In-Reservoir Physical Processes Modulate Aqueous and Biological Methylmercury Export from a Seasonally Anoxic Reservoir

被引:15
作者
Baldwin, Austin K. [5 ]
Eagles-Smith, Collin A. [1 ]
Willacker, James J. [1 ]
Poulin, Brett A. [2 ]
Krabbenhoft, David P. [3 ]
Naymik, Jesse [4 ]
Tate, Michael T. [3 ]
Bates, Dain [4 ]
Gastelecutto, Nick [4 ]
Hoovestol, Charles [4 ]
Larsen, Chris [4 ]
Yoder, Alysa M. [5 ]
Chandler, James [4 ]
Myers, Ralph [4 ]
机构
[1] US Geol Survey, Forest & Rangeland Ecosyst Sci Ctr, Corvallis, OR 97330 USA
[2] Univ Calif Davis, Dept Environm Toxicol, Davis, CA 95616 USA
[3] US Geol Survey, Upper Midwest Water Sci Ctr, Madison, WI 53726 USA
[4] Idaho Power Co, Boise, ID 83702 USA
[5] US Geol Survey, Idaho Water Sci Ctr, Boise, ID 83702 USA
关键词
zooplankton; suspended sediment; destratification; biological uptake; bioaccumulation; aquatic food web; methylation; anoxia; MERCURY; WATER; FOOD; PLANKTON; BIOACCUMULATION; DOWNSTREAM; PATTERNS; FISH; DAM;
D O I
10.1021/acs.est.2c03958
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Anoxic conditions within reservoirs related to thermal stratification and oxygen depletion lead to methylmercury (MeHg) production, a key process governing the uptake of mercury in aquatic food webs. Once formed within a reservoir, the timing and magnitude of the biological uptake of MeHg and the relative importance of MeHg export in water versus biological compartments remain poorly understood. We examined the relations between the reservoir stratification state, anoxia, and the concentrations and export loads of MeHg in aqueous and biological compartments at the outflow locations of two reservoirs of the Hells Canyon Complex (Snake River, Idaho-Oregon). Results show that (1) MeHg concentrations in filter-passing water, zooplankton, suspended particles, and detritus increased in response to reservoir destratification; (2) zooplankton MeHg strongly correlated with MeHg in filter-passing water during destratification; (3) reservoir anoxia appeared to be a key control on MeHg export; and (4) biological MeHg, primarily in zooplankton, accounted for only 5% of total MeHg export from the reservoirs (the remainder being aqueous compartments). These results improve our understanding of the role of biological incorporation of MeHg and the subsequent downstream release from seasonally stratified reservoirs and demonstrate that in-reservoir physical processes strongly influence MeHg incorporation at the base of the aquatic food web.
引用
收藏
页码:13751 / 13760
页数:10
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