Optimizacija tečnog scintilacionog spektrometra za ispitivanje alfa i beta emitera u vodama
Liquid scintillation spectrometer optimization during alpha and beta emitters determination in waters
Author
Stojković, IvanaMentor
Todorović, Nataša
Committee members
Krmar, MiodragTodorović, Nataša

Kozmidis-Luburić, Uranija
Krajcar, Bronić Ines
Metadata
Show full item recordAbstract
U disertaciji je izvršena optimizacija detektorskog IZ sistema Quantulus 1220TM radi razvoja metoda za određivanje pojedinačnih radionuklida 3H, 222Rn i 90Sr, kao i ukupne alfa/beta aktivnosti u vodama. Predstavljeni su eksperimenti u svrhu kalibracije sistema, istraživanja uticaja relevantnih parametara na rezultate određivanja aktivnosti alfa i beta emitera, i podešavanja optimalnih vrednosti ovih parametara. Posebna pažnja je posvećena variranju PSA diskriminatora, odnosno podešavanju analizatora oblika impulsa na optimalnu vrednost u svrhu optimalnog razdvajanja alfa od beta događaja, kao i ispitivanju efekata prigušenja u uzorcima i metodama njihove korekcije. Predstavljene razvijene metode su brze, efikasne i jednostavne, što je naročito važno u slučaju radijacionog akcidenta, kada je potrebno brzo odrediti sadržaj radionuklida u uzorcima vode, a njihova validnost je pokazana u okviru međunarodnih i međulaboratorijskih interkomparacija.
Dissertation involves optimization of detector AB system Quantulus 1220TM for development of methods for determination of individual radionuclides 3H, 222Rn and 90Sr, as well as gross alpha/beta activity in waters. Presented experiments had purpose of calibration of the system, investigation of relevant parameters influence on activity measurements of alpha and beta emitters, as well as setting the optimum values of these parameters. Special attention was devoted to PSA discriminator value setting, i.e. adjusting the pulse shape analyzer level at optimum value for an optimal separation of alpha from beta events, as well as testing the effects of quenching in the samples and methods for quench correction. Presented developed methods are fast, efficient and simple, which is especially important in the case of a radiation accident, when there is a need to quickly determine the content of radionuclides in water samples, and their validity has been demonstrated within the ...framework of international and inter-laboratory ntercomparison measurements.
Faculty:
Универзитет у Новом Саду, Природно-математички факултетDate:
31-10-2015Projects:
- ATLAS experiment and particle physics at the LHC energies (RS-171004)
- Biosensing Technologies and Global System for Long-Term Research and Integrated Management of Ecosystems (RS-43002)