The unbearable lightness of helium may not be such a problem after all
A group of researchers from Durham and Oxford Universities, led by Diveena Danabalan, analysed natural gas samples from 22 wells in the USA and Canada. Using mass spectroscopy, they measured the full suite of noble gases, with an emphasis on helium, neon and argon.
Diveena Danabalan said: "We identified neon isotope tracers which show a strong association between helium and groundwater. This means that in certain geological regions, groundwater transports large volumes of helium into natural gas fields, where trapping potential is greatest. This suggests that we have probably underestimated the volumes of helium which are actually available to explore".
"On a continental scale, and we are talking about a line running right down the Rocky Mountains, we are seeing processes which are releasing the existing helium which has been built up deep underground over hundreds of millions of years. In some places, like in Yellowstone Park in Wyoming, the deep helium is released directly into the atmosphere. In others, we are seeing that the deep helium which was released when the Rocky Mountains formed has percolated via the groundwater into the same underground reservoirs where we find natural gas. This means that there are almost certainly reservoirs of helium which we had not anticipated. More importantly, understanding how and why helium arrives in these reservoirs means that we now know where to look for new helium resources"
Helium is the essential for use in the MRI body scanners and superconductor production. It is also used in super-hi-tech installations such as the Large Hadron Collider at CERN, which address questions on the origins of the universe
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