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Biotic regulation of nitrogen gas emissions in temperate agriculture.

Authors :
Almaraz, Maya
Ryals, Rebecca
Groffman, Peter
Porder, Stephen
Source :
Biogeochemistry. Sep2024, Vol. 167 Issue 9, p1079-1087. 9p.
Publication Year :
2024

Abstract

It is generally assumed that fertilizer addition is the prime driver of nitrogen (N) gas loss from modern cropping systems. This assumption has its basis in observations of nitrous oxide (N2O, an important greenhouse gas) emissions, and is contrary to theory from unmanaged ecosystems, where N losses are controlled by plant physiological influence on the soil environment. However, dinitrogen (N2) emissions are likely a major N loss pathway in both managed and unmanaged ecosystems, but these emissions are very difficult to measure. We directly measured N2 and N2O emissions from two temperate agricultural systems over the course of the growing season to test when total N gas losses are highest. We hypothesized that N2 emissions mirror those of N2O, with the largest flux immediately after fertilization, early in the growing season. Instead, we found that N2 emissions were highest at the end of the growing season, and were most strongly correlated with soil moisture, which increased after plant senescence. Dinitrogen emissions were an order of magnitude larger than N2O. Thus, while N2O emissions were highest following fertilization, overall N gas loss was greatest at the end of the growing season. These data suggest that total N gas losses are high and have different temporal patterns from N2O fluxes. Understanding the magnitude and controls over these losses are important for understanding and managing the N cycle of temperate agricultural systems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01682563
Volume :
167
Issue :
9
Database :
Academic Search Index
Journal :
Biogeochemistry
Publication Type :
Academic Journal
Accession number :
180214956
Full Text :
https://doi.org/10.1007/s10533-024-01157-9