HR: 0800h
AN: B11A-0067 [Abstracts]
TI: Copper Binding Depending on Source and Chemical Quality of DOM in the Colorado Front Range
AU: * Cox, C N
EM: caitcox@unc.edu
AF: Department of Civil, Environmental, and Architectural Engineering, Institute for Arctic and
Alpine Research, University of Colorado, 1560 30th Street, Boulder, CO 80309, United States
AU: McKnight, D M
EM: diane.mcknight@colorado.edu
AF: Department of Civil, Environmental, and Architectural Engineering, Institute for Arctic and
Alpine Research, University of Colorado, 1560 30th Street, Boulder, CO 80309, United States
AU: Miller, M P
EM: matthew.p.miller-1@colorado.edu
AF: Department of Civil, Environmental, and Architectural Engineering, Institute for Arctic and
Alpine Research, University of Colorado, 1560 30th Street, Boulder, CO 80309, United States
AB:
In alpine and sub-alpine lakes and the Colorado Front Range, the source, concentration and quality of the
dissolved organic material (DOM) changes during the spring snowmelt and summer period because of
decreasing rates of mountain run-off and increasing algal growth in the lakes. We examined seasonal changes
in copper binding properties of DOM in an alpine lake (Green Lake 4) and a subalpine lake (Lake Albion) in Green
Lakes Valley by conducting potentiometric titrations of lake water using a cupric ion selective electrode.
Depending on the copper-binding characteristics of the DOM, the concentration of bioavailable cupric ion (Cu2+)
and other metal ions may be below the toxicity threshold for aquatic biota. The seasonal DOC trend showed the
expected decrease throughout the summer months because of the decrease in streamflow and decreasing
source of terrestrial DOM. Lake Albion had a greater DOC concentration because of the more extensive
surrounding vegetation at the lower elevation. DOM from Green Lake 4 was found to have more Cu binding
capacity than DOM from Lake Albion, due to the different quality of DOM. The lesser copper- binding capacity in
the summer in both lakes was associated with the decrease in DOC and relative stable level of fulvic acid
percentage. The changes in metal binding capacity may also be related to changes in source of DOM and UV
induced photodegradation. These data indicate that the seasonal DOM source changes may influence metal
binding properties in an ecologically relevant manner.
DE: 0409 Bioavailability: chemical speciation and complexation
SC: Biogeosciences [B]
MN: 2007 Fall Meeting