ceramic-fueled reactor oor Spaans

ceramic-fueled reactor

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reactor cerámico

UN term

reactor de combustible cerámico

UN term

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The containment is the fourth and final barrier to radioactive release (part of a nuclear reactor's defence in depth strategy), the first being the fuel ceramic itself, the second being the metal fuel cladding tubes, the third being the reactor vessel and coolant system.
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In the context of the reactor fuel, the ceramic encapsulation prevents significant release of radioactive substances up to temperatures of 1,800° F or more, far above the maximum temperatures attained in the reactor, even in the "worst-case" accident scenarios.
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The first barrier, in certain types of reactors, is a ceramic material covering the uranium used as fuel element.
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Ceramic pellets are the most common form of reactor fuel. These are made from compressed uranium oxide, which is derived from a sintering (baking) process at more than 1400 degrees centigrade.
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Heading No 2844 applies only to : (a) technetium (atomic No 43), promethium (atomic No 61), polonium (atomic No 84) and all elements with an atomic number greater than 84; (b) natural or artificial radioactive isotopes (including those of the precious metals or of the base metals of Sections XIV and XV), whether or not mixed together; (c) compounds, inorganic or organic, of these elements or isotopes, whether or not chemically defined, whether or not mixed together; (d) alloys, dispersions (including cermets), ceramic products and mixtures containing these elements or isotopes or inorganic or organic compounds thereof and having a specific radioactivity exceeding 74 Bq/g (0,002 ìCi/g); (e) spent (irradiated) fuel elements (cartridges) of nuclear reactors; (f) radioactive residues whether or not usable.
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Heading No 2844 applies only to : (a) technetium (atomic No 43), promethium (atomic No 61), polonium (atomic No 84) and all elements with an atomic number greater than 84; (b) natural or artificial radioactive isotopes (including those of the precious metals or of the base metals of Sections XIV and XV), whether or not mixed together; (c) compounds, inorganic or organic, of these elements or isotopes, whether or not chemically defined, whether or not mixed together; (d) alloys, dispersions (including cermets), ceramic products and mixtures containing these elements or isotopes or inorganic or organic compounds thereof and having a specific radioactivity exceeding 74 Bq/g (0,002 mCi/g); (e) spent (irradiated) fuel elements (cartridges) of nuclear reactors; (f) radioactive residues whether or not usable.
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Used nuclear fuel is made up of small diameter ceramic pellets contained in long metal-alloy rods bound into rectangular arrays called assemblies that were placed in the reactor to generate energy.
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Drawing of the reactor vessel of the EBR-II The EBR-II core can accommodate as many as 65 experimental sub-assemblies for irradiation and operational reliability tests, fueled with a variety of metallic and ceramic fuels—the oxides, carbides, or nitrides of uranium and plutonium, and metallic fuel alloys such as uranium-plutonium-zirconium fuel.
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9 sinne gevind in 10 ms. Hulle kom uit baie bronne en word nie nagegaan nie.