T. G. Teague Data-verified
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Biography and Research Information
OverviewAI-generated summary
T. G. Teague's research focuses on the impact of conservation practices on agricultural systems, particularly in the context of row crop agriculture within the Lower Mississippi River Basin. Their work investigates how these practices influence sediment and nutrient loads, as well as greenhouse gas emissions from commercial cotton fields. Teague has explored the use of modeling tools, such as APEX, to simulate the effects of conservation management and irrigation on crop yield and environmental factors. This research contributes to understanding the field-scale impacts of conservation strategies on water quality and agricultural sustainability. Teague has authored or co-authored 84 publications, with a total of 281 citations and an h-index of 9. Recent publications in 2024 and 2025 indicate ongoing activity in this research area. Key collaborators include Sandhya Karki from the University of Arkansas at Fayetteville and Anna M. Pieri from the Arkansas Agricultural Experiment Station.
Metrics
- h-index: 9
- Publications: 84
- Citations: 287
Selected Publications
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Effect of conservation management practices and irrigation on cotton yield and greenhouse gas emissions (2025)
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Modeling of conservation practices’ effects on nutrients and sediment load reduction from commercial cotton fields using APEX (2025)
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Effect of Conservation Management Practices and Irrigation on Cotton Yield and Greenhouse Gas Emissions (2025)
Collaboration Network
Top Collaborators
- Effects of Cover Crop and Filter Strips on Sediment and Nutrient Loads Measured at the Edge of a Commercial Cotton Field
- Impact of Conservation Practices at the Field-scale on Sediment Loss and Water Quality in Row Crop Agriculture in the Lower Mississippi River Basin
- Impact of Conservation Practices at the Field-scale on Sediment Loss and Water Quality in Row Crop Agriculture in the Lower Mississippi River Basin
- Effect of Conservation Management Practices and Irrigation on Cotton Yield and Greenhouse Gas Emissions
- Modeling of conservation practices’ effects on nutrients and sediment load reduction from commercial cotton fields using APEX
Showing 5 of 6 shared publications
- Effects of Cover Crop and Filter Strips on Sediment and Nutrient Loads Measured at the Edge of a Commercial Cotton Field
- Impact of Conservation Practices at the Field-scale on Sediment Loss and Water Quality in Row Crop Agriculture in the Lower Mississippi River Basin
- Impact of Conservation Practices at the Field-scale on Sediment Loss and Water Quality in Row Crop Agriculture in the Lower Mississippi River Basin
- Modeling of conservation practices’ effects on nutrients and sediment load reduction from commercial cotton fields using APEX
- Impact of Conservation Practices at the Field-scale on Sediment Loss and Water Quality in Row Crop Agriculture in the Lower Mississippi River Basin
- Impact of Conservation Practices at the Field-scale on Sediment Loss and Water Quality in Row Crop Agriculture in the Lower Mississippi River Basin
- Effects of Cover Crop and Filter Strips on Sediment and Nutrient Loads Measured at the Edge of a Commercial Cotton Field
- Modeling of conservation practices’ effects on nutrients and sediment load reduction from commercial cotton fields using APEX
- Effects of Cover Crop and Filter Strips on Sediment and Nutrient Loads Measured at the Edge of a Commercial Cotton Field
- Modeling of conservation practices’ effects on nutrients and sediment load reduction from commercial cotton fields using APEX
- Effect of Conservation Management Practices and Irrigation on Cotton Yield and Greenhouse Gas Emissions
- Effect of conservation management practices and irrigation on cotton yield and greenhouse gas emissions
- Effect of Conservation Management Practices and Irrigation on Cotton Yield and Greenhouse Gas Emissions
- Effect of conservation management practices and irrigation on cotton yield and greenhouse gas emissions
- Effects of Cover Crop and Filter Strips on Sediment and Nutrient Loads Measured at the Edge of a Commercial Cotton Field
- Effect of Conservation Management Practices and Irrigation on Cotton Yield and Greenhouse Gas Emissions
- Effect of Conservation Management Practices and Irrigation on Cotton Yield and Greenhouse Gas Emissions
- Modeling of conservation practices’ effects on nutrients and sediment load reduction from commercial cotton fields using APEX
- Effect of conservation management practices and irrigation on cotton yield and greenhouse gas emissions
- Effect of conservation management practices and irrigation on cotton yield and greenhouse gas emissions
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