraction before and after the simulation experiment were compared in order to determine the substrates of the heavy metals in inundated land and to evaluate their mobility. Samples of various soils were collected from the region of the future accumulation Lake Bogovina (Serbia) and analyzed for ten elements using AAS, GFAAS and ICP. Investigation of the nature of the association of heavy metals and the identification of their substrates were provided by a five-step sequential extraction. Correlation analysis was used as a method for the determination of the substrates for heavy metals. The good correlation among the microelements and certain macroelements indicated the substrates of the microelements. Manganese and iron had a good correlation with most of the microelements. Calcium had only a few correlations with some microelements. Some elements, such as nickel and cadmium, had one substrate before and another after the simulation experiment.
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