Publications
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Late Paleozoic flexural extension and overprinting shortening in the southern Ozark dome, Arkansas, USA: Evolving fault kinematics in the foreland of the Ouachita orogen Late Paleozoic flexural extension and overprinting shortening in the southern Ozark dome, Arkansas, USA: Evolving fault kinematics in the foreland of the Ouachita orogen
Faults and folds on the southern flank of the Ozark dome in northern Arkansas, USA, record flexural extension in a foreland area followed by shortening in response to the late Paleozoic Ouachita orogeny. Map-scale structures and an analysis of fault-slip data collected systematically during geologic mapping demonstrate that most deformation in the area accommodated north-south extension...
Authors
Mark R. Hudson, Kenzie J. Turner
Luminescence sediment tracing reveals the complex dynamics of colluvial wedge formation Luminescence sediment tracing reveals the complex dynamics of colluvial wedge formation
Paleoearthquake studies that inform seismic hazard rely on assumptions of sediment transport that remain largely untested. Here, we test a widespread conceptual model and a new numerical model on the formation of colluvial wedges, a key deposit used to constrain the timing of paleoearthquakes. We perform this test by applying luminescence, a sunlight-sensitive sediment tracer, at a field...
Authors
Harrison J. Gray, Christopher B. DuRoss, Sylvia Nicovich, Ryan D. Gold
The importance of lake emergent aquatic vegetation for estimating Arctic-boreal methane emissions The importance of lake emergent aquatic vegetation for estimating Arctic-boreal methane emissions
Areas of lakes that support emergent aquatic vegetation emit disproportionately more methane than open water but are under-represented in upscaled estimates of lake greenhouse gas emissions. These shallow areas are typically less than ∼1.5 m deep and can be detected with synthetic aperture radar (SAR). To assess the importance of lake emergent vegetation (LEV) zones to landscape-scale...
Authors
Ethan D. Kyzivat, Laurence C. Smith, Fenix Garcia-Tigreros, Chang Huang, Chao Wang, Theodore Langhorst, Jessica V. Fayne, Merritt E. Harlan, Yuta Ishitsuka, Dongmei Feng, Wayana Dolan, Lincoln H. Pitcher, Kimberly Wickland, Mark Dornblaser, Robert G. Striegl, Tamlin M. Pavelsky, David E. Butman, Colin J. Gleason
Opportunities for businesses to use and support development of SEEA-aligned natural capital accounts Opportunities for businesses to use and support development of SEEA-aligned natural capital accounts
Global understanding of the interconnections between the environment and economy has increased, driving the development of frameworks and standards that support the measurement and valuation of natural capital and ecosystem services by both governments and businesses. This paper outlines how businesses can use natural capital accounts (NCA) aligned to the System of Environmental Economic
Authors
Jane Carter Ingram, Kenneth J. Bagstad, Michael Vardon, Charles Rhodes, Stephen M. Posner, Clyde F. Casey, Pierre D. Glynn, Carl D. Shapiro
Counterfactuals to assess effects to species and systems from renewable energy development Counterfactuals to assess effects to species and systems from renewable energy development
Renewable energy production, mostly via wind, solar, and biofuels, is central to goals worldwide to reduce carbon emissions and mitigate anthropogenic climate change (IPCC, 2014; Pörtner et al., 2021). Nevertheless, adverse impacts to natural systems, especially fatalities of wildlife and alteration of habitat, are key challenges for renewable energy production (Allison et al., 2019...
Authors
Todd E. Katzner, Taber D Allison, Jay E. Diffendorfer, Amanda Hale, Eric J. Lantz, Paul Veers
A new indicator approach to reconstruct agricultural land use in Europe from sedimentary pollen assemblages A new indicator approach to reconstruct agricultural land use in Europe from sedimentary pollen assemblages
The reconstruction of human impact is pivotal in palaeoecological studies, as humans are among the most important drivers of Holocene vegetation and ecosystem change. Nevertheless, separating the anthropogenic footprint on vegetation dynamics from the impact of climate and other environmental factors (disturbances such as fire, erosion, floods, landslides, avalanches, volcanic eruptions)...
