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Tracer technique to estimate the efficiency of radionuclide trap material in liquid sodium
by
Ravisankar, P.
, Manivannan, A.
, Joseph, Kitheri
, Saravanan, G.
, Sudha, R.
, Jayaraman, V.
in
Chemistry
/ Chemistry and Materials Science
/ Diagnostic Radiology
/ Efficiency
/ Experiments
/ Hadrons
/ Heavy Ions
/ Inorganic Chemistry
/ Liquid metals
/ Liquid sodium
/ Methods
/ Nuclear Chemistry
/ Nuclear energy
/ Nuclear Physics
/ Nuclear reactors
/ Physical Chemistry
/ Radioactive tracers
/ Radioactivity
/ Radioisotopes
/ Sodium
/ Sodium cooled reactors
/ Stainless steel
/ Temperature
/ Tracers (Biology)
2024
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Tracer technique to estimate the efficiency of radionuclide trap material in liquid sodium
by
Ravisankar, P.
, Manivannan, A.
, Joseph, Kitheri
, Saravanan, G.
, Sudha, R.
, Jayaraman, V.
in
Chemistry
/ Chemistry and Materials Science
/ Diagnostic Radiology
/ Efficiency
/ Experiments
/ Hadrons
/ Heavy Ions
/ Inorganic Chemistry
/ Liquid metals
/ Liquid sodium
/ Methods
/ Nuclear Chemistry
/ Nuclear energy
/ Nuclear Physics
/ Nuclear reactors
/ Physical Chemistry
/ Radioactive tracers
/ Radioactivity
/ Radioisotopes
/ Sodium
/ Sodium cooled reactors
/ Stainless steel
/ Temperature
/ Tracers (Biology)
2024
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Tracer technique to estimate the efficiency of radionuclide trap material in liquid sodium
by
Ravisankar, P.
, Manivannan, A.
, Joseph, Kitheri
, Saravanan, G.
, Sudha, R.
, Jayaraman, V.
in
Chemistry
/ Chemistry and Materials Science
/ Diagnostic Radiology
/ Efficiency
/ Experiments
/ Hadrons
/ Heavy Ions
/ Inorganic Chemistry
/ Liquid metals
/ Liquid sodium
/ Methods
/ Nuclear Chemistry
/ Nuclear energy
/ Nuclear Physics
/ Nuclear reactors
/ Physical Chemistry
/ Radioactive tracers
/ Radioactivity
/ Radioisotopes
/ Sodium
/ Sodium cooled reactors
/ Stainless steel
/ Temperature
/ Tracers (Biology)
2024
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Tracer technique to estimate the efficiency of radionuclide trap material in liquid sodium
Journal Article
Tracer technique to estimate the efficiency of radionuclide trap material in liquid sodium
2024
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Overview
Primary components of sodium cooled fast reactors get contaminated due to activity transport that occurs from core to out-of-core through coolant which causes activity burden to the personnel during operation and maintenance. To minimize the MAN-REM issues it is necessary to scavenge
54
Mn,
60
Co and
65
Zn which are of major radiological concern from primary sodium using a compact device. Experimental studies were performed at various durations and temperatures with nickel as single trap material to trap the radionuclides simultaneously and its uptake was estimated. Trapping efficiency of porous and non-porous Ni at 773 K was estimated using radiotracer technique.
Publisher
Springer International Publishing,Springer,Springer Nature B.V
Subject
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