DOI QR코드

DOI QR Code

Estimation of the Virtual Water Consumption for Food Consumption and Calorie Supply

식품 소비 및 칼로리 공급 변화에 따른 가상수 소비량의 변화 분석

  • Lee, Sang-Hyun (Department of Biological and Agricultural Engineering, Texas A&M University) ;
  • Choi, Jin-Yong (Department of Rural Systems Engineering, and Research Institute for Agriculture & Life Sciences, Seoul National University) ;
  • Yoo, Seung-Hwan (Department of Agricultural and Biological Engineering, Purdue University)
  • Received : 2015.04.20
  • Accepted : 2015.05.12
  • Published : 2015.05.30

Abstract

The agricultural water management generally has focused on water resources for crop production but it could be affected by the food consumption pattern. The aim of this study is to estimate virtual water consumption for food consumption and calorie supply using the water footprint and virtual water concept. In addition, we estimated the virtual water requirements for increasing the food and calorie self-sufficiency adjusted by the government for food security. About $330.0m^3/cap/yr$ of virtual water was consumed for the main foods consumption in 1985, and it was increased to $450.0m^3/cap/yr$ in 2010. The rate of virtual water consumption by meats consumption was 28 % in 1985 but it was increased to 54 % in 2010. In other words, the total virtual water consumption by foods consumption was increased from 1985 to 2010 with the high rate of meats consumption. The average $1.29m^3$ of virtual water was consumed for supplying 1 calorie per capita in 2010 but about $10.1m^3/cal$ of virtual water was consumed by only bovine meats consumption. The food self-sufficiency is the main factor for food security in Korea. About $46.5Mm^3$ and $393.9Mm^3$ of virtual water were required in order to increase the food and calorie self-sufficiency of wheat by 1 % individually. This study showed the water consumption was related to food consumption and calorie supply pattern, and these results could be used as the indices for the agricultural water management considering the change of eating habit and food security.

Keywords

References

  1. Allan, J. A., 1996. Water Use and Development in Arid Regions: Environment, Economic Development and Water Resource Politics and Policy. Review of European Community and International Environmental Law 5(2): 107-115. https://doi.org/10.1111/j.1467-9388.1996.tb00258.x
  2. Hoekstra, A. Y. and A. K. Chapagain, 2007. Water footprints of nations: water use by people as a function of their consumption pattern, Water Resources Management 21(1): 35-48. https://doi.org/10.1007/s11269-006-9039-x
  3. Hoekstra, A. Y., A. K. Chapagain, and M. M. Aldaya, 2011. The water footprint assessment manual, Earthscan, London, UK.
  4. Howells, M., S. Hermann, M. Welsch1, M. Bazilian, R. Segerstrom1, T. Alfstad, D. Gielen, H. Rogner, G. Fischer, H. Velthuizen, D. Wiberg, C. Young, R. A. Roehrl, A. Mueller, P. Steduto, and I. Ramma, 2013. Integrated analysis of climate change, land-use,energy and water strategies, Nature Climate Change 3: 621-626. https://doi.org/10.1038/nclimate1789
  5. Korea Rural Economic Institute (KREI), 2012. A study on the introduction and utilization of virtual water to agriculture (in Korean).
  6. Korea Rural Economic Institute (KREI), 2013. Food balance sheet, Korea Rural Economic Institute: Seoul, Republic of Korea (in Korean).
  7. Korea Rural Economic Institute (KREI), Ministry for Food, Agriculture, Forestry and Fisheries (MIFAFF), 2010. Report on the conceptualization of food self-sufficiency ratio and adjustment of its target in Korea, Korea Rural Economic Institute: Seoul, Republic of Korea (in Korean).
  8. Lee, G. I., J. H. Choi and H. G. Moon, Effect of Food Policy on Improving Food Self-Sufficiency Ratio based on Calories, 2001. Rural Economics 24(1): 15-28 (in Korean).
  9. Lee, S. H., J. Y. Choi, S. H. Yoo, Y. D. Kim, and A. Shin, 2015. Estimation of water footprint for livestock products in Korea, Journal of the Korean Society of Agricultural Engineers 57(2): 85-92 (in Korean). https://doi.org/10.5389/KSAE.2015.57.2.085
  10. Liu, J. and H. H. G. Savenije, 2008. Food consumption patterns and their effect on water requirement in China, Hydrology and Earth System Sciences Discussions, 12(3): 887-898. https://doi.org/10.5194/hess-12-887-2008
  11. Ministry for Food, Agriculture, Forestry and Fisheries (MIFAFF), 2010. A study on conceptualization of food self-sufficiency rate and reestablishing its target in Korea (in Korean).
  12. Ministry of Construction & Transportation (MCT), 2000. Water vision 2020 (in Korean).
  13. Ministry of Environment (ME), 2014. Korean Climate Change Assessment Report 2014 (in Korean).
  14. Pingali, P, 2006. Westernization of Asian diets and the transformation of food systems: Implications for research and policy. Food Policy 32: 281-298.
  15. Rosegrant, M. W. and M. A. Sombilla, 1997. Critical Issues Suggested by Trends in Food, Population, and the Environment to the Year 2020. American Journal of Agricultural Economics 79(5): 1467-1470. https://doi.org/10.2307/1244363
  16. United States Department of Agriculture (USDA), 2014. The Water-Energy Nexus: Challenges and Opportunities.
  17. Vorosmarty C. J., P. Green, J. Salisbury, and R. B. Lammers, 2000. Global Water Resources: Vulnerability from Climate Change and Population Growth. Science 289 (5477): 284-288. https://doi.org/10.1126/science.289.5477.284
  18. Yoo, S. H., J. Y. Choi, S. H. Lee, and T. G. Kim, 2014a. Estimating water footprint of paddy rice in Korea. Paddy and Water Environment 12(1): 43-54. https://doi.org/10.1007/s10333-013-0358-2
  19. Yoo, S. H., J. Y. Choi, T. Kim, J. B. Im, and C. Chun, 2009. Estimation of Crop Virtual Water in Korea, Journal of Korea Water Resources Association 42(11): 911-920 (in Korean). https://doi.org/10.3741/JKWRA.2009.42.11.911
  20. Yoo, S. H., S. H. Lee, and J. Y. Choi, 2014b. Estimating water footprint for upland crop production in Korea, Journal of the Korean Society of Agricultural Engineers 56(3): 65-74 (in Korean). https://doi.org/10.5389/KSAE.2014.56.3.065

Cited by

  1. Analyzing the Contribution of Regional Water Resource through the Regional Blue Water Flows of Rice Products vol.58, pp.1, 2016, https://doi.org/10.5389/KSAE.2016.58.1.073
  2. Water footprint for Korean rice products and virtual water trade in a water-energy-food nexus vol.43, pp.6, 2018, https://doi.org/10.1080/02508060.2018.1515570