A quick method for the determination of the Al/Si weight ratio in alumino-silicates using an Am-Be neutron source

An irradiation procedure with fast and thermal neutrons from a 5 Ci Am-Be isotopic neutron source irradiation facility in combination with a 3"x3" NaI(Tl) detector system has been used to determine Al/Si weight ratios in alumino-silicates. Samples were irradiated with and without Cd cover...

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Veröffentlicht in:Journal of radioanalytical and nuclear chemistry 2004-01, Vol.262 (2), p.501-504
Hauptverfasser: Jonah, S. A., Oladipo, M. O. A., Umar, I. M., Rabiu, N., Idris, Y. U., Zakari, I. Y.
Format: Artikel
Sprache:eng
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Zusammenfassung:An irradiation procedure with fast and thermal neutrons from a 5 Ci Am-Be isotopic neutron source irradiation facility in combination with a 3"x3" NaI(Tl) detector system has been used to determine Al/Si weight ratios in alumino-silicates. Samples were irradiated with and without Cd cover for 10 minutes and counted for 10 minutes after a waiting time of 1 minute. The peak area analysis of the 1779 keV gamma-ray line of 28Al product radionuclide produced via 27Al(n,y)28Al and 28Si(n,p)28Al reactions in combination with the neutron flux parameter at the irradiation site and nuclear data were used to determine Al/Si ratios. Due to discrepancy in literature data, Am-Be neutron source spectrum averaged cross sections of (n,p) reactions on 27 Al, 28Si and 56Fe were determined by the activation technique using 115In(n n')1i5mIn as the fast neutron flux monitor reaction. The method was tested using mixtures of high-purity Al2O3 and SiO2 with known weight ratios of Al/Si and validated by a certified reference material BCS-CRM 348 (Ball Clay). Results are presented for bentonite, kaolin, bauxite, feldspar and ball clay samples from Nigeria. The method is non-destructive, rapid and suitable for use in-situ for large-scale exploration works and industrial process control.
ISSN:0236-5731
DOI:10.1023/B:JRNC.0000046786.94967.18