Authors
Mara Deza-Araujo, Cesar Morales-Molino, Marco Conedera, Paul D. Henne, Patrick Krebs, Martin Hinz, Caroline Heitz, Albert Hafner, Willy Tinner
Water-use data in the United States: Challenges and future directions Water-use data in the United States: Challenges and future directions
In the United States, greater attention has been given to developing water supplies and quantifying available waters than determining who uses water, how much they withdraw and consume, and how and where water use occurs. As water supplies are stressed due to an increasingly variable climate, changing land-use, and growing water needs, greater consideration of the demand side of the...
Authors
Landon Marston, Abdel Abdallah, Kenneth J. Bagstad, Kerim Dickson, Pierre D. Glynn, Sara Larsen, Forrest Melton, Kyle Onda, Jaime A. Painter, James Prairie, Benjamin Ruddell, Richard Rushforth, Gabriel B. Senay, Kimberly Shaffer
Hydroclimate response of spring ecosystems to a two-stage Younger Dryas event in western North America Hydroclimate response of spring ecosystems to a two-stage Younger Dryas event in western North America
The Younger Dryas (YD) climate event is the preeminent example of abrupt climate change in the recent geologic past. Climate conditions during the YD were spatially complex, and high-resolution sediment cores in the North Atlantic, western Europe, and East Asia have revealed it unfolded in two distinct stages, including an initial stable climatic period between ~ 12.9 and 12.2 ka...
Authors
Jeffrey S. Pigati, Kathleen B. Springer
Spatially averaged stratigraphic data to inform watershed sediment routing: An example from the Mid-Atlantic United States Spatially averaged stratigraphic data to inform watershed sediment routing: An example from the Mid-Atlantic United States
New and previously published stratigraphic data define Holocene to present sediment storage time scales for Mid-Atlantic river corridors. Empirical distributions of deposit ages and thicknesses were randomly sampled to create synthetic age-depth records. Deposits predating European settlement accumulated at a (median) rate of 0.06 cm yr−1, range from ∼18,000 to 225 yr old, and represent...
Authors
James Pizzuto, Katherine Skalak, Adam J. Benthem, Shannon A. Mahan, Mahmoud Sherif, Adam Pearson
Determination of optimal set of spatio-temporal features for predicting burn probability in the state of California, USA Determination of optimal set of spatio-temporal features for predicting burn probability in the state of California, USA
Wildfires play a critical role in determining ecosystem structure and function and pose serious risks to human life, property and ecosystem services. Burn probability (BP) models the likelihood that a location could burn. Simulation models are typically used to predict BP but are computationally intensive. Machine learning (ML) pipelines can predict BP and reduce computational intensity...
Authors
Javier Andres Pastorino Gonzalez, Joseph Willliams Director, Ashis K Biswas, Todd Hawbaker
Central Andean (28–34°S) flood record 0–25 ka from Salinas del Bebedero, Argentina Central Andean (28–34°S) flood record 0–25 ka from Salinas del Bebedero, Argentina
The Salinas del Bebedero occupies an isolated basin in the foreland of central Argentina at 33°S and was flooded repeatedly over past 25 ka. Isotopic evidence demonstrates that this flooding was due to overflow of the nearby Río Desaguadero with waters derived from the distant (≥300 km) central Andes between 28–34°S. Stratigraphic and shoreline evidence shows that floods occurred most...
Authors
Jay Quade, Elad Dente, Allison Cartwright, Adam M. Hudson, Sebastian Jimenez, David McGee
A geomorphic-process-based cellular automata model of colluvial wedge morphology and stratigraphy A geomorphic-process-based cellular automata model of colluvial wedge morphology and stratigraphy
The development of colluvial wedges at the base of fault scarps following normal-faulting earthquakes serves as a sedimentary record of paleoearthquakes and is thus crucial in assessing seismic hazard. Although there is a large body of observations of colluvial wedge development, connecting this knowledge to the physics of sediment transport can open new frontiers in our understanding...
Authors
Harrison J. Gray, Christopher B. DuRoss, Sylvia Nicovich, Ryan D. Gold