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Nitrogen fertilizer management for nitrous oxide (N₂O) mitigation in intensive corn (Maize) production: an emissions reduction protocol for US Midwest agriculture
by
Robertson, G. Philip
, Millar, Neville
, Gehl, Ron J
, Hoben, John P
, Grace, Peter R
in
Agricultural production
/ Agriculture
/ Atmospheric Sciences
/ Carbon dioxide
/ carbon markets
/ Climate Change Management and Policy
/ Corn
/ credit
/ Crop production
/ Crop yield
/ Crops
/ Denitrification
/ Earth and Environmental Science
/ Earth Sciences
/ economic incentives
/ Emissions
/ Emissions control
/ Emissions trading
/ Environmental factors
/ Environmental incentives
/ Environmental Management
/ Farm buildings
/ fertilizer rates
/ Fertilizers
/ Greenhouse effect
/ Greenhouse gases
/ Industrial concentration
/ Intensive farming
/ Nitric oxide
/ Nitrogen
/ nitrogen fertilizers
/ Nitrous oxide
/ Original Paper
/ Protocol
/ risk reduction
/ Soil sciences
/ stakeholders
/ United States
2010
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Nitrogen fertilizer management for nitrous oxide (N₂O) mitigation in intensive corn (Maize) production: an emissions reduction protocol for US Midwest agriculture
by
Robertson, G. Philip
, Millar, Neville
, Gehl, Ron J
, Hoben, John P
, Grace, Peter R
in
Agricultural production
/ Agriculture
/ Atmospheric Sciences
/ Carbon dioxide
/ carbon markets
/ Climate Change Management and Policy
/ Corn
/ credit
/ Crop production
/ Crop yield
/ Crops
/ Denitrification
/ Earth and Environmental Science
/ Earth Sciences
/ economic incentives
/ Emissions
/ Emissions control
/ Emissions trading
/ Environmental factors
/ Environmental incentives
/ Environmental Management
/ Farm buildings
/ fertilizer rates
/ Fertilizers
/ Greenhouse effect
/ Greenhouse gases
/ Industrial concentration
/ Intensive farming
/ Nitric oxide
/ Nitrogen
/ nitrogen fertilizers
/ Nitrous oxide
/ Original Paper
/ Protocol
/ risk reduction
/ Soil sciences
/ stakeholders
/ United States
2010
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Nitrogen fertilizer management for nitrous oxide (N₂O) mitigation in intensive corn (Maize) production: an emissions reduction protocol for US Midwest agriculture
by
Robertson, G. Philip
, Millar, Neville
, Gehl, Ron J
, Hoben, John P
, Grace, Peter R
in
Agricultural production
/ Agriculture
/ Atmospheric Sciences
/ Carbon dioxide
/ carbon markets
/ Climate Change Management and Policy
/ Corn
/ credit
/ Crop production
/ Crop yield
/ Crops
/ Denitrification
/ Earth and Environmental Science
/ Earth Sciences
/ economic incentives
/ Emissions
/ Emissions control
/ Emissions trading
/ Environmental factors
/ Environmental incentives
/ Environmental Management
/ Farm buildings
/ fertilizer rates
/ Fertilizers
/ Greenhouse effect
/ Greenhouse gases
/ Industrial concentration
/ Intensive farming
/ Nitric oxide
/ Nitrogen
/ nitrogen fertilizers
/ Nitrous oxide
/ Original Paper
/ Protocol
/ risk reduction
/ Soil sciences
/ stakeholders
/ United States
2010
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Nitrogen fertilizer management for nitrous oxide (N₂O) mitigation in intensive corn (Maize) production: an emissions reduction protocol for US Midwest agriculture
Journal Article
Nitrogen fertilizer management for nitrous oxide (N₂O) mitigation in intensive corn (Maize) production: an emissions reduction protocol for US Midwest agriculture
2010
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Overview
Nitrous oxide (N₂O) is a major greenhouse gas (GHG) product of intensive agriculture. Fertilizer nitrogen (N) rate is the best single predictor of N₂O emissions in row-crop agriculture in the US Midwest. We use this relationship to propose a transparent, scientifically robust protocol that can be utilized by developers of agricultural offset projects for generating fungible GHG emission reduction credits for the emerging US carbon cap and trade market. By coupling predicted N₂O flux with the recently developed maximum return to N (MRTN) approach for determining economically profitable N input rates for optimized crop yield, we provide the basis for incentivizing N₂O reductions without affecting yields. The protocol, if widely adopted, could reduce N₂O from fertilized row-crop agriculture by more than 50%. Although other management and environmental factors can influence N₂O emissions, fertilizer N rate can be viewed as a single unambiguous proxy—a transparent, tangible, and readily manageable commodity. Our protocol addresses baseline establishment, additionality, permanence, variability, and leakage, and provides for producers and other stakeholders the economic and environmental incentives necessary for adoption of agricultural N₂O reduction offset projects.
Publisher
Dordrecht : Springer Netherlands,Springer Netherlands,Springer Nature B.V
Subject
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