Emily S. Bernhardt
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Recent Grants
Grant: Close
LTREB: Streams to Screens: Bringing the Hubbard Brook Watershed Ecosystem Record (HB-WatER) into the 21st Century
Open Date: 2019-07-01
Close Date: 2024-06-30
Grant: Close
SG: Microbial Community Coalescence: Disentangling Assembly Processes during Aquatic Mixing
Open Date: 2018-03-01
Close Date: 2020-02-29
Grant: Close
DISSERTATION RESEARCH: Will Ecosystem Recovery From Acid Precipitation Jeopardize Soil Carbon Storage?
Open Date: 2017-06-01
Close Date: 2019-05-31
Grant: Close
DISSERTATION RESEARCH: Pulsed and Pressed: the Interactive Effects of Disturbance Intensity and Complex Chemical Exposure on the Productivity of Urban Stream Ecosystems
Open Date: 2016-07-01
Close Date: 2018-03-31
Grant: Close
COLLABORATIVE RESEARCH: Defining Stream Biomes to Better Understand and Forecast Stream Ecosystem Change
Open Date: 2015-09-15
Close Date: 2020-08-31
Articles (10)
Density declines, richness increases, and composition shifts in stream macroinvertebrates
Documenting trends of stream macroinvertebrate biodiversity is challenging because biomonitoring often has limited spatial, temporal, and taxonomic scopes. We analyzed biodiversity and composition of assemblages of >500 genera, spanning 27 years, and 6131 stream sites across forested, grassland, urban, and agricultural land uses throughout the United States. In this dataset, macroinvertebrate density declined by 11% and richness increased by 12.2%, and insect density and richness declined by 23.3 and 6.8%, respectively, over 27 years. In addition, differences in richness and composition between urban and agricultural versus forested and grassland streams have increased over time. Urban and agricultural streams lost the few disturbance-sensitive taxa they once had and gained disturbance-tolerant taxa. These results suggest that current efforts to protect and restore streams are not sufficient to mitigate anthropogenic effects.
Year:
2023
<scp>MacroSheds</scp>: A synthesis of long‐term biogeochemical, hydroclimatic, and geospatial data from small watershed ecosystem studies
The US Federal Government supports hundreds of watershed monitoring efforts from which solute fluxes can be calculated. Although instrumentation and methods vary between studies, the data collected and their motivating questions are remarkably similar. Nevertheless, little effort toward their compilation has previously been made. The MacroSheds project has developed a future‐friendly system for harmonizing daily time series of streamflow, precipitation, and solute chemistry from 169+ watersheds, and supplementing each with watershed attributes. Here, we describe the breadth of MacroSheds data, and detail the steps involved in rendering each data product. We provide recommendations for usage and discuss when other datasets might be more suitable. The MacroSheds dataset is an unprecedented resource for watershed science, and for hydrology, as a small‐watershed supplement to existing collections of streamflow predictors, like CAMELS and GAGES‐II. The MacroSheds platform includes a web dashboard for visualization and an R package for data access and analysis.
Year:
2023
Collaborators (13)
Robert Hall
University of Montana
Kelly Aho
Assistant Professor
Michigan State University
Jason R. Rohr
University of Notre Dame
Matthew Waters
Assistant Professor
Auburn University
Taylor Maavara
University of Leeds
Luis Fernandez
Research Associate Professor
Wake Forest University
Emily Stanley
Professor
University of Wisconsin-Madison
F. De Laender
-
Enrico Bertuzzo
Full Professor
Università Ca' Foscari
Ronny Lauerwald
Université Paris-Saclay
Heileen Hsu-Kim
Professor
Duke University
Matthew R. V. Ross
-
Erin Hotchkiss
Associate Professor
Virginia Tech

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