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Not all publications have extents, not all extents are completely accurate
Biological soil crusts: An organizing principle in dryland ecosystems (aka: the role of biocrusts in arid land hydrology)
Sonia Chamizo, Jayne Belnap, David J Elridge, Oumarou M Issa
2016, Book chapter, Ecological studies
Biocrusts exert a strong influence on hydrological processes in drylands by modifying numerous soil properties that affect water retention and movement in soils. Yet, their role in these processes is not clearly understood due to the large number of factors that act simultaneously and can mask the biocrust effect. The...
Spatially explicit modeling of annual and seasonal habitat for greater sage-grouse (Centrocercus urophasianus) in Nevada and Northeastern California—An updated decision-support tool for management
Peter S. Coates, Michael L. Casazza, Brianne E. Brussee, Mark A. Ricca, K. Benjamin Gustafson, Erika Sanchez-Chopitea, Kimberly Mauch, Lara Niell, Scott Gardner, Shawn Espinosa, David J. Delehanty
2016, Open-File Report 2016-1080
Successful adaptive management hinges largely upon integrating new and improved sources of information as they become available. As a timely example of this tenet, we updated a management decision support tool that was previously developed for greater sage-grouse (Centrocercus urophasianus, hereinafter referred to as “sage-grouse”) populations in Nevada and California....
Dendritic network models: Improving isoscapes and quantifying influence of landscape and in-stream processes on strontium isotopes in rivers
Sean R. Brennan, Christian E. Torgersen, Jeff P. Hollenbeck, Diego P. Fernandez, Carrie K Jensen, Daniel E. Schindler
2016, Geophysical Research Letters (43) 5043-5051
A critical challenge for the Earth sciences is to trace the transport and flux of matter within and among aquatic, terrestrial, and atmospheric systems. Robust descriptions of isotopic patterns across space and time, called “isoscapes,” form the basis of a rapidly growing and wide-ranging body of research aimed at quantifying...
Toward improved simulation of river operations through integration with a hydrologic model
Eric D. Morway, Richard G. Niswonger, Enrique Triana
2016, Environmental Modelling and Software 255-274
Advanced modeling tools are needed for informed water resources planning and management. Two classes of modeling tools are often used to this end–(1) distributed-parameter hydrologic models for quantifying supply and (2) river-operation models for sorting out demands under rule-based systems such as the prior-appropriation doctrine. Within each of these two...
Storm-event-transport of urban-use pesticides to streams likely impairs invertebrate assemblages
Kurt D. Carpenter, Kathryn Kuivila, Michelle Hladik, Tana Haluska, Michael B. Cole
2016, Environmental Monitoring and Assessment (188)
Insecticide use in urban areas results in the detection of these compounds in streams following stormwater runoff at concentrations likely to cause toxicity for stream invertebrates. In this 2013 study, stormwater runoff and streambed sediments were analyzed for 91 pesticides dissolved in water and 118 pesticides on sediment. Detections included...
A partial exponential lumped parameter model to evaluate groundwater age distributions and nitrate trends in long-screened wells
Bryant C. Jurgens, John Karl Bohlke, Leon J. Kauffman, Kenneth Belitz, Bradley K. Esser
2016, Journal of Hydrology (543) 109-126
A partial exponential lumped parameter model (PEM) was derived to determine age distributions and nitrate trends in long-screened production wells. The PEM can simulate age distributions for wells screened over any finite interval of an aquifer that has an exponential distribution of age with depth. The PEM has...
Regional oxygen reduction and denitrification rates in groundwater from multi-model residence time distributions, San Joaquin Valley, USA
Christopher T. Green, Bryant C. Jurgens, Yong Zhang, Jeffrey Starn, Michael J. Singleton, Bradley K. Esser
2016, Journal of Hydrology (145) 47-55
Rates of oxygen and nitrate reduction are key factors in determining the chemical evolution of groundwater. Little is known about how these rates vary and covary in regional groundwater settings, as few studies have focused on regional datasets with multiple tracers and methods of analysis that account for effects of...
Decadal-scale export of nitrogen, phosphorus, and sediment from the Susquehanna River basin, USA: Analysis and synthesis of temporal and spatial patterns
Qian Zhang, William P. Ball, Douglas L. Moyer
2016, Science of the Total Environment (563-564) 1016-1029
The export of nitrogen (N), phosphorus (P), and suspended sediment (SS) is a long-standing management concern for the Chesapeake Bay watershed, USA. Here we present a comprehensive evaluation of nutrient and sediment loads over the last three decades at multiple locations in the Susquehanna River basin (SRB), Chesapeake's largest tributary...
