Use of a Split Microtron for Instrumental Gamma Activation Analysis.

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Bibliographic Details
Title: Use of a Split Microtron for Instrumental Gamma Activation Analysis.
Authors: Aliev, R. A.1,2, Gainullina, E. I.2, Ermakov, A. N.1, Ishkhanov, B. S.1,3, Shvedunov, V. I.1
Source: Journal of Analytical Chemistry. Oct2005, Vol. 60 Issue 10, p951-955. 5p.
Subjects: Microtrons, Electron beams, Photons, Germanium, Chemical detectors, Gold
Abstract: The potentials of a split microtron with an electron beam energy of up to 70 MeV for the gamma activation analysis of some natural samples were studied. Certified reference materials of bottom sediments—terrigenous clay (SDO-1), volcanic-terrigenous mud (SDO-2), and lime mud (SDO-3)—were used as model samples. The samples were irradiated with photons generated upon the deceleration of an electronic beam with an energy of 20–50 MeV. The beam was controlled by placing a gold foil before the test sample. Activation products of C, Cl, Na, Mg, Ti, Fe, Ca, Zr, Mn, Rb, Sr, Ni, Co, Y, As, Ba, Zn, Cs, Sc, Cr, and Ce were identified by gamma lines using a high-purity germanium detector. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
Description
Abstract:The potentials of a split microtron with an electron beam energy of up to 70 MeV for the gamma activation analysis of some natural samples were studied. Certified reference materials of bottom sediments—terrigenous clay (SDO-1), volcanic-terrigenous mud (SDO-2), and lime mud (SDO-3)—were used as model samples. The samples were irradiated with photons generated upon the deceleration of an electronic beam with an energy of 20–50 MeV. The beam was controlled by placing a gold foil before the test sample. Activation products of C, Cl, Na, Mg, Ti, Fe, Ca, Zr, Mn, Rb, Sr, Ni, Co, Y, As, Ba, Zn, Cs, Sc, Cr, and Ce were identified by gamma lines using a high-purity germanium detector. [ABSTRACT FROM AUTHOR]
ISSN:10619348
DOI:10.1007/s10809-005-0215-6