Characteristics of the quarry as shielding for 241AmBe neutrons and monoenergetic photons
Creators
- 1. Universidad Autonoma de Zacatecas, Unidad Academica de Estudios Nucleares, Cipres No. 10, Fracc. La Penuela, 98068 Zacatecas, Zac. (Mexico)
- 2. Universidad Autonoma de Nuevo Leon, Facultad de Ingenieria Civil, Pedro de Alba s/n, San Nicolas de los Garza, Nuevo Leon (Mexico)
Description
Shielding is an important element in radiation protection since allows the management of radiation sources. Currently there are different materials of natural or anthropogenic origin that are used as shielding for both photons and neutrons. The quarry is a material of natural origin and abundant in our country, which is used in construction or for the manufacture of sculptures, however its characteristics as shielding have not been reported. In this paper we report some of the properties of the quarry as shielding for monoenergetic photons and for neutrons produced by an isotopic neutron source of 241AmBe. A quarry piece was used to determine its density and its chemical composition, with the XCOM code the elemental composition was determined and the mass interaction and total attenuation coefficients of the quarry were determined with photons of 10-3 to 10-5 MeV; the interaction coefficients included coherent dispersion, photoelectric absorption, Compton dispersion and the production of pairs in the nuclear and electronic field. Using the MCNP5 code, a narrow geometry attenuation experiment was modeled and the photon fluence was estimated that reaches a point detector at a distance of 42 cm from a point source, isotropic and monoenergetic photon when the source and the point detector were added quarry pieces of different thicknesses. The reduction of the number of photons as a function of the thickness of the quarry was used to determine the coefficient of linear attenuation of the quarry before photons of 0.03, 0.07, 0.1, 0.3, 1, 2 and 3 MeV that were the same as those calculated with the XCOM code. With the MCNP, the K a and H(10) transmission curves were also calculated. This same model was used to determined the variation of the 241AmBe neutron spectrum as a function of quarry thickness, as well as the EROT and H(10) transmission curves. (Author)
Availability note (English)
Available from Instituto Nacional de Investigaciones Nucleares, Centro de Informacion y Documentacion, 52750 Ocoyoacac, Estado de Mexico (MX), e-mail: mclaudia.gonzalez@inin.gob.mxAdditional details
Additional titles
- Original title (Spanish)
- Caracteristicas de la cantera como blindaje para los neutrones del 241AmBe y fotones monoenergeticos
Publishing Information
- Publisher
- Sociedad Nuclear Mexicana
- Imprint Place
- Ciudad de Mexico (Mexico)
- Imprint Pagination
- 11 p.
Conference
- Title
- nuclear energy, a necessary option; 15. SMSR National Congress: safe use of radiation for better quality of life
- Original Conference Title
- 27. Congreso Anual de la SNM: energia nuclear, una opcion necesaria
- Acronym
- 27. SNM Annual Congress
- Dates
- 3-6 Jul 2016
- Place
- Villahermosa, Tabasco (Mexico)
INIS
- Country of Publication
- Mexico
- Country of Input or Organization
- Mexico
- INIS RN
- 48057420
- Subject category
- S07: ISOTOPES AND RADIATION SOURCES; S42: ENGINEERING;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- ABSORPTION; ATTENUATION; BUILDING MATERIALS; CHEMICAL COMPOSITION; DENSITY; DISPERSIONS; DISTANCE; GEOMETRY; INTERACTIONS; MASS; MEV RANGE; NEUTRON SOURCES; NEUTRON SPECTRA; NEUTRONS; PHOTONS; POINT SOURCES; RADIATION PROTECTION; SHIELDING; THICKNESS; TRANSMISSION
- Descriptors DEC
- BARYONS; BOSONS; DIMENSIONS; ELEMENTARY PARTICLES; ENERGY RANGE; FERMIONS; HADRONS; MASSLESS PARTICLES; MATERIALS; MATHEMATICS; NUCLEONS; PARTICLE SOURCES; PHYSICAL PROPERTIES; RADIATION SOURCES; SORPTION; SPECTRA
Optional Information
- Funding organization
- GE Hitachi (United States); Toshiba Westinghouse nuclear (United States); GD Energy Services (Spain); Vertek Industrial Supply Inc. (United States); Nukem (Germany); Grupo IAI (Mexico); Tecnatom (Spain); EERMS (Mexico); PetroServicios (Mexico); Control de Radiaciones e Ingenieria, S. A. de C. V. (Mexico)