The potential of Russia to increase its wheat production through cropland expansion and intensification
Florian Schierhorn
in EconStor Theses from ZBW - Leibniz Information Centre for Economics
Abstract:
This dissertation addresses the primary objective to systematically quantify untapped agricultural potentials in European Russia, where widespread abandoned agricultural lands and large yield gaps co-exist. We developed a spatial allocation model to produce annual cropland and cropland abandonment maps. Feeding the new maps into a dynamic vegetation model revealed that 470 Tg of carbon was sequestered in soil and vegetation due to the abandonment of 31 million hectares of cropland. Thus, the environmental consequences limit the potential for cropland expansion to abandoned cropland. We then calibrated a crop growth model for provincial wheat yields in European Russia and found average yield gaps of 1.51–2.10 t ha−1 under rainfed conditions and 3.14–3.30 t ha−1 under irrigated conditions. The cropland abandonment maps, spatial information on carbon sequestration due to cropland abandonment, and the estimates of yield gaps allowed us to estimate the potential of European Russia to increase its wheat production and to account for the carbon tradeoffs of cropland expansion. We demonstrated that European Russia can substantially increase its wheat production (up to 32 Mt under rainfed conditions). This increase is despite a limited expansion of wheat cultivation to the recently abandoned cropland to reduce the trade-off from the high carbon emissions in re-cultivating older, abandoned cropland where most carbon is stored. Therefore, intensification of the existing croplands is recommended to be the major driver for future growth in agricultural production. This dissertation can help policy makers and agribusiness owners identify areas suitable for cropland expansion, better target agricultural inputs and infrastructures, as well as guide adaptation strategies to the volatile climate conditions. Moreover, this dissertation contributes to better identifying and balancing trade-offs between environmental impacts and increasing agricultural production in European Russia.
Keywords: Russland; Landnutzungswandel; Kohlenstoffbindung; LPJml; Ertragslücken; SWAT; Weizenpotentiale; Russia; carbon sequestration; Land-use change; yield gaps; wheat potentials (search for similar items in EconPapers)
Date: 2015
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Persistent link: https://EconPapers.repec.org/RePEc:zbw:esthes:251891
DOI: 10.18452/17362
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