Influence of Floodplain Forest Structure on Overbank Sediment and Phosphorus Deposition in an Agriculturally Dominated Watershed in Iowa, USA

Author:

Geer Sierra1,Beck William1,Zimmerman Emily2,Schultz Richard1

Affiliation:

1. Department of Natural Resource Ecology and Management, Iowa State University, Ames, IA 50011, USA

2. The Nature Conservancy, Madison, WI 53703, USA

Abstract

This study sought to estimate the potential impact of floodplain forest vegetation on sediment and phosphorus loading along the Iowa River in Iowa, USA. Thirty monitoring plots were established in forested conservation easements and similar public land along the Iowa River within the spatial extent of the two-, five-, and ten-year-flood return intervals. Within these plots, we examined the structure and cover of ground and overstory vegetation, as well as related metrics. Historic sediment and phosphorus fluxes were determined using a combination of sediment core extraction and tree ring analysis. The results show that deposition rates weakly correlate with tall grass and tall, medium, and short forb categories in the springtime but correlate with only short and medium grass and forb categories in late summer. Soil phosphorus concentration correlated weakly with overstory forest characteristics and springtime grass cover. Distance from the channel was negatively correlated with deposition. Overall, 4 to 50% (median = 15.5%) of the annual sediment load is represented by the deposition in adjacent floodplain forests. This study demonstrates the potential importance of floodplain easement forest vegetation in contributing to sediment and phosphorus attenuation during flood events.

Funder

Iowa Water Center

Iowa Nutrient Research Center

Publisher

MDPI AG

Reference50 articles.

1. USDA National Agricultural Statistics Service (2017). United States Summary and State Data. 2017 Census Agric., 1, 820.

2. Rates of Historical Anthropogenic Soil Erosion in the Midwestern United States;Thaler;Earth’s Future,2022

3. The Role of Phosphorus in the Eutrophication of Receiving Waters: A Review;Correll;J. Environ. Qual.,1998

4. Gulf of Mexico Hypoxia: Alternate States and a Legacy;Turner;Environ. Sci. Technol.,2008

5. The Effect of Eutrophication on Drinking Water;Mishra;Br. J. Multidiscip. Adv. Stud.,2023

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