TY - JOUR
T1 - Harmonizing food systems emissions accounting for more effective climate action
AU - Karl, Kevin
AU - Tubiello, Francesco N.
AU - Crippa, Monica
AU - Poore, Joseph
AU - Hayek, Matthew N.
AU - Benoit, Philippe
AU - Chen, Minpeng
AU - Corbeels, Marc
AU - Flammini, Alessandro
AU - Garland, Sarah
AU - Leip, Adrian
AU - McClelland, Shelby C.
AU - Mencos Contreras, Erik
AU - Sandalow, David
AU - Quadrelli, Roberta
AU - Sapkota, Tek B.
AU - Rosenzweig, Cynthia
N1 - Publisher Copyright:
© 2024 The Author(s). Published by IOP Publishing Ltd.
PY - 2025/3/1
Y1 - 2025/3/1
N2 - Food systems—encompassing activities in food production, land-use change, supply chains and waste management—contribute significantly to climate change. Recent estimates indicate that food systems produce over 30% of annual anthropogenic greenhouse gas (GHG) emissions (about 20% of CO2, 50% of CH4, and 75% of N2O), with the Intergovernmental Panel on Climate Change (IPCC) estimating a notably broad range of 23%–42% of global GHG emissions. This paper synthesizes current research on the contributions of food systems to climate change, highlights challenges in quantifying their impact and proposes a harmonized accounting framework for more effective climate action. We recommend that an expert committee aligned with the IPCC develop guidance for food systems emissions accounting in four key areas, including: (1) defining system boundaries and nomenclature; (2) developing protocols to allocate broader sectoral emissions to food systems; (3) prioritizing critical areas for research into activity data and emissions factors; and (4) developing a balanced framework for evaluating the impact of mitigation interventions in light of other food systems imperatives. The committee should be integrated into two key international policy processes—the United Nations Framework Convention on Climate Change and the United Nations Food Systems Summit—to support coordinated action towards global net-zero goals. Guidance from the committee could significantly improve the ability of governments, companies, and researchers to estimate, report, monitor and ultimately reduce the climate impacts of food systems.
AB - Food systems—encompassing activities in food production, land-use change, supply chains and waste management—contribute significantly to climate change. Recent estimates indicate that food systems produce over 30% of annual anthropogenic greenhouse gas (GHG) emissions (about 20% of CO2, 50% of CH4, and 75% of N2O), with the Intergovernmental Panel on Climate Change (IPCC) estimating a notably broad range of 23%–42% of global GHG emissions. This paper synthesizes current research on the contributions of food systems to climate change, highlights challenges in quantifying their impact and proposes a harmonized accounting framework for more effective climate action. We recommend that an expert committee aligned with the IPCC develop guidance for food systems emissions accounting in four key areas, including: (1) defining system boundaries and nomenclature; (2) developing protocols to allocate broader sectoral emissions to food systems; (3) prioritizing critical areas for research into activity data and emissions factors; and (4) developing a balanced framework for evaluating the impact of mitigation interventions in light of other food systems imperatives. The committee should be integrated into two key international policy processes—the United Nations Framework Convention on Climate Change and the United Nations Food Systems Summit—to support coordinated action towards global net-zero goals. Guidance from the committee could significantly improve the ability of governments, companies, and researchers to estimate, report, monitor and ultimately reduce the climate impacts of food systems.
KW - GHG accounting
KW - GHG emissions
KW - IPCC
KW - climate change
KW - food systems
KW - mitigation
UR - https://www.scopus.com/pages/publications/105018890006
U2 - 10.1088/2976-601X/ad8fb3
DO - 10.1088/2976-601X/ad8fb3
M3 - Article
AN - SCOPUS:105018890006
SN - 2976-601X
VL - 2
JO - Environmental Research: Food Systems
JF - Environmental Research: Food Systems
IS - 1
M1 - 015001
ER -