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Type: | Resource | |
Storage: | The size of this resource is 727.7 KB | |
Created: | Sep 28, 2023 at 3:56 p.m. | |
Last updated: | Oct 02, 2023 at 12:41 p.m. (Metadata update) | |
Published date: | Oct 02, 2023 at 12:41 p.m. | |
DOI: | 10.4211/hs.a9d8777c1dea4b13a42022b962f0d0ae | |
Citation: | See how to cite this resource | |
Content types: | Single File Content |
Sharing Status: | Published |
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Views: | 1526 |
Downloads: | 38 |
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Abstract
This resource contains accompanying stream water chemistry data (major cations and anions) and discharge data presented in Sampling frequency, load estimation and the disproportionate effect of storms on solute mass flux in rivers" by Wang et al. The dataset represents 30-min frequency time series data of major ion concentrations and discharge from 2021/08/20 to 2022/07/15 of Sangamon River obtained from the RiverLab.
Files are provided in ".csv" format.
CZO site and time range investigated for this study:
Sangamon River, IML-CZO (Illinois, USA) - August 20 2021 to July 15 2022
Site specific description is provided in the manuscript.
Subject Keywords
Coverage
Spatial
Temporal
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Content
readme.txt
This resource contains accompanying stream water chemistry data (major cations and anions) and discharge data presented in Sampling frequency, load estimation and the disproportionate effect of storms on solute mass flux in rivers" by Wang et al. The dataset represents 30-min frequency time series data of major ion concentrations and discharge from 2021/08/20 to 2022/07/15 of Sangamon River obtained from the RiverLab. Files are provided in ".csv" format. CZO site and time range investigated for this study: Sangamon River, IML-CZO (Illinois, USA) - August 20 2021 to July 15 2022 Site specific description is provided in the manuscript.
Related Resources
The content of this resource is derived from | Wang, J., Bouchez, J., Dolant, A., Floury, P., Stumpf, A. J., Bauer, E., Keefer, L., Gaillardet, J., Kumar, P., & Druhan, J. L. (2023). Sampling frequency, load estimation and the disproportionate effect of storms on solute mass flux in rivers. Science of The Total Environment, 167379. https://doi.org/10.1016/j.scitotenv.2023.167379 |
Credits
Funding Agencies
This resource was created using funding from the following sources:
Agency Name | Award Title | Award Number |
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National Science Foundation | Network Cluster CINet: Critical Interface Network in Intensively Managed Landscapes | EAR-2012850 |
Contributors
People or Organizations that contributed technically, materially, financially, or provided general support for the creation of the resource's content but are not considered authors.
Name | Organization | Address | Phone | Author Identifiers |
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Erin Bauer | University of Illinois at Urbana-Champaign, Illinois State Water Survey | |||
Paul Floury | Extralab company | |||
Andrew J. Stumpf | University of Illinois at Urbana-Champaign, Illinois State Geological Survey | |||
Jennifer L. Druhan | University of Illinois Urbana-Champaign | |||
Jinyu Wang | University of Illinois Urbana-Champaign | |||
Laura Keefer | University of Illinois at Urbana-Champaign, Illinois State Water Survey | |||
Praveen Kumar | University of Illinois Urbana-Champaign | |||
Julien Bouchez | Institut de Physique du Globe de Paris | |||
Jérôme Gaillardet | Institut de Physique du Globe de Paris | |||
Antoine Dolant | University of Illinois Urbana-Champaign |
How to Cite
This resource is shared under the Creative Commons Attribution CC BY.
http://creativecommons.org/licenses/by/4.0/
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