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N2O emission factors for cattle urine: effect of patch characteristics and environmental drivers

Lena Barczyk; Kate Kuntu-Blankson; Pierluigi Calanca; Johan Six; Christof Ammann
Nutrient Cycling in Agroecosystems · Vol. 127, Issue 2 · pp. 173-189 · 2023

Abstract

Urine patches from grazing cattle are hotspots of nitrous oxide (N 2 O) emissions. The default IPCC emission factor for urine patches (EF urine ) is 0.77% for wet climates and 0.32% for dry climates. However, literature reports a considerable range of cattle urine EF values and urine characteristics used in experimental studies, revealing contrary results on the effects of urine patch characteristics and seasonal pattern. Therefore, we examined N 2 O emissions and corresponding EF urine values in relation to urine patch characteristics (urine N concentration, urine volume, patch area, urine composition) and environmental drivers (precipitation, water filled pore space, soil temperature). Ten artificial urine application experiments were performed from July 2020 to June 2022 on a pasture located in Eastern Switzerland. Urine N concentration, patch area, volume and urine N composition showed no significant effects on the EF urine value (p > 0.05). EF urine varied, however, strongly over time (0.17–2.05%). A large part of the variation could be predicted either by cumulative precipitation 20 days after urine application using a second order polynomial model (Adj. R 2 = 0.60) or average WFPS 30 days after urine application using a linear model (Adj. R 2 = 0.45). The derived precipitation model was used to simulate EF urine weekly over the last 20 years showing no significant differences between the seasons of a year. The resulting overall average EF urine was 0.67%. More field studies are needed across sites/regions differing in climate and soil properties to implement a country-specific EF 3 for Switzerland and to improve the quantification of N 2 O emissions at the national scales.

Bibliographic Information

JournalNutrient Cycling in Agroecosystems
PublisherSpringer
Publication Date2023-11-01
Publication Year2023
Volume127
Issue2
Pages173-189
Document TypeJournal Article
Print ISSN1385-1314
eISSN1573-0867
DOI10.1007/s10705-023-10290-0

Access Information

NARA Access Coverage1980-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10705
Publisher PageOpen Publisher Page
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