Sources, timing, and fate of sediment and contaminants in the nearshore: insights from geochemistry
Renee K. Takesue, Kathleen E. Conn, Margaret Dutch
2019, Conference Paper, 2018 Salish Sea Toxics Monitoring Synthesis: A Selection of Research
Rivers in Cascade watersheds carry sediment with a volcanic composition that is distinct from the plutonic composition of the Puget lowlands. Compositional properties (signatures) allow discrimination of river-sourced Cascade from lowland sediment, and inferences about transport pathways. Surface sediment on land contains atmospheric radionuclides whose known decay rates define monthly...
Pallid sturgeon basin-wide contaminants assessment
Molly A. H. Webb, Diana Papoulias, David Rouse, Steve Alexander, Mandy L. Annis, Michael Coffey, Kevin Johnson, Aleshia Kenney, Mike McKee, Lourdes Mena, Karen Nelson, Matt Schwarz
2019, Report
Pallid sturgeon (Scaphirhynchus albus), listed as endangered in 1990 under the federal Endangered Species Act (United States Fish and Wildlife Service (USFWS), 1990), have declined due to habitat loss, commercial fishing, and hybridization. Pollution in the Missouri and Mississippi Rivers has to-date only received minor attention as a factor in...
Understanding the central Great Plains as a coupled climatic-hydrological-human system: Lessons learned in operationalizing interdisciplinary collaboration
Marcellus M. Caldas, Martha E. Mather, Jason S. Bergtold, Melinda Daniels, Gabriel Granco, Joseph Aistrup, David A. Haukos, Aleksey Y. Sheshukov, Matthew R. Sanderson, Jessica L. Heier Stamm
2019, Book chapter, Collaboration across boundaries for social-ecological systems science
This chapter discusses an interdisciplinary and transdisciplinary project to understand the interactions of agriculture, climate, and water resources in the Central Great Plains as a coupled natural-human system. We focus on the Smoky Hills Watershed in Kansas, where we gathered socioeconomic, hydrological, and climatic data, along with ecological data on...
Comparison of groundwater age models for assessing nitrate loading, transport pathways, and management options in a complex aquifer system
E.H. Koh, E. Lee, D. Kaown, Christopher Green, D.C. Koh, K.K Lee, Sangil Lee
2019, Hydrological Processes (32) 923-938
In an aquifer system with complex hydrogeology, mixing of groundwater with different ages could occur associated with various flow pathways. In this study, we applied different groundwater age estimation techniques (lumped parameter model, and numerical model) to characterize groundwater age distributions and the major pathways of nitrate contamination in the...
Observations of mixing and transport on a steep beach
Jenna A. Brown, Jamie H. MacMahan, Ad J. H. M. Reniers, Ed B. Thornton, Alan L. Shanks, Steven G. Morgan, Edie L. Gallagher
2019, Continental Shelf Research (178) 1-14
Surfzone mixing and transport on a sandy, steep (∼1/8 slope), reflective beach at Carmel River State Beach, California, are described for a range of wave and alongshore flow conditions. Depth-limited wave breaking occurred close to the shore due to the steepness of the beach, creating a narrow surf/swash zone (∼10 m...
Lotic freshwater: Rivers
Ellen Wohl, R. O. Hall Jr., David Walters
2019, Book chapter, Encyclopedia of the World’s Biomes
Ecosystems associated with rivers are intricately connected to their entire watershed. The river ecosystem includes the channel of active water flow, floodplain, and riparian and hyporheic zones. This ecosystem is shaped by interactions among the natural flow of water, sediments within the river and entering the river, and large wood...
Prominence of the tropics in the recent rise of global nitrogen pollution
Minjin Lee, Elena Shevliakova, Charles A. Stock, Sergey Malyshev, Paul C. D. Milly
2019, Nature Communications (10)
Nitrogen (N) pollution is shaped by multiple processes, the combined effects of which remain uncertain, particularly in the tropics. We use a global land biosphere model to analyze historical terrestrial-freshwater N budgets, considering the effects of anthropogenic N inputs, atmospheric CO2, land use, and climate. We estimate that globally, land...
Serologic evidence for influenza A virus exposure in three loon species (Gavia spp.) breeding in Alaska
Brian D. Uher-Koch, Timothy J. Spivey, Caroline R. Van Hemert, Joel A. Schmutz, Kaijun Jiang, Xiu-Feng Wan, Andrew M. Ramey
2019, Journal of Wildlife Diseases (55) 862-867
Limited information exists about exposure to influenza A viruses (IAVs) in many wild waterbird species, including loons. We analyzed serum samples from breeding adult Pacific (Gavia pacifica), Red-throated (Gavia stellata), and Yellow-billed (Gavia adamsii) loons sampled at three locations along the coast of Alaska, US from 2008 to 2017 to...
