Increasing crop production in Russia and Ukraine-regional and global impacts from intensification and recultivation
Russia and Ukraine are countries with relatively large untapped agricultural potentials, both in terms of abandoned agricultural land and substantial yield gaps. Here we present a comprehensive assessment of Russian and Ukrainian crop production potentials and we analyze possible impacts of their fu...
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Published in | Environmental research letters Vol. 13; no. 2; pp. 25008 - 25019 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
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IOP Publishing
01.02.2018
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Abstract | Russia and Ukraine are countries with relatively large untapped agricultural potentials, both in terms of abandoned agricultural land and substantial yield gaps. Here we present a comprehensive assessment of Russian and Ukrainian crop production potentials and we analyze possible impacts of their future utilization, on a regional as well as global scale. To this end, the total amount of available abandoned land and potential yields in Russia and Ukraine are estimated and explicitly implemented in an economic agricultural sector model. We find that cereal (barley, corn, and wheat) production in Russia and Ukraine could increase by up to 64% in 2030 to 267 million tons, compared to a baseline scenario. Oilseeds (rapeseed, soybean, and sunflower) production could increase by 84% to 50 million tons, respectively. In comparison to the baseline, common net exports of Ukraine and Russia could increase by up to 86.3 million tons of cereals and 18.9 million tons of oilseeds in 2030, representing 4% and 3.6% of the global production of these crops, respectively. Furthermore, we find that production potentials due to intensification are ten times larger than potentials due to recultivation of abandoned land. Consequently, we also find stronger impacts from intensification at the global scale. A utilization of crop production potentials in Russia and Ukraine could globally save up to 21 million hectares of cropland and reduce average global crop prices by more than 3%. |
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AbstractList | Russia and Ukraine are countries with relatively large untapped agricultural potentials, both in terms of abandoned agricultural land and substantial yield gaps. Here we present a comprehensive assessment of Russian and Ukrainian crop production potentials and we analyze possible impacts of their future utilization, on a regional as well as global scale. To this end, the total amount of available abandoned land and potential yields in Russia and Ukraine are estimated and explicitly implemented in an economic agricultural sector model. We find that cereal (barley, corn, and wheat) production in Russia and Ukraine could increase by up to 64% in 2030 to 267 million tons, compared to a baseline scenario. Oilseeds (rapeseed, soybean, and sunflower) production could increase by 84% to 50 million tons, respectively. In comparison to the baseline, common net exports of Ukraine and Russia could increase by up to 86.3 million tons of cereals and 18.9 million tons of oilseeds in 2030, representing 4% and 3.6% of the global production of these crops, respectively. Furthermore, we find that production potentials due to intensification are ten times larger than potentials due to recultivation of abandoned land. Consequently, we also find stronger impacts from intensification at the global scale. A utilization of crop production potentials in Russia and Ukraine could globally save up to 21 million hectares of cropland and reduce average global crop prices by more than 3%. |
Author | Bundle, Sophie-Charlotte Havlik, Petr Deppermann, Andre Prishchepov, Alexander V Lesiv, Myroslava Leclère, David Balkovič, Juraj Di Fulvio, Fulvio Schepaschenko, Dmitry |
Author_xml | – sequence: 1 givenname: Andre orcidid: 0000-0002-7943-4842 surname: Deppermann fullname: Deppermann, Andre email: depperma@iiasa.ac.at organization: Author to whom any correspondence should be addressed – sequence: 2 givenname: Juraj orcidid: 0000-0003-2955-4931 surname: Balkovič fullname: Balkovič, Juraj organization: Department of Soil Science, Faculty of Natural Sciences, Comenius University in Bratislava , 842 15 Bratislava, Slovak Republic – sequence: 3 givenname: Sophie-Charlotte surname: Bundle fullname: Bundle, Sophie-Charlotte organization: Ecosystems Services and Management Program, International Institute for Applied Systems Analysis , Schlossplatz 1, 2361 Laxenburg, Austria – sequence: 4 givenname: Fulvio orcidid: 0000-0002-7317-6360 surname: Di Fulvio fullname: Di Fulvio, Fulvio organization: Ecosystems Services and Management Program, International Institute for Applied Systems Analysis , Schlossplatz 1, 2361 Laxenburg, Austria – sequence: 5 givenname: Petr surname: Havlik fullname: Havlik, Petr organization: Ecosystems Services and Management Program, International Institute for Applied Systems Analysis , Schlossplatz 1, 2361 Laxenburg, Austria – sequence: 6 givenname: David orcidid: 0000-0002-8658-1509 surname: Leclère fullname: Leclère, David organization: Ecosystems Services and Management Program, International Institute for Applied Systems Analysis , Schlossplatz 1, 2361 Laxenburg, Austria – sequence: 7 givenname: Myroslava surname: Lesiv fullname: Lesiv, Myroslava organization: Ecosystems Services and Management Program, International Institute for Applied Systems Analysis , Schlossplatz 1, 2361 Laxenburg, Austria – sequence: 8 givenname: Alexander V surname: Prishchepov fullname: Prishchepov, Alexander V organization: Institute of Environmental Sciences, Kazan Federal University , Kazan, Tovarishcheskaya str. 5, Kazan, 420097, Russia – sequence: 9 givenname: Dmitry orcidid: 0000-0002-7814-4990 surname: Schepaschenko fullname: Schepaschenko, Dmitry organization: Bauman Moscow State Technical University , Mytischi 141005, Russia |
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SubjectTerms | Abandoned land Agricultural industry Agricultural land agricultural sector model Cereals Crop production Crops Economic models Oilseed crops Oilseeds Rapeseed Russia Soybeans Sunflowers Ukraine yield potentials |
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Title | Increasing crop production in Russia and Ukraine-regional and global impacts from intensification and recultivation |
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