TRIURANIUM DISILICIDE NUCLEAR FUEL COMPOSITION FOR USE IN LIGHT WATER REACTORS
The present invention relates to nuclear fuel compositions including triuranium disilicide. The triuranium disilicide includes a uranium component which includes uranium-235. The uranium-235 is present in an amount such that it constitutes from about 0.7% to about 20% by weight based on the total weight of the uranium component of the triuranium disilicide. The nuclear fuel compositions of the present invention are particularly useful in light water reactors.
1 . A nuclear fuel composition, comprising:
triuranium disilicide which comprises a uranium component, the uranium component comprising uranium-235 wherein the uranium-235 is present in an amount such that it constitutes from about 0.7% to about 20% by weight based on the total weight of the uranium component of the triuranium disilicide.
2 . The nuclear fuel composition of claim 1 , wherein said uranium-235 is present in an amount such that it constitutes from about 0.7% to about 5% by weight based on the total weight of the uranium component of the triuranium disilicide.
3 . The nuclear fuel composition of claim 1 , wherein said composition further comprises triuranium silicide, triuranium trisilicide, and mixtures thereof.
4 . The nuclear fuel composition of claim 1 , wherein the triuranium disilicide constitutes from about 80% to about 100% by weight of the total weight of the fuel composition.
5 . The nuclear fuel composition of claim 1 , wherein the triuranium disilicide constitutes from about 50% to about 100% by weight of the total weight of the fuel composition.
6 . The nuclear fuel composition of claim 1 , wherein the uranium component further comprises uranium isotopes selected from the group consisting of uranium-232, uranium-233, uranium-234, uranium-236, uranium-238, and mixtures thereof.
7 . The nuclear fuel composition of claim 1 , wherein said composition is in the form of a pellet.
8 . The nuclear fuel composition of claim 1 , wherein said nuclear fuel composition has a number density of uranium-235 of from about 10% to about 17% higher, as compared to a nuclear fuel composition including uranium dioxide as a replacement for the triuranium disilicide and having the same percentage by weight of uranium-235.
9 . A fuel assembly comprising a plurality of fuel rods, each fuel rod containing a plurality of nuclear fuel pellets, wherein the composition of each of the nuclear fuel pellets comprises triuranium disilicide which comprises a uranium component, the uranium component comprising uranium-235, wherein the uranium-235 is present in an amount such that it constitutes from about 0.7% to about 20% by weight based on the total weight of the uranium component of the triuranium disilicide.
10 . The fuel assembly of claim 9 , wherein said uranium-235 is present in an amount such that it constitutes from about 0.7% to about 5% by weight based on the total weight of the uranium component of the triuranium disilicide.
11 . The fuel assembly of claim 9 , wherein the triuranium disilicide constitutes from about 80% to about 100% by weight of the total weight of each of the fuel pellets.
12 . A light water reactor having a fuel assembly, the fuel assembly comprising a plurality of fuel rods, each fuel rod containing a plurality of nuclear fuel pellets, wherein the composition of each of the nuclear fuel pellets comprises triuranium disilicide which comprises a uranium component, the uranium component comprising uranium-235, wherein the uranium-235 is present in an amount such that it constitutes from about 0.7% to about 20% by weight based on the total weight of the uranium component of the triuranium disilicide.
13 . The light water reactor of claim 12 , wherein said uranium-235 is present in an amount such that it constitutes from about 0.7% to about 5% by weight based on the total weight of the uranium component of the triuranium disilicide.
14 . The light water reactor of claim 12 , wherein a normal operating temperature does not exceed about 900° C.