Geology and biostratigraphy of the Upper Floridan aquifer in the greater Savannah region, Georgia and South Carolina
Jean Self-Trail, Mercer Parker, John T. Haynes, Arthur P. Schultz, Paul. F. Huddleston
2019, Stratigraphy (16) 41-62
The Upper Floridan aquifer (UFA) of South Carolina, Georgia, Alabama, Mississippi, and Florida has been considered a regionally continuous stratigraphic sequence of Eocene to Miocene carbonate strata, with documented unconformities based on lithology and biostratigraphy. As part of an investigation of the regional subsurface geologic framework in the Atlantic Coastal...
Biological effects of elevated major ions in surface water contaminated by a produced water from oil production
Ning Wang, James L. Kunz, Danielle M. Cleveland, Jeffery A. Steevens, Isabelle M. Cozzarelli
2019, Archives of Environmental Contamination and Toxicology (76) 670-677
Produced water (PW) from oil and gas extraction processes has been shown to contain elevated concentrations of major ions. The objective of this study was to determine the potential effects of elevated major ions in PW-contaminated surface water on a fish (fathead minnow, Pimephales promelas) and a unionid mussel (fatmucket,...
Assessing patterns of annual change to permafrost bluffs along the North Slope coast of Alaska using high-resolution imagery and elevation models
Ann E. Gibbs, Matt Nolan, Bruce M. Richmond, Alexander G. Snyder, Li Erikson
2019, Geomorphology (336) 152-164
Coastal permafrost bluffs at Barter Island, on the North Slope, Beaufort Sea Coast of Alaska are among the most rapidly eroding along Alaska’s coast, having retreated up to 132 m between 1955 and 2015. Here we quantify rates and patterns of change over a single year using very-high resolution orthophotomosaics...
Effects of age and environment on stable carbon isotope ratios in tree rings of riparian Populus
Jonathan M. Friedman, Craig A. Stricker, Adam Z Csank, Honghua Zhou
2019, Palaeogeography, Palaeoclimatology, Palaeoecology (524) 25-32
Stable carbon isotopes of riparian tree rings are enabling improved reconstruction of past climate variability, but this advance is limited by difficulty distinguishing the effects of tree age from those of climate. We investigated relative influence of age and climate trends in genus Populus, which dominates floodplain forests in Europe,...
HyCReWW: A hybrid coral reef wave and water level metamodel
Ana C. Rueda, Laura Cagigal, Stuart Pearson, Jose Antolínez, Curt D. Storlazzi, Ap van Dongeren, Paula Camus, Fernando J. Mendez
2019, Computers & Geosciences (127) 85-90
Wave-induced flooding is a major coastal hazard on tropical islands fronted by coral reefs. The variability of shape, size, and physical characteristics of the reefs across the globe make it difficult to obtain a parameterization of wave run-up, which is needed for risk assessments. Therefore, we developed the HyCReWW metamodel...
Wetland drying linked to variations in snowmelt runoff across Grand Teton and Yellowstone national parks
Andrew M. Ray, Adam J. Sepulveda, Kathryn M. Irvine, Siri K.C. Wilmoth, David P. Thoma, Debra A. Patla
2019, Science of the Total Environment (666) 1188-1197
In Grand Teton and Yellowstone national parks wetlands offer critical habitat and play a key role in supporting biological diversity. The shallow depths and small size of many wetlands make them vulnerable to changes in climate compared with larger and deeper aquatic habitats. Here, we use a simple water balance...
Improving eDNA yield and inhibitor reduction through increased water volumes and multi-filter isolation techniques
Margaret Hunter, Jason Ferrante, Gaia Meigs-Friend, Amelia Ulmer
2019, Scientific Reports (9)
To inform management and conservation decisions, environmental DNA (eDNA) methods are used to detect genetic material shed into the water by imperiled and invasive species. Methodological enhancements are needed to reduce filter clogging, PCR inhibition, and false-negative detections when eDNA...
The natural wood regime in rivers
Ellen Wohl, Natalie Kramer, Virgina Ruiz-Villanueva, Daniel Scott, F. Comiti, Angela M Gurnell, Herve Piegay, Katherine B. Lininger, Kristin Jaeger, David Walters, Kurt D. Fausch
2019, BioScience (69) 259-273
The natural wood regime forms the third leg of a tripod of physical processes that supports river science and management, along with the natural flow and sediment regimes. The wood regime consists of wood recruitment, transport, and storage in river corridors. Each of these components can be characterized in terms...
Energy allocation and feeding ecology of juvenile chum salmon (Oncorhynchus keta) during transition from freshwater to saltwater
Sean E. Burril, Vanessa R. von Biela, Nicola Hillbruber, Christian E. Zimmerman
2019, Polar Biology (41) 1447-1461
Pacific salmon (Oncorhynchus spp.) populations near their northern range extent in the Arctic-Yukon-Kuskokwim region of Alaska have undergone major changes in population trajectory and illuminated the lack of basic information on juvenile ecology. This study fills information gaps on the early life history of chum salmon at northern latitudes. Energy...