Tidal saline wetland regeneration of sentinel vegetation types in the Northern Gulf of Mexico: An overview
Scott F. Jones, Camille L. Stagg, Ken W. Krauss, Mark W. Hester
2016, Estuarine, Coastal and Shelf Science (174) A1-A10
Tidal saline wetlands in the Northern Gulf of Mexico (NGoM) are dynamic and frequently disturbed systems that provide myriad ecosystem services. For these services to be sustained, dominant macrophytes must continuously recolonize and establish after disturbance. Macrophytes accomplish this regeneration through combinations of vegetative propagation and sexual reproduction, the relative...
Latest Miocene-earliest Pliocene evolution of the ancestral Rio Grande at the Española-San Luis Basin boundary, northern New Mexico
Daniel J. Koning, Scott B. Aby, V. J. Grauch, Matthew J. Zimmerer
2016, New Mexico Geology (38) 24-49
We use stratigraphic relations, paleoflow data, and 40Ar/39Ar dating to interpret net aggradation, punctuated by at least two minor incisional events, along part of the upper ancestral Rio Grande fluvial system between 5.5 and 4.5 Ma (in northern New Mexico). The studied fluvial deposits, which we informally call the...
Climate regulates alpine lake ice cover phenology and aquatic ecosystem structure
Daniel L. Preston, Nel Caine, Diane M. McKnight, Mark W. Williams, Katherina Hell, Matthew P. Miller, Sarah J. Hart, Pieter T.J. Johnson
2016, Geophysical Research Letters (43) 5353-5360
High-elevation aquatic ecosystems are highly vulnerable to climate change, yet relatively few records are available to characterize shifts in ecosystem structure or their underlying mechanisms. Using a long-term dataset on seven alpine lakes (3126 to 3620 m) in Colorado, USA, we show that ice-off dates have shifted seven days earlier over...
Three-dimensional flow structure and patterns of bed shear stress in an evolving compound meander bend
Frank L. Engel, Bruce L. Rhoads
2016, Earth Surface Processes and Landforms (41) 1211-1226
Compound meander bends with multiple lobes of maximum curvature are common in actively evolving lowland rivers. Interaction among spatial patterns of mean flow, turbulence, bed morphology, bank failures and channel migration in compound bends is poorly understood. In this paper, acoustic Doppler current profiler (ADCP) measurements of the three-dimensional (3D)...
The ecology of methane in streams and rivers: Patterns, controls, and global significance
Emily H. Stanley, Nora J. Casson, Samuel T. Christel, John T. Crawford, Luke C. Loken, Samantha K. Oliver
2016, Ecological Monographs (86) 146-171
Streams and rivers can substantially modify organic carbon (OC) inputs from terrestrial landscapes, and much of this processing is the result of microbial respiration. While carbon dioxide (CO2) is the major end-product of ecosystem respiration, methane (CH4) is also present in many fluvial environments even though methanogenesis typically requires anoxic...
POLARIS: A 30-meter probabilistic soil series map of the contiguous United States
Nathaniel W. Chaney, Eric F Wood, Alexander B McBratney, Jonathan W Hempel, Travis W. Nauman, Colby W. Brungard, Nathan P Odgers
2016, Geoderma (274) 54-67
A new complete map of soil series probabilities has been produced for the contiguous United States at a 30 m spatial resolution. This innovative database, named POLARIS, is constructed using available high-resolution geospatial environmental data and a state-of-the-art machine learning algorithm (DSMART-HPC) to remap the Soil Survey Geographic (SSURGO) database. This...
Extremes of heat, drought and precipitation depress reproductive performance in shortgrass prairie passerines
Reesa Y. Conrey, Susan K. Skagen, Amy Yackel, Arvind O. Panjabi
2016, Ibis (158) 614-629
Climate change elevates conservation concerns worldwide because it is likely to exacerbate many identified threats to animal populations. In recent decades, grassland birds have declined faster than other North American bird species, a loss thought to be due to habitat loss and fragmentation and changing agricultural practices. Climate change poses...
Flood-inundation maps for the East Fork White River at Shoals, Indiana
Justin A. Boldt
2016, Scientific Investigations Report 2016-5036
Digital flood-inundation maps for a 5.9-mile reach of the East Fork White River at Shoals, Indiana (Ind.), were created by the U.S. Geological Survey (USGS) in cooperation with the Indiana Office of Community and Rural Affairs. The flood-inundation maps, which can be accessed through the USGS Flood Inundation Mapping Science...
