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TYPOLOGY OF LATVIAN AGRICULTURAL FARMS IN THE CONTEXT OF MITIGATION OF AGRICULTURAL GHG EMISSIONS
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References26
European Environment Agency, Annual European Union greenhouse gas inventory 1990–2012 and inventory report 2014, 2014. Available at: http://www.eea.europa.eu/publications/european-union-greenhouse-gas-inventory-
United States Environmental Protection Agency, Global greenhouse gas emissions data, 2013. Available at: http://epa.gov/climatechange/ghgemissions/global.html
EUROSTAT, Agriculture - greenhouse gas emission statistics, 2015 . Available at: http://ec.europa.eu/eurostat/statistics-explained/index.php/Agriculture_- _greenhouse_gas_emission_statistics
Organisation for Economic Co-operation and Development, Review of the literature on the cost -effectiveness of greenhouse gas mitigation measures for agriculture. OECD Trade and agriculture directorate, Environment directorate. Joint Working Party on Agriculture and the Environment., 2014.
Vermont B., de Cara S. How costly is mitigation of non -CO2 greenhouse gas emissions from agriculture : A meta -analysis, Ecologi cal Economics vol. 69, pp 1373-1386, 2010.
Lounhichi K., Janssen S., Kanellopoulos A., Li H., Borkowski N., Flichman G., Hengsdijk H., Zander P., Fonseca M .B., Stockstad G., Athanasiadis I.N., Rizzoli A.E., Huber D., Heckelei T., Van Ittersum M. , A Generic Farming System Simulator, Environmental and agrucultural modeling: integrated approach for Policy, Springer, pp 109.-132, 2010.
Dalaglu I., Nassauer J.I., Riolo R.L., Scavia D., Development of farmer typology of agricultural conservation behavior in the America Corn Belt, Agricultural Systems, vol. 129, 2014.
Khalid M.N., Cluster analysis – a standard setting technique in measurement and testing. Journal of Applied Quantitative Methods, pp. 46-58, 2011.
Dos Santos M.J.P.L., Segmenting farms in the European Union. Agricultural Economics, vol. 59/issue 2, pp. 49-57, 2013.
Chavez M.D., Berentsen P.B.M. and Oude Lansink A.G.J.M., Creating a typology of tobacco farms according to determinants of diversification in Valle de Lerma (Salta-Argentina). Spanish Journal of Agricultural Research, vol. 8/issue 2, pp. 460- 471, 2010.
Rasli A., Data analysis and interpretation: A handbook for postgraduate social scientists, Malaysia, 2006, 177 p.
Kodinariya T.M., Makwana P.R., Review on Determining of Cluster in K-means Clustering. International Journal of Advance Research in Computer Science and Management Studies, vol. 1/issie 6, pp. 90 -95, 2013.
FAO, Greenhouse Gas Emissions from the Dairy Sector. A Life Cycle Assessment, 2010. Available at: http://www.fao.org/docrep/012/k7930e/k7930e00.pdf International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
European Environment Agency, Annual European Union greenhouse gas inventory 1990–2012 and inventory report 2014, 2014. Available at: http://www.eea.europa.eu/publications/european-union-greenhouse-gas-inventory-
United States Environmental Protection Agency, Global greenhouse gas emissions data, 2013. Available at: http://epa.gov/climatechange/ghgemissions/global.html
EUROSTAT, Agriculture - greenhouse gas emission statistics, 2015 . Available at: http://ec.europa.eu/eurostat/statistics-explained/index.php/Agriculture_- _greenhouse_gas_emission_statistics
Organisation for Economic Co-operation and Development, Review of the literature on the cost -effectiveness of greenhouse gas mitigation measures for agriculture. OECD Trade and agriculture directorate, Environment directorate. Joint Working Party on Agriculture and the Environment., 2014.
Vermont B., de Cara S. How costly is mitigation of non -CO2 greenhouse gas emissions from agriculture : A meta -analysis, Ecologi cal Economics vol. 69, pp 1373-1386, 2010.
Lounhichi K., Janssen S., Kanellopoulos A., Li H., Borkowski N., Flichman G., Hengsdijk H., Zander P., Fonseca M .B., Stockstad G., Athanasiadis I.N., Rizzoli A.E., Huber D., Heckelei T., Van Ittersum M. , A Generic Farming System Simulator, Environmental and agrucultural modeling: integrated approach for Policy, Springer, pp 109.-132, 2010.
Dalaglu I., Nassauer J.I., Riolo R.L., Scavia D., Development of farmer typology of agricultural conservation behavior in the America Corn Belt, Agricultural Systems, vol. 129, 2014.
Khalid M.N., Cluster analysis – a standard setting technique in measurement and testing. Journal of Applied Quantitative Methods, pp. 46-58, 2011.
Dos Santos M.J.P.L., Segmenting farms in the European Union. Agricultural Economics, vol. 59/issue 2, pp. 49-57, 2013.
Chavez M.D., Berentsen P.B.M. and Oude Lansink A.G.J.M., Creating a typology of tobacco farms according to determinants of diversification in Valle de Lerma (Salta-Argentina). Spanish Journal of Agricultural Research, vol. 8/issue 2, pp. 460- 471, 2010.
Rasli A., Data analysis and interpretation: A handbook for postgraduate social scientists, Malaysia, 2006, 177 p.
Kodinariya T.M., Makwana P.R., Review on Determining of Cluster in K-means Clustering. International Journal of Advance Research in Computer Science and Management Studies, vol. 1/issie 6, pp. 90 -95, 2013.
FAO, Greenhouse Gas Emissions from the Dairy Sector. A Life Cycle Assessment, 2010. Available at: http://www.fao.org/docrep/012/k7930e/k7930e00.pdf International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
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