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The impact of refrigeration on food losses and associated greenhouse gas emissions throughout the supply chain
by
Friedman-Heiman, Aaron
, Miller, Shelie A
in
Anthropogenic factors
/ Carbon dioxide
/ cold chain
/ developing regions
/ Emissions
/ Emissions control
/ Food
/ Food chains
/ Food industry
/ food loss and waste
/ Food supply
/ food supply chain
/ GHG emissions
/ Greenhouse gases
/ Human influences
/ Hunger
/ MMT
/ Refrigeration
/ Supply chains
2024
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The impact of refrigeration on food losses and associated greenhouse gas emissions throughout the supply chain
by
Friedman-Heiman, Aaron
, Miller, Shelie A
in
Anthropogenic factors
/ Carbon dioxide
/ cold chain
/ developing regions
/ Emissions
/ Emissions control
/ Food
/ Food chains
/ Food industry
/ food loss and waste
/ Food supply
/ food supply chain
/ GHG emissions
/ Greenhouse gases
/ Human influences
/ Hunger
/ MMT
/ Refrigeration
/ Supply chains
2024
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Do you wish to request the book?
The impact of refrigeration on food losses and associated greenhouse gas emissions throughout the supply chain
by
Friedman-Heiman, Aaron
, Miller, Shelie A
in
Anthropogenic factors
/ Carbon dioxide
/ cold chain
/ developing regions
/ Emissions
/ Emissions control
/ Food
/ Food chains
/ Food industry
/ food loss and waste
/ Food supply
/ food supply chain
/ GHG emissions
/ Greenhouse gases
/ Human influences
/ Hunger
/ MMT
/ Refrigeration
/ Supply chains
2024
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The impact of refrigeration on food losses and associated greenhouse gas emissions throughout the supply chain
Journal Article
The impact of refrigeration on food losses and associated greenhouse gas emissions throughout the supply chain
2024
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Overview
One-third of food produced globally is wasted while approximately 800 million people suffer from hunger. Meanwhile, food losses produce approximately 8% of total anthropogenic greenhouse gas (GHG) emissions. This study develops a food loss estimation tool to assess how improved access to the cold chain could impact food loss and its associated GHG emissions for seven food types in seven regions. This study estimates that poor cold chain infrastructure could be responsible for up to 620 million metric tons (Mmt) of food loss, responsible for 1.8 GtCO 2 -eq annually. Utilizing fully optimized cold chains could save over 100 Mmt of fruit and vegetable loss in South & Southeast Asia and over 700 Mmt CO2-eq in Sub-Saharan Africa. Developing more localized, less industrialized (‘farm-to-table’) food supply chains in both industrialized and non-industrialized contexts may save greater quantities of food than optimized cold chains. Utilizing localized supply chains could save over 250 Mmt of roots and tubers globally (over 100 Mmt more savings than those of an optimized cold chain) and reduce GHG emissions from meat losses in industrialized regions by over 300 Mmt CO2-eq. Due to the differences in the environmental intensity of food types, cold chain investments that prioritize reducing overall food losses will have very different outcomes than those that prioritize reducing GHG emissions.
Publisher
IOP Publishing
Subject
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