Socio-economic and climate change impacts on agriculture: an integrated assessment, 1990–2080

Социально-экономические последствия и последствия изменения климата для сельского хозяйства: комплексная оценка, 1990–2080 гг.
Günther Fischer, Mahendra Shah, Francesco N. Tubiello, Harrij van Velhuizen
2005-10-24

agro-ecological zoningclimate change scenariosfood securityglobal food system modelintegrated assessment
A comprehensive assessment of the impacts of climate change on agro-ecosystems over this century is developed, up to 2080 and at a global level, albeit with significant regional detail. To this end an integrated ecological-economic modelling framework is employed, encompassing climate scenarios, agro-ecological zoning information, socio-economic drivers, as well as world food trade dynamics. Specifically, global simulations are performed using the FAO/IIASA agro-ecological zone model, in conjunction with IIASAs global food system model, using climate variables from five different general circulation models, under four different socio-economic scenarios from the intergovernmental panel on climate change. First, impacts of different scenarios of climate change on bio-physical soil and crop growth determinants of yield are evaluated on a 5' X 5' latitude/longitude global grid; second, the extent of potential agricultural land and related potential crop production is computed. The detailed bio-physical results are then fed into an economic analysis, to assess how climate impacts may interact with alternative development pathways, and key trends expected over this century for food demand and production, and trade, as well as key composite indices such as risk of hunger and malnutrition, are computed. This modelling approach connects the relevant bio-physical and socio-economic variables within a unified and coherent framework to produce a global assessment of food production and security under climate change. The results from the study suggest that critical impact asymmetries due to both climate and socio-economic structures may deepen current production and consumption gaps between developed and developing world; it is suggested that adaptation of agricultural techniques will be central to limit potential damages under climate change.
1
Climate and socio-economic asymmetries may widen existing production and consumption gaps between developed and developing regions; agricultural adaptation is central to limiting damages.
2
Economic projections assess how climate change interacts with development pathways to shape food demand, production, trade, hunger risk, and malnutrition through 2080.
3
Simulations combine the FAO/IIASA agro-ecological zone model with IIASA’s global food-system model, using five climate models and four IPCC socio-economic scenarios.
4
The analysis evaluates climate impacts on soil and crop-growth determinants at 5′ × 5′ global resolution and estimates future agricultural land and crop-production potential.
5
The study develops an integrated global ecological-economic framework linking climate scenarios, agro-ecological conditions, socio-economic drivers, and food trade through 2080.

Global agriculture and food systems under climate change and alternative socio-economic scenarios, 1990–2080

Climate and socio-economic impacts on crop yields, agricultural land and production potential, food demand, trade, hunger and malnutrition risks, and global food security

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2005-10-24
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Authors
Günther Fischer
Mahendra Shah
Francesco N. Tubiello
Harrij van Velhuizen
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