Related Experiment Video
Updated: Jun 29, 2025

06:26
Capturing Flow-weighted Water and Suspended Particulates from Agricultural Canals During Drainage Events
Published on: November 7, 2017
16.1K
Gypsum amendment of agricultural fields to decrease phosphorus losses - Evidence on a catchment scale.
Petri Ekholm1, Markku Ollikainen2, Eliisa Punttila3
1Finnish Environment Institute, Syke, Latokartanonkaari 11, 00790 Helsinki, Finland.
Journal of Environmental Management
|March 30, 2024
Summary
Amending agricultural fields with gypsum effectively reduced phosphorus (P) and sediment runoff into coastal waters. This study shows gypsum
Area of Science:
- Agricultural Science
- Environmental Science
- Water Quality Management
Background:
- Agricultural runoff, particularly phosphorus (P), is a major contributor to coastal water pollution.
- Gypsum application to agricultural fields is a proposed cost-effective strategy to mitigate P and sediment loss.
- Understanding the long-term efficacy and environmental impact of gypsum amendments is crucial for sustainable agriculture.
Purpose of the Study:
- To evaluate the effectiveness of phosphogypsum application in reducing nutrient and sediment loads in coastal waters.
- To assess the duration of gypsum's impact on riverine fluxes of particulate P (PP), total suspended solids (TSS), and dissolved organic C (DOC).
- To compare P and sediment losses from gypsum-amended fields versus unamended fields.
Main Methods:
- Treatment of 1490 ha of clayey agricultural fields with phosphogypsum (4 t ha⁻¹).
- Monitoring of recipient river water quality using online sensors and sampling for 5 years post-amendment.
- Comparison of flux data with an upstream control area and pre-amendment data.
Main Results:
- Immediate and sustained reduction in riverine fluxes of PP, TSS, and DOC for at least 5 years.
- Significant decreases in PP (15%), TSS (25%), and DOC (8.9%) fluxes over the 5-year monitoring period.
- Amended fields showed substantially lower losses of PP (35%), TSS (59%), and DOC (64%) compared to unamended fields, indicating gypsum's effectiveness.
Conclusions:
- Gypsum application is a viable method for reducing P and sediment runoff from agricultural lands.
- The residual presence of gypsum in soil suggests a potential for long-term benefits, though efficiency may decrease over time.
- Variations in erodibility and spatial performance highlight the need for careful consideration of site-specific conditions when applying gypsum.
Related Concept Videos
The Phosphorus Cycle
36.8K
Unlike carbon, water, and nitrogen, phosphorus is not present in the atmosphere as a gas. Instead, most phosphorus in the ecosystem exists as compounds, such as phosphate ions (PO43-), found in soil, water, sediment and rocks. Phosphorus is often a limiting nutrient (i.e., in short supply). Consequently, phosphorus is added to most agricultural fertilizers, which can cause environmental problems related to runoff in aquatic ecosystems.
36.8K
Adaptations that Reduce Water Loss
25.6K
Though evaporation from plant leaves drives transpiration, it also results in loss of water. Because water is critical for photosynthetic reactions and other cellular processes, evolutionary pressures on plants in different environments have driven the acquisition of adaptations that reduce water loss.
25.6K
Responses to Drought and Flooding
10.7K
Water plays a significant role in the life cycle of plants. However, insufficient or excess of water can be detrimental and pose a serious threat to plants.
10.7K