Hydrologic and hydraulic analyses for the Black Fork Mohican River Basin in and near Shelby, Ohio
Carrie A. Huitger, Chad J. Ostheimer, G. F. Koltun
2016, Scientific Investigations Report 2015-5187
Hydrologic and hydraulic analyses were done for selected reaches of five streams in and near Shelby, Richland County, Ohio. The U.S. Geological Survey (USGS), in cooperation with the Muskingum Watershed Conservancy District, conducted these analyses on the Black Fork Mohican River and four tributaries: Seltzer Park Creek, Seltzer Park Tributary,...
Sediment chemistry and toxicity in Barnegat Bay, New Jersey: Pre- and post-Hurricane Sandy, 2012–13
Kristin M. Romanok, Zoltan Szabo, Timothy J. Reilly, Zafer Defne, Neil K. Ganju
2016, Marine Pollution Bulletin (107) 472-488
Hurricane Sandy made landfall in Barnegat Bay, October, 29, 2012, damaging shorelines and infrastructure. Estuarine sediment chemistry and toxicity were investigated before and after to evaluate potential environmental health impacts and to establish post-event baseline sediment-quality conditions. Trace element concentrations increased throughout Barnegat Bay up to two orders of magnitude, especially north of Barnegat Inlet, consistent with...
Resource subsidies between stream and terrestrial ecosystems under global change
Stefano Larsen, Jeffrey D. Muehlbauer, Maria Eugenia Marti Roca
2016, Global Change Biology (22) 2489-2504
Streams and adjacent terrestrial ecosystems are characterized by permeable boundaries that are crossed by resource subsidies. Although the importance of these subsidies for riverine ecosystems is increasingly recognized, little is known about how they may be influenced by global environmental change. Drawing from available evidence, in this review we propose...
Contamination with bacterial zoonotic pathogen genes in U.S. streams influenced by varying types of animal agriculture
Sheridan K. Haack, Joseph W. Duris, Dana W. Kolpin, Michael J. Focazio, Michael T. Meyer, Heather E. Johnson, Ryan J. Oster, William T. Foreman
2016, Science of the Total Environment (563-564) 340-350
Animal waste, stream water, and streambed sediment from 19 small (< 32 km2) watersheds in 12 U.S. states having either no major animal agriculture (control, n = 4), or predominantly beef (n = 4), dairy (n = 3), swine (n = 5), or poultry (n = 3) were tested for: 1) cholesterol, coprostanol, estrone, and fecal indicator bacteria (FIB) concentrations, and 2) shiga-toxin...
Evaluation of the Storm 3 data logger manufactured by WaterLOG/Xylem Incorporated—Results of bench, temperature, and field deployment testing
Gerald A. Kunkle
2016, Open-File Report 2016-1054
The Storm 3 is a browser-based data logger manufactured by WaterLOG/Xylem Incorporated that operates over a temperature range of −40 to 60 degrees Celsius (°C). A Storm logger with no built-in telemetry (Storm3-00) and a logger with built-in cellular modem (Storm3-03) were evaluated by the U.S. Geological Survey (USGS) Hydrologic...
Long-term trends in a Dimictic Lake
Dale M. Robertson, Yi-Fang Hsieh, Richard C Lathrop, Chin H Wu, Madeline Magee, David P. Hamilton
2016, Hydrology and Earth System Sciences (20) 1681-1702
 The one-dimensional hydrodynamic ice model, DYRESM-WQ-I, was modified to simulate ice cover and thermal structure of dimictic Lake Mendota, Wisconsin, USA, over a continuous 104-year period (1911–2014). The model results were then used to examine the drivers of changes in ice cover and water temperature, focusing on the responses...
Hydrologic exchanges and baldcypress water use on deltaic hummocks, Louisiana, USA
Yu-Hsin Hsueh, Jim L. Chambers, Ken W. Krauss, Scott T. Allen, Richard F. Keim
2016, Ecohydrology (9) 1452-1463
Coastal forested hummocks support clusters of trees in the saltwater–freshwater transition zone. To examine how hummocks support trees in mesohaline sites that are beyond physiological limits of the trees, we used salinity and stable isotopes (2H and 18O) of water as tracers to understand water fluxes in hummocks and uptake...
Challenges for mapping cyanotoxin patterns from remote sensing of cyanobacteria
Rick P Stumpf, Timothy W. Davis, Timothy T. Wynne, Jennifer L. Graham, Keith A. Loftin, T.H. Johengen, D. Gossiaux, D. Palladino, A. Burtner
2016, Harmful Algae (54) 160-173
Using satellite imagery to quantify the spatial patterns of cyanobacterial toxins has several challenges. These challenges include the need for surrogate pigments – since cyanotoxins cannot be directly detected by remote sensing, the variability in the relationship between the pigments and cyanotoxins – especially microcystins (MC), and the lack of...