Mercury in Fish from 21 National Parks in the Western U.S. and Alaska Inter- and Intra-park variation

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Mercury in Fish from 21 National Parks in the Western U.S. and Alaska Inter- and Intra-park variation NADP Fall Meeting October 23, 2014 Collin Eagles-Smith 1, James Willacker 1, and Colleen Flanagan Pritz 2 1 USGS FRESC Contaminant Ecology Lab 2 National Park Service Air Resources Division

Eagles-Smith, C.A., Willacker, J.J., and Flanagan Pritz, C.M., 2014, Mercury in fishes from 21 national parks in the Western United States Inter and intrapark variation in concentrations and ecological risk: U.S. Geological Survey Open-File Report 2014-1051, 54 p. http://dx.doi.org/10.3133/ofr20141051.

Mercury (Hg)

Denali Wrangell St. Elias Glacier Bay Study Area Lake Clark Grand Teton 21 parks Glacier 86 sites 10 states Mount Rainer Olympic North Cascades Yellowstone 4,000 km Crater Lake Rocky Mountain 1,486 fish Lassen Volcanic Great Sand Dunes Great Basin Yosemite Sequoia - Kings Canyon Zion Grand Canyon Capitol Reef Mesa Verde

Site Selection Middle Blum Lake, NOCA Remote aquatic habitats High-elevation (where possible) Crater Lake, CRLA Limited watershed inputs (where possible) Lake Clark, LACL Only non-migratory fishes Fremont River, CARE

Brook trout Target Species Rainbow trout Arctic grayling Golden trout Cutthroat trout 73% Brown trout Lake trout Kokanee Torrent sculpin Northern pike Dolly Varden Threespine stickleback Bull trout Lake whitefish Sucker spp Speckled dace

Hg Analysis Thermal decomposition Catalytic conversion Amalgamation Atomic absorption spectrometry EPA method 7473

Statistical Analysis Model selection to determine populations needing size correction Size-corrected Hg concentrations based upon species Large fish 400mm Medium fish 200mm Small fish 50mm Mixed-effects, nested general linear model ANOVA Park (fixed effect) Site nested within park (fixed effect) Fish species (random effect) Independent models for each size classification 400mm, 200mm, 50mm

Toxicological Benchmarks Fish Risk NOER (0.2 ppm) LOER (0.3 ppm) Wildlife Risk High sensitivity (0.09 ppm) Moderate sensitivity (0.18 ppm) Low sensitivity (0.27 ppm) Human Risk Unlimited consumption (0.05 ppm) EPA criterion (0.3 ppm) No consumption (0.95 ppm)

Total Hg (THg) in fish, by park

THg in Pacific West/Alaska, by site

THg in Intermountain West, by site E X P E R I E N C E Y O U R A M E R I C A

Fish Size and Mercury 0.5 Brook trout -each line represents a different lake- Fish THg (ppm dw) 0-0.5-1.0-1.5 100 150 200 250 300 350 400 Standard Length (mm)

Size-normalized THg in fish

ex) Size-Specific Risk Profiles Estimated percentage of fish exceeding thresholds 50 % Standard Length (mm) 247 316 352

Size-Specific Risk Profiles Risk to fish Capitol Reef NP CARE Fremont River #1 Speckled dace Green- low Orange- moderate Red- high Mount Rainier NP Risk to birds Risk to humans MORA Reflection Lake Brook trout WRST Tanada Lake Lake trout Wrangell-St. Elias NP&P

Findings Hg concentrations in fish sampled from these parks were generally low, but were elevated in some instances. The majority of fish across the West had concentrations that were below most wildlife and human health benchmarks. Hg concentrations were below EPA s fish tissue criterion for safe human consumption in 96% of the sport fish sampled. Hg levels varied greatly, from park to park and site to site. The data suggest further study of key ecological endpoints in CARE, GLAC, LACL, LAVO, WRST, YOSE, ZION due to high levels of mercury in fish from these areas. Solitude Lake, Grand Teton NP

Implications Impairment Hg challenges the NPS mission to leave resources unimpaired for future generations. NPS Organic Act, 1916 fundamental purpose of the said parks, monuments, and reservations, which purpose is to conserve the scenery and the natural and historic objects and the wild life therein and to provide for the enjoyment of the same in such manner and by such means as will leave them unimpaired for the enjoyment of future generations. Areas of further study Research toxicological response in parks and sites with elevated risk Identify source contribution: Hg isotopes Define why Use landscape and deposition layers Assess spatial risk Brooks Falls, Katmai NP&P Dragonfly larvae Fish Eastern U.S. Establish baseline: MATS Coordinate on fish consumption advice

National Park Service Air Resources Division U.S. Geological Survey FRESC Contaminant Ecology Lab Colleen Flanagan Pritz colleen_flanagan@nps.gov 303-969-2806 Collin Eagles-Smith ceagles-smith@usgs.gov James Willacker jwillacker@usgs.gov