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posted by janrinok on Monday January 13 2020, @02:49AM   Printer-friendly
from the green-or-not-green dept.

Unused stockpiles of nuclear waste could be more useful than we might think: Chemists have found a new use for the waste product of nuclear power:

Chemists have found a new use for the waste product of nuclear power - transforming an unused stockpile into a versatile compound which could be used to create valuable commodity chemicals as well as new energy sources.

Depleted uranium (DU) is a radioactive by-product from the process used to create nuclear energy. Many fear the health risks from DU, as it is either stored in expensive facilities or used to manufacture controversial armour-piercing missiles.

But, in a paper published in the Journal of the American Chemical Society, Professor Geoff Cloke, Professor Richard Layfield and Dr Nikolaos Tsoureas, all at the University of Sussex, have revealed that DU could, in fact, be more useful than we might think.

By using a catalyst which contains depleted uranium, the researchers have managed to convert ethylene (an alkene used to make plastic) into ethane (an alkane used to produce a number of other compounds including ethanol).

Their work is a breakthrough that could help reduce the heavy burden of large-scale storage of DU, and lead to the transformation of more complicated alkenes.

Prof Layfield said: "The ability to convert alkenes into alkanes is an important chemical reaction that means we may be able to take simple molecules and upgrade them into valuable commodity chemicals, like hydrogenated oils and petrochemicals which can be used as an energy source.

"The fact that we can use depleted uranium to do this provides proof that we don't need to be afraid of it as it might actually be very useful for us."

Journal Reference:

Nikolaos Tsoureas, Laurent Maron, Alexander F. R. Kilpatrick, Richard A. Layfield, F. Geoffrey N. Cloke. Ethene Activation and Catalytic Hydrogenation by a Low-Valent Uranium Pentalene Complex. Journal of the American Chemical Society, 2019; 142 (1): 89 DOI: 10.1021/jacs.9b11929


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  • (Score: 2) by DeathMonkey on Monday January 13 2020, @06:39PM

    by DeathMonkey (1380) on Monday January 13 2020, @06:39PM (#942818) Journal

    Does depleted uranium pose a radiation hazard? [europa.eu]

    All isotopes of uranium are radioactive. Both uranium and depleted uranium, and their immediate decay products, emit alpha and beta particles and a small amount of gamma radiation.

    Depletion of U-235 during processing leaves DU appreciably less radioactive than naturally occurring isotopic mixtures. It typically contains 30-40 per cent of the concentration of U-235 found in natural uranium, or about 0.2 to 0.3 per cent by weight. This means that the radioactivity of newly produced DU is only about 60 per cent of natural uranium.

    DU munitions collected in Kosovo also contained trace amounts of other radioactive elements, but they increase the overall radioactivity by less than one per cent.

    All natural uranium isotopes emit alpha particles – positively charged ions identical to the nucleus of a helium atom, with two protons and two neutrons. Their beta and gamma activity is low. Alpha particles are relatively large, and do not penetrate far in tissue – they are stopped by the skin, for example. This means uranium only poses a radiation hazard if it is breathed in, eaten or drunk, or enters part of the body exposed by injury.

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