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April 13, 2001Science3,993 citations

Forecasting Agriculturally Driven Global Environmental Change

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DTDavid TilmanJFJoseph FargioneBWBrian A. Wolff

Key Points

  • To forecast the global environmental impacts of agricultural expansion driven by population growth and increased consumption over the next 50 years.
  • Extrapolated historical relationships between population growth, economic consumption, and agricultural resource demands through the year 2050.
  • Projects the conversion of 10^9 hectares of natural ecosystems to agricultural land by 2050 under current consumption trajectories.
  • Forecasts a 2.4- to 2.7-fold increase in nitrogen- and phosphorus-driven eutrophication across terrestrial, freshwater, and near-shore marine ecosystems, alongside comparable increases in pesticide use.
  • Warns of unprecedented ecosystem simplification, severe loss of ecosystem services, and widespread species extinctions without rapid technological and policy reforms.

Abstract

During the next 50 years, which is likely to be the final period of rapid agricultural expansion, demand for food by a wealthier and 50% larger global population will be a major driver of global environmental change. Should past dependences of the global environmental impacts of agriculture on human population and consumption continue, 10(9) hectares of natural ecosystems would be converted to agriculture by 2050. This would be accompanied by 2.4- to 2.7-fold increases in nitrogen- and phosphorus-driven eutrophication of terrestrial, freshwater, and near-shore marine ecosystems, and comparable increases in pesticide use. This eutrophication and habitat destruction would cause unprecedented ecosystem simplification, loss of ecosystem services, and species extinctions. Significant scientific advances and regulatory, technological, and policy changes are needed to control the environmental impacts of agricultural expansion.

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Cite This Study

Tilman et al. (2001) studied this question.

synapsesocial.com/papers/6a0f6f34d8c5cf602efcb6e1https://doi.org/10.1126/science.1057544
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