HR: 0830h
AN: H51C-1048 [PDF]
TI: Rare Earth Element Concentrations and Fractionation Patterns Along Groundwater Flow Paths in Two
Different Aquifer Types (i.e., Sand vs. Carbonate)
AU: Johannesson, K H
EM: kjohanne@uta.edu
AF: The University of Texas at Arlington, Dept. of Geology, Arlington, TX 76019-0049 United States
AU: * Tang, J
EM: jtang@odu.edu
AF: Old Dominion University, Dept. of Ocean, Earth, and Atmospheric Sciences, Norfolk, VA 23529-0276 United States
AB:
Groundwater samples were collected in two different types of aquifer (i.e., Carrizo Sand Aquifer, Texas and Upper Floridan
carbonate Aquifer, west-central Florida) to study the concentrations, fractionation, and speciation of rare earth elements
(REE) along groundwater flow paths in each aquifer. Major solutes and dissolved organic carbon (DOC) were also measured in
these groundwaters. The Carrizo Sand aquifer was sampled in October 2002 and June 2003, whereas, to date, we have only
sampled the Floridan once (i.e., June 2003). The data reveal no significant seasonal differences in major solute and REE
concentrations for the Carrizo. In Carrizo sand aquifer, groundwaters from relatively shallow wells (i.e., less than 167 m)
in the recharge zone are chiefly Ca-Na-HCO3-Cl type waters. With flow down-gradient the groundwaters shift composition to the
Na-HCO3 waters. pH and alkalinity initially decrease with flow away from the recharge zone before increasing again
down-gradient. DOC is generally low (0.65 mg/L) along the flow path. REE concentrations are highest in groundwaters from the
recharge zone (Nd 40.5 pmol/kg), and decrease substantially with flow down-gradient reaching relatively low and stable values
(Nd 4.1-8.6 pmol/kg) roughly 10 km from the recharge zone. Generally, Carrizo groundwaters exhibit HREE-enriched
shale-normalized patterns. The HREE enrichments are especially strong for waters from the recharge zone [(Yb/Nd)SN =1.7-5.6],
whereas down-gradient (deep) groundwaters have flatter patterns [(Yb/Nd)SN =0.7-2.5]. All groundwaters have slightly
positive Eu anomalies (Eu/Eu* 0.09-0.14) and negative Ce anomalies (Ce/Ce* -0.85 - -0.07). In the Upper Floridan Aquifer, Ca,
Mg, SO4, and Cl concentrations generally increase along groundwater flow path, whereas pH and alkalinity generally decrease.
DOC is higher (0.64 - 2.29 mg/L) than in the Carrizo and initially increases along the flow path and then decreases
down-gradient. LREE (Nd) concentrations generally increase along groundwater flow path, however, MREE (Gd) exhibit little
change and HREE (Yb) concentrations tend to decreases along the flow path. Floridan groundwaters have HREE enriched
shale-normalized patterns, although (Yb/Nd)SN values decrease along groundwater flow path. Thus, REE patterns of Floridan
groundwaters tend to flatten with flow down-gradient. All groundwaters show positive Eu anomalies (0.06 - 0.17) and negative
Ce anomalies (-0.12 - -0.63).
DE: 1045 Low-temperature geochemistry
DE: 1065 Trace elements (3670)
DE: 1806 Chemistry of fresh water
DE: 1832 Groundwater transport
SC: Hydrology [H]
MN: 2003 Fall Meeting