HR: 0830h
AN: H51C-1049 [PDF]
TI: Elevated Uranium in Aquifers of the Jacobsville Sandstone
AU: * Sherman, H
EM: hmsherma@mtu.edu
AF: Michigan Tech University, Dept. of Geol. & Mining Eng. & Sc., Houghton, MI 49931 United States
AU: Gierke, J
EM: jsgierke@mtu.edu
AF: Michigan Tech University, Dept. of Geol. & Mining Eng. & Sc., Houghton, MI 49931 United States
AB:
The EPA has announced a new standard for uranium in drinking water of 30 parts
per billion (ppb). This maximum contaminant level (MCL) takes effect for
community water supplies December 2003. The EPA's ruling has heightened
awareness among residential well owners that uranium in drinking water may
increase the risk of kidney disease and cancer and has created a need for a
quantified, scientific understanding of the occurrence and distribution of
uranium isotopes in aquifers. The authors are investigating the occurrence of
elevated uranium in northern Michigan aquifers of the Middle Proterozoic
Jacobsville sandstone, a red to mottled sequence of sandstones, conglomerates,
siltstones and shales deposited as basin fill in the 1.1 Ga Midcontinent rift.
Approximately 25% of 300 well water samples tested for isotopic uranium have
concentrations above the MCL. Elevated uranium occurrences are distributed
throughout the Jacobsville sandstone aquifers stretching across Michigan's Upper
Peninsula. However, there is significant variation in well water uranium
concentrations (from 0.01 to 190 ppb) and neighboring wells do not necessarily
have similar concentrations. The authors are investigating hydrogeologic
controls on ground water uranium concentrations in the Jacobsville sandstone,
e.g. variations in lithology, mineralogy, groundwater residence time and
geochemistry. Approximately 2000' of Jacobsville core from the Amoco St. Amour
well was examined in conjunction with the spectral gamma ray log run in the
borehole. Spikes in equivalent uranium (eU) concentration from the log are
frequently associated with clay and heavy mineral layers in the sandstone core.
The lithology and mineralogy of these layers will be determined by analysis of
thin sections and x-ray diffraction. A portable spectrometer, model GRS-2000/BL,
will be used on the sandstone cliffs along Lake Superior to characterize
depositional and lithologic facies of the Jacobsville sandstone in terms of
concentrations and ratios of eU, eTh and K. Equipped with borehole accessories,
the spectrometer will be used to log residential drinking wells to determine a
relationship between the uranium concentration of well water and the eU
concentration in the sandstone. Tritium/helium-3 dating will be used to determine whether ground water uranium concentrations
increase with residence time. PHREEQCI will be used to model dominate aqueous species of
uranium and saturation indices of uranium minerals.
DE: 1806 Chemistry of fresh water
DE: 1831 Groundwater quality
DE: 1871 Surface water quality
SC: Hydrology [H]
MN: 2003 Fall Meeting