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Long-term analysis of soil water regime and nitrate dynamics at agricultural experimental site: Field-scale monitoring and numerical modeling using HYDRUS-1D.

Authors :
Krevh, Vedran
Filipović, Lana
Petošić, Dragutin
Mustać, Ivan
Bogunović, Igor
Butorac, Jasminka
Kisić, Ivica
Defterdarović, Jasmina
Nakić, Zoran
Kovač, Zoran
Pereira, Paulo
He, Hailong
Chen, Rui
Toor, Gurpal S.
Versini, Antoine
Baumgartl, Thomas
Filipović, Vilim
Source :
Agricultural Water Management. Jan2023, Vol. 275, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Intensive agricultural practices increase agrochemical pollution, particularly nitrogen (N) based fertilizers, which present an environmental risk. This study aims to evaluate long-term (2009–2020) data on soil water regime and nitrate dynamics at an agricultural experimental site on fine-textured soils and to better understand the implications of N management in relation to groundwater pollution. The field site is located in the Biđ field (eastern Croatia), in the proximity of the Sava river. Zero-tension lysimeters were installed at six selected locations. Lysimeters were used to monitor the water regime, i.e., outflows in which nitrate concentration was measured, while additional soil-water samples were collected via 4 and 15-meter-deep monitoring wells. Soil hydraulic parameters were estimated by combining the laboratory measurements, and estimation in RETC software. Water regime and nitrate leaching in lysimeters were simulated using HYDRUS-1D for each year to allow crop rotation and to evaluate their effects individually. The HYDRUS-1D model successfully reproduced lysimeter outflows and nitrate dynamics, which was confirmed with high R2 values (water: 93% above 0.7, and nitrate: 73% above 0.7) indicating the good performance of the model simulating nitrification chain reactions. Principal component analysis (PCA) was performed to identify the relationships among all soil properties and environmental characteristics. The results showed the complex interaction of soil hydraulic properties, precipitation patterns, plant uptake, and N application. All locations have a decreasing trend of nitrate leaching over the investigation period. Most of the lysimeter outflows and elevated nitrate concentrations were connected to the wet period of the year when the soil was saturated, and evapotranspiration was low. The results of this study show that it is important to optimize N fertilizer applications for each particular environmental condition to reduce nitrate loss. The study indicates the importance of long-term field studies, key for agro-hydrological modeling and the improvement of agricultural practices. [Display omitted] • Interaction of soil hydraulic parameters, rainfall, crops, and nitrogen is presented. • HYDRUS-1D successfully reproduced long-term lysimeter outflows and nitrate dynamics. • Field conditions and evapotranspiration affected outflows and nitrate concentrations. • Long-term field data is key for modeling and improvement of agricultural practices. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03783774
Volume :
275
Database :
Academic Search Index
Journal :
Agricultural Water Management
Publication Type :
Academic Journal
Accession number :
160581419
Full Text :
https://doi.org/10.1016/j.agwat.2022.108039