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Opportunities to produce food from substantially less land
by
Godfray, H. Charles J.
, Poore, Joseph
, Ritchie, Hannah
in
Agricultural land
/ Agricultural production
/ Agriculture
/ Agriculture - methods
/ Analysis
/ Animal-based foods
/ Animals
/ Biodiversity
/ Biomedical and Life Sciences
/ Biotechnological microorganisms
/ BMC Biology Reviews
/ Capital costs
/ Carbon dioxide
/ Carbon sequestration
/ Cellular agriculture
/ Chemical synthesis
/ Climate change
/ Crops
/ Crops, Agricultural
/ Economic aspects
/ Emissions
/ Energy
/ Farms
/ Feeds
/ Fermentation
/ Fermented food
/ Food
/ Food availability
/ Food industry
/ Food plants
/ Food processing
/ Food production
/ Food Supply
/ Food system
/ Food technology
/ Food Technology - methods
/ Greenhouses
/ Health aspects
/ Industrial plants
/ Innovations
/ Legumes
/ Life Sciences
/ Meat substitutes
/ Methods
/ Microbial biotechnology
/ Oils & fats
/ Outdoors
/ Plant growth
/ Plant-based foods
/ Raw materials
/ Review
/ Supply and demand
/ Sustainable agriculture
/ Synthesis gas
/ Vertical farming
/ Wheat
2024
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Opportunities to produce food from substantially less land
by
Godfray, H. Charles J.
, Poore, Joseph
, Ritchie, Hannah
in
Agricultural land
/ Agricultural production
/ Agriculture
/ Agriculture - methods
/ Analysis
/ Animal-based foods
/ Animals
/ Biodiversity
/ Biomedical and Life Sciences
/ Biotechnological microorganisms
/ BMC Biology Reviews
/ Capital costs
/ Carbon dioxide
/ Carbon sequestration
/ Cellular agriculture
/ Chemical synthesis
/ Climate change
/ Crops
/ Crops, Agricultural
/ Economic aspects
/ Emissions
/ Energy
/ Farms
/ Feeds
/ Fermentation
/ Fermented food
/ Food
/ Food availability
/ Food industry
/ Food plants
/ Food processing
/ Food production
/ Food Supply
/ Food system
/ Food technology
/ Food Technology - methods
/ Greenhouses
/ Health aspects
/ Industrial plants
/ Innovations
/ Legumes
/ Life Sciences
/ Meat substitutes
/ Methods
/ Microbial biotechnology
/ Oils & fats
/ Outdoors
/ Plant growth
/ Plant-based foods
/ Raw materials
/ Review
/ Supply and demand
/ Sustainable agriculture
/ Synthesis gas
/ Vertical farming
/ Wheat
2024
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Do you wish to request the book?
Opportunities to produce food from substantially less land
by
Godfray, H. Charles J.
, Poore, Joseph
, Ritchie, Hannah
in
Agricultural land
/ Agricultural production
/ Agriculture
/ Agriculture - methods
/ Analysis
/ Animal-based foods
/ Animals
/ Biodiversity
/ Biomedical and Life Sciences
/ Biotechnological microorganisms
/ BMC Biology Reviews
/ Capital costs
/ Carbon dioxide
/ Carbon sequestration
/ Cellular agriculture
/ Chemical synthesis
/ Climate change
/ Crops
/ Crops, Agricultural
/ Economic aspects
/ Emissions
/ Energy
/ Farms
/ Feeds
/ Fermentation
/ Fermented food
/ Food
/ Food availability
/ Food industry
/ Food plants
/ Food processing
/ Food production
/ Food Supply
/ Food system
/ Food technology
/ Food Technology - methods
/ Greenhouses
/ Health aspects
/ Industrial plants
/ Innovations
/ Legumes
/ Life Sciences
/ Meat substitutes
/ Methods
/ Microbial biotechnology
/ Oils & fats
/ Outdoors
/ Plant growth
/ Plant-based foods
/ Raw materials
/ Review
/ Supply and demand
/ Sustainable agriculture
/ Synthesis gas
/ Vertical farming
/ Wheat
2024
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Opportunities to produce food from substantially less land
Journal Article
Opportunities to produce food from substantially less land
2024
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Overview
The vast majority of the food we eat comes from land-based agriculture, but recent technological advances in agriculture and food technology offer the prospect of producing food using substantially less or even virtually no land. For example, indoor vertical farming can achieve very high yields of certain crops with a very small area footprint, and some foods can be synthesized from inorganic precursors in industrial facilities. Animal-based foods require substantial land per unit of protein or per calorie and switching to alternatives could reduce demand for some types of agricultural land. Plant-based meat substitutes and those produced through fermentation are widely available and becoming more sophisticated while in the future cellular agricultural may become technically and economical viable at scale. We review the state of play of these potentially disruptive technologies and explore how they may interact with other factors, both endogenous and exogenous to the food system, to affect future demand for land.
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