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Experimental validation of the neutron flux suppression in samples with high manganese content in instrumental neutron activation analysis
by
Renz, Franz
, Steinhauser, Georg
, Schramm, Lukas-Morris
, Feng, Bin
, Nemetz, Markus
in
Activation analysis
/ Chemicals
/ Chemistry
/ Chemistry and Materials Science
/ Cooling
/ Diagnostic Radiology
/ Hadrons
/ Heavy Ions
/ Inorganic Chemistry
/ Manganese
/ Neutron activation analysis
/ Neutron flux density
/ Neutrons
/ Nuclear Chemistry
/ Nuclear Physics
/ Nuclides
/ Physical Chemistry
2024
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Experimental validation of the neutron flux suppression in samples with high manganese content in instrumental neutron activation analysis
by
Renz, Franz
, Steinhauser, Georg
, Schramm, Lukas-Morris
, Feng, Bin
, Nemetz, Markus
in
Activation analysis
/ Chemicals
/ Chemistry
/ Chemistry and Materials Science
/ Cooling
/ Diagnostic Radiology
/ Hadrons
/ Heavy Ions
/ Inorganic Chemistry
/ Manganese
/ Neutron activation analysis
/ Neutron flux density
/ Neutrons
/ Nuclear Chemistry
/ Nuclear Physics
/ Nuclides
/ Physical Chemistry
2024
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Experimental validation of the neutron flux suppression in samples with high manganese content in instrumental neutron activation analysis
by
Renz, Franz
, Steinhauser, Georg
, Schramm, Lukas-Morris
, Feng, Bin
, Nemetz, Markus
in
Activation analysis
/ Chemicals
/ Chemistry
/ Chemistry and Materials Science
/ Cooling
/ Diagnostic Radiology
/ Hadrons
/ Heavy Ions
/ Inorganic Chemistry
/ Manganese
/ Neutron activation analysis
/ Neutron flux density
/ Neutrons
/ Nuclear Chemistry
/ Nuclear Physics
/ Nuclides
/ Physical Chemistry
2024
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Experimental validation of the neutron flux suppression in samples with high manganese content in instrumental neutron activation analysis
Journal Article
Experimental validation of the neutron flux suppression in samples with high manganese content in instrumental neutron activation analysis
2024
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Overview
Instrumental neutron activation analysis (INAA) relies on constant neutron flux densities throughout the activated samples. Although this concept is true for most typical samples, occasionally, the presence of highly neutron absorbing nuclides in the sample may cause a neutron flux density suppression which would ultimately lead to distorted results in the INAA. Here, we have investigated artificial samples with a high manganese (Mn) content. By adding aqueous gold solution, we introduced a liquid in-situ neutron flux monitor into the sample. An Mn content ≤ 50% shows little effect to the internal neutron flux density, however, the flux can be suppressed by ca. 20% when the Mn content reaches 63.2%.
Publisher
Springer International Publishing,Springer,Springer Nature B.V
Subject
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