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THE GLOBAL AGRICULTURAL SYSTEM AND CLIMATE CHANGE: CHALLENGES AND OPPORTUNITIES FOR THE RUSSIAN FEDERATION

https://doi.org/10.26794/2587-5671-2017-21-6-70-79

Abstract

The article examines the dependence of the development of the global agricultural system against climate change of the planet. It is argued that agricultural production in the period beyond 2015 is playing an increasingly prominent role, and it will increase in future. The current vulnerability of climate system largely depends on a delicate balance between greenhouse gas emissions caused by human activities, a policy aimed at mitigating these harmful effects and the natural dynamics of the functioning of terrestrial and ocean systems. This, in turn, depends on the number of sources of greenhouse gases that affect climate. Unprecedented climate change seriously threatens agricultural production and food security. It is therefore essential the further development of new areas of science, including a reliable methodology for monitoring greenhouse gases, advanced modeling tools, collection and aggregation of big data. Despite the good preconditions for the development of the food sector, the risk of impacts of climate change on natural ecosystems remains high, even under favorable temperature conditions. Thus, solutions must be found in the change of our paradigms.

We must change the attitude towards agriculture as a separate component of the food system. Agriculture should be an important element in mitigating the effects of climate change and adaptive strategies. The author argues that Russia is a promising candidate among the boreal regions. Russia is able to take advantage of the situation and to turn from an importer of agricultural products into solid world exporter of food. The article presents several factors that can become the basis for a new agricultural and food strategy of Russia. But to fully take advantage of such capabilities it is required significant transformation. Taking into account some changes in the agricultural sector, the author provides recommendations that could enhance the role of the Russian Federation on the agrofood world markets.

About the Author

R. Valentini
The University of Tuscia
Italy

Riccardo Valentini — full Professor of the UT, Italy (Department of Forest Science and Environment) and the Director of the Euro-Mediterranean Center on Climate Change (CMCC), In 2007 he was awarded the Nobel Peace Prize as a member IPCC, which is engaged in the risk assessment of global climate change caused by man-made factors. Professor Valentini has also won other prestigious international awards: Norbert Gerbier-MUMM, European Research Council, European Ecological Federation, Marx Planck, Ernst Haeckel, and the title of Europe Best Ecologist 2015



References

1. Liefert W. M. & Liefert O. (2017). Russia’s economic crisis and its agricultural and food economy. Choices, 30 (1), pp. 1–6.

2. Liefert W., Liefert O., Vocke G. & Allen E. (2010). Former Soviet Union region to play larger role in meeting world wheat needs. Amber Waves, 8 (2), pp. 12–19.

3. Zabel F., Putzenlechner B. & Mauser W. (2014). Global agricultural land resources–a high-resolution suitability evaluation and its perspectives until 2100 under climate change conditions. PloS one, 9 (9). URL: https://doi.org/10.1371/journal.pone.0107522 (see Correction: https://doi.org/10.1371/journal.pone.0114980 (December 2, 2014)).

4. Ramankutty N., Foley J.A., Norman J. & McSweeney K. (2002). The global distribution of cultivable lands: current patterns and sensitivity to possible climate change. Global Ecology and Biogeography, 11 (5), pp. 377–392. DOI:10.1046/j.1466–822x.2002.00294.x.

5. Perkins S. E., Alexander L. V. & Nairn J. R. (2012). Increasing frequency, intensity and duration of observed global heatwaves and warm spells. Geophysical Research Letters, 39 (20). DOI:10.1029/2012GL053361,2012.

6. Asseng S., Ewert F., Martre P., Rötter R. P., Lobell D. B., Cammarano D., … Zhu Y. (2015). Rising temperatures reduce global wheat production. Nature Climate Change, 5 (2), pp. 143–147. DOI:10.1038/nclimate2470.

7. Teixeira E.I., Fischer, G., van Velthuizen, H., Walter, C. & Ewert, F. (2013). Global hot-spots of heat stress on agricultural crops due to climate change. Agricultural and Forest Meteorology, 170, 206–215. doi:10.1016/j.agrformet.2011.09.002.

8. Ioffe G. & Nefedova T. (2004). Marginal farmland in European Russia. Eurasian Geography and Economics, 45 (1), pp. 45–59.

9. Schierhorn F., Müller D., Beringer T., Prishchepov A.V., Kuemmerle T. & Balmann A. (2013). Post-Soviet cropland abandonment and carbon sequestration in European Russia, Ukraine, and Belarus. Global Biogeochemical Cycles, 27 (4), pp. 1175–1185. DOI:10.1002/2013GB004654.

10. Belelli M.L., Papale D., Reichstein M., Vuichard N., Tchebakova N. & Valentini R. (2007). Carbon balance assessment of a natural steppe of southern Siberia by multiple constraint approach. Biogeosciences, 4, pp. 581–595. URL: https://doi.org/10.5194/bg-4–581–2007.

11. Vuichard N., Ciais P., Belelli L., Smith P. & Valentini R. (2008). Carbon sequestration due to the abandonment of agriculture in the former USSR since 1990. Global Biogeochemical Cycles, 22 (4), GB4018. DOI: 10.1029/2008GB003212.

12. Schierhorn F., Müller D., Prishchepov A.V., Faramarzi M. & Balmann A. (2014). The potential of Russia to increase its wheat production through cropland expansion and intensification. Global Food Security, 3 (3–4), pp. 133–141. URL: https://doi.org/10.1016/j.gfs.2014.10.007.


Review

For citations:


Valentini R. THE GLOBAL AGRICULTURAL SYSTEM AND CLIMATE CHANGE: CHALLENGES AND OPPORTUNITIES FOR THE RUSSIAN FEDERATION. Finance: Theory and Practice. 2017;21(6):70-79. https://doi.org/10.26794/2587-5671-2017-21-6-70-79

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