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Species specific effects of cover crops on nitrous oxide emissions in hemiboreal cereal production: The importance of freeze-thaw driven emissions

Sigrid Trier Kjær, Rong Lang, Thomas Kätterer, Peter Dörsch

发表年份
2025
引用次数
2

摘要

Including cover crops in cereal production systems has the potential to reduce greenhouse gas (GHG) emissions from agriculture by sequestering carbon (C) in soils. However, growing crops during the off-season interferes with cold season soil nitrogen (N) cycling, with uncertain effects on the emission of nitrous oxide (N 2 O), the dominant anthropogenic GHG in crop production. In this study, we investigated N 2 O emissions in barley production systems with seven different cover crops over two years and modelled soil organic C (SOC) accrual based on biomass production to calculate species-specific GHG balances. We measured N 2 O emission rates weekly using manual chambers during the cropping season and more frequently during the off-season with a field flux robot. Off-season emissions exceeded those from the growing season, accounting for 67 % (±14 % SD) of annual emissions. Among the cover crops, oilseed radish had the largest N 2 O emissions and the largest off-season contribution, whereas a herb mixture and ryegrasses ( Lolium perenne and Lolium multiflorum ) emitted less N 2 O than barley grown without cover crops. The largest emissions were observed during diurnal freeze-thaw cycles and spring thaw. Based on the estimated GHG balances (measured N 2 O emissions vs. modelled SOC accrual), we conclude that winter-hardy cover crops have the potential to reduce overall GHG emissions. In contrast, frost-sensitive cover crops support large N 2 O emissions during winter, undermining the mitigation effect of SOC accrual. Our findings emphasise the importance of including off-season N 2 O emissions in C farming schemes that use cover crops in temperate and hemiboreal cereal production systems. • N 2 O emissions during freeze-thaw cycles account for the bulk of annual emissions. • Winter-hardy cover crops emit less N 2 O than frost-sensitive cover crops. • Difference between cover crop species is most pronounced during off-season. • Aggregate climate effect depends on cover crop species and winter climate.

关键词

Cover cropGreenhouse gasLolium multiflorumNitrous oxideGrowing seasonLolium perenneBiomass (ecology)AgricultureSoil carbon

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