Upscaling point measurements of N2O emissions into the orchard scale under drip and microsprinkler irrigation
Author:
Funder
USDA
California Department of Food and Agriculture
Almond Board of California
Publisher
Elsevier BV
Subject
Agronomy and Crop Science,Animal Science and Zoology,Ecology
Reference48 articles.
1. Management of irrigation frequency and nitrogen fertilization to mitigate GHG and NO emissions from drip-fertigated crops;Abalos;Sci. Total Environ.,2014
2. Spatiotemporal variation of event related N2O and CH 4 emissions during fertigation in a California almond orchard;Alsina;Ecosphere,2013
3. Assessment of orchard N losses to groundwater with a vadose zone monitoring network;Baram;Agric. Water Manage.,2016
4. Contributions of nitrification and denitrification to N2O emissions from soils at different water-filled pore space;Bateman;Biol. Fertil. Soils,2005
5. Current status of microsprinkler irrigation in The United States;Boman;Appl. Eng. Agric.,2012
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1. The use of small emitter flow rate favored the transfer of N2O production to deeper soil to reduce yield-scaled emissions in drip-irrigated potato fields;Field Crops Research;2024-06
2. Alternative fertilization practices lead to improvements in yield-scaled global warming potential in almond orchards;Agriculture, Ecosystems & Environment;2024-03
3. Long‐term compost use and high frequency low concentration fertigation reduce N2O emissions from a California almond orchard;Soil Science Society of America Journal;2024-01-16
4. Nitrogen fertilization and irrigation types do not affect the overall N2O production potential of a sandy soil, but the microbial community structure and the quantity of functional genes related to the N cycle;Applied Soil Ecology;2023-12
5. Alternative Fertilization Practices Lead to Improvements in Yield-Scaled Global Warming Potential in Almond Orchards;2023
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