Measurement of long-term channel change through repeated cross-section surveys at bridge crossings in Alaska
Karenth L. Dworsky, Jeffrey S. Conaway
2019, Open-File Report 2019-1028
The U.S. Geological Survey (USGS) has been working with Alaska Department of Transportation and Public Facilities (ADOT&PF) since 1993 to provide hydraulic assessments of scour for bridges throughout Alaska. The purpose of the program is to evaluate, monitor, and study streambed scour at bridges in Alaska; this includes surveying...
Mid-latitude net precipitation decreased with Arctic warming during the Holocene
Cody Routson, Nicholas McKay, Darrell Kaufman, Hugues Goosse, Bryan Shuman, Jessica Rodysill, Toby Ault
2019, Nature (568) 83-87
The latitudinal temperature gradient between the Equator and the poles influences atmospheric stability, the strength of the jet stream and extratropical cyclones. Recent global warming is weakening the annual surface gradient in the Northern Hemisphere by preferentially warming the high...
Laboratory for Infectious Disease and the Environment (LIDE)
Joel P. Stokdyk, Jennifer L. Bruce, Tucker R. Burch, Susan K. Spencer, Aaron D. Firnstahl, Mark A. Borchardt
2019, Fact Sheet 2018-3079
The Laboratory for Infectious Disease and the Environment (LIDE) studies the occurrence, fate and transport, and health effects of human and agricultural zoonotic pathogens in the environment. The LIDE is an interagency collaborative effort between the U.S. Geological Survey and the U.S. Department of Agriculture-Agricultural Research Service that conducts research...
Does perspective matter? A case study comparing Eulerian and Lagrangian estimates of common murre (Uria aalge) distributions
Elizabeth M. Phillips, John K. Horne, Jeannette E. Zamon, Jonathan J. Felis, Josh Adams
2019, Ecology and Evolution (9) 4805-4819
Studies estimating species' distributions require information about animal locations in space and time. Location data can be collected using surveys within a predetermined frame of reference (i.e., Eulerian sampling) or from animal‐borne tracking devices (i.e., Lagrangian sampling). Integration of observations obtained from Eulerian and Lagrangian perspectives can provide insights into...
Radiometric calibration of a non-imaging airborne spectrometer to measure the Greenland ice sheet surface
Christopher J. Crawford, Jeannette van den Bosch, Kelly M. Brunt, Milton G. Hom, John W. Cooper, David J. Harding, James J. Butler, Philip W. Dabney, Thomas A. Neumann, Craig S. Cleckner, Thorsten Markus
2019, Atmospheric Measurement Techniques (12) 1913-1933
Methods to radiometrically calibrate a non-imaging airborne visible-to-shortwave infrared (VSWIR) spectrometer to measure the Greenland ice sheet surface are presented. Airborne VSWIR measurement performance for bright Greenland ice and dark bare rock/soil targets is compared against the MODerate resolution atmospheric TRANsmission (MODTRAN®) radiative transfer code (version 6.0), and a coincident...
Agricultural chemical concentrations and loads in rivers draining the Central Valley, California: Before, during, and after an extended drought
Joseph L. Domagalski
2019, Book chapter, Pesticides in surface water: Monitoring, modeling, risk assessment, and management
Drought or near drought conditions persisted in California from 2012 through 2016, followed by a high precipitation year in 2017. Long-term water quality monitoring of two key river stations, the Sacramento River at Freeport and the San Joaquin River near Vernalis, located within the largely agricultural Central Valley, allow...
Plant richness and composition in hardwood forest understories vary along an acidic deposition and soil-chemical gradient in the northeastern United States
Michael R. Zarfos, Martin Dovciak, Gregory B. Lawrence, Todd C. McDonnell, Timothy J. Sullivan
2019, Plant and Soil (438) 461-477
AimsA century of atmospheric deposition of sulfur and nitrogen has acidified soils and undermined the health and recruitment of foundational tree species in the northeastern US. However, effects of acidic deposition on the forest understory plant communities of this region are poorly documented. We investigated how forest understory...
Methane emissions from groundwater pumping in the USA
Justin T. Kulongoski, Peter B. McMahon
2019, Climate and Atmospheric Science (2) 1-8
Atmospheric methane accumulation contributes to climate change, hence quantifying methane emissions is essential to assess and model the impacts. Here we estimate methane emissions from groundwater pumping in the Los Angeles Basin (LAB), north-eastern Pennsylvania, and the Principal aquifers of the USA using the average concentrations of methane in groundwater...