Comparative analysis of environmental impacts of agricultural production systems, agricultural input efficiency, and food choice

Сравнительный анализ воздействия на окружающую среду сельскохозяйственных производственных систем, эффективности использования сельскохозяйственных ресурсов и выбора продуктов питания
Michael Clark, David Tilman
2017-06-01

agricultural input efficiencyenvironmental impactsfood choicelife cycle assessmentplant-based foods
Global agricultural feeds over 7 billion people, but is also a leading cause of environmental degradation. Understanding how alternative agricultural production systems, agricultural input efficiency, and food choice drive environmental degradation is necessary for reducing agriculture's environmental impacts. A meta-analysis of life cycle assessments that includes 742 agricultural systems and over 90 unique foods produced primarily in high-input systems shows that, per unit of food, organic systems require more land, cause more eutrophication, use less energy, but emit similar greenhouse gas emissions (GHGs) as conventional systems; that grass-fed beef requires more land and emits similar GHG emissions as grain-feed beef; and that low-input aquaculture and non-trawling fisheries have much lower GHG emissions than trawling fisheries. In addition, our analyses show that increasing agricultural input efficiency (the amount of food produced per input of fertilizer or feed) would have environmental benefits for both crop and livestock systems. Further, for all environmental indicators and nutritional units examined, plant-based foods have the lowest environmental impacts; eggs, dairy, pork, poultry, non-trawling fisheries, and non-recirculating aquaculture have intermediate impacts; and ruminant meat has impacts ∼100 times those of plant-based foods. Our analyses show that dietary shifts towards low-impact foods and increases in agricultural input use efficiency would offer larger environmental benefits than would switches from conventional agricultural systems to alternatives such as organic agriculture or grass-fed beef.
1
A meta-analysis of 742 agricultural systems and over 90 foods compared environmental impacts across production systems, input efficiencies, and food choices.
2
Grass-fed beef requires more land but emits similar greenhouse-gas quantities compared with grain-fed beef; low-input aquaculture and non-trawling fisheries emit substantially less than trawling fisheries.
3
Improving fertilizer and feed efficiency would reduce environmental impacts in both crop and livestock production systems.
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Per unit of food, organic agriculture uses more land and causes more eutrophication than conventional agriculture, while using less energy and producing similar greenhouse-gas emissions.
5
Plant-based foods have the lowest impacts across all environmental indicators and nutritional units examined, whereas ruminant meat has impacts approximately 100 times higher; dietary shifts toward low-impact foods offer greater benefits than switching to organic or grass-fed systems.

Agricultural production systems and food products, including crops, livestock, aquaculture, and fisheries

Comparative environmental impacts, agricultural input-use efficiency, and effects of food choice across production systems

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2017-06-01
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Michael Clark
David Tilman
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