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  2. Fuel element failure - Wikipedia

    en.wikipedia.org/wiki/Fuel_element_failure

    A fuel element failure is a rupture in a nuclear reactor's fuel cladding that allows the nuclear fuel or fission products, either in the form of dissolved radioisotopes or hot particles, to enter the reactor coolant or storage water. [1] The de facto standard nuclear fuel is uranium dioxide or a mixed uranium/plutonium dioxide.

  3. Zirconium alloys - Wikipedia

    en.wikipedia.org/wiki/Zirconium_alloys

    One of the main uses of zirconium alloys is in nuclear technology, as cladding of fuel rods in nuclear reactors, especially water reactors. A typical composition of nuclear-grade zirconium alloys is more than 95 weight percent [ 1 ] zirconium and less than 2% of tin , niobium , iron , chromium , nickel and other metals, which are added to ...

  4. Corium (nuclear reactor) - Wikipedia

    en.wikipedia.org/wiki/Corium_(nuclear_reactor)

    The Chernobyl corium is composed of the reactor uranium dioxide fuel, its zircaloy cladding, molten concrete, as well as other materials in and below the reactor, and decomposed and molten serpentinite packed around the reactor as its thermal insulation. Analysis has shown that the corium was heated to at most 2,255 °C (4,091 °F), and ...

  5. Magnox (alloy) - Wikipedia

    en.wikipedia.org/wiki/Magnox_(alloy)

    Magnox is an alloy—mainly of magnesium with small amounts of aluminium and other metals—used in cladding unenriched uranium metal fuel with a non-oxidising covering to contain fission products in nuclear reactors. Magnox is short for Magnesium non-oxidising.

  6. Liquid fluoride thorium reactor - Wikipedia

    en.wikipedia.org/wiki/Liquid_fluoride_thorium...

    Removal of fission products is similar to reprocessing of solid fuel elements; by chemical or physical means, the valuable fissile fuel is separated from the waste fission products. Ideally the fertile fuel (thorium or U-238) and other fuel components (e.g. carrier salt or fuel cladding in solid fuels) can also be reused for new fuel.

  7. Indian Point Energy Center - Wikipedia

    en.wikipedia.org/wiki/Indian_Point_Energy_Center

    Indian Point stores used fuel rods in two spent fuel pools at the facility. [76] The spent fuel pools at Indian Point are not stored under a containment dome like the reactor, but rather they are contained within an indoor 40-foot-deep pool and submerged under 27 feet of water. Water is a natural and effective barrier to radiation.

  8. Sequoyah Fuels Corporation - Wikipedia

    en.wikipedia.org/wiki/Sequoyah_Fuels_Corporation

    Photograph of the rupture in the uranium hexafluoride container. On January 4, 1986, Sequoyah Fuels Corporation experienced a rupture which killed 26-year-old worker, James Harrison and hospitalized 37 of the 42 onsite workers. [4]

  9. Flame arrester - Wikipedia

    en.wikipedia.org/wiki/Flame_arrester

    A flame arrester during testing A flame arrester made for a 91 cm (36 inch) pipe weighing 10 tons. A flame arrester (also spelled arrestor), deflagration arrester, [1] or flame trap [2] is a device or form of construction that will allow free passage of a gas or gaseous mixture but will interrupt or prevent the passage of flame.