• Estimating of the Greenhouse Gas Mitigation and Function of Water Resources Conservation through Conservation of Surface Soils Erosion and Policy Suggestion
  • Oh, Seung-Min;Kim, Hyuck Soo;Lee, Sang-Pil;Lee, Jong Geon;Jeong, Seok Soon;Lim, Kyung Jae;Kim, Sung-Chul;Park, Youn Shik;Lee, Giha;Hwang, Sang-Il;Yang, Jae-E;
  • Department of Biological Environment, Kangwon National University;Department of Biological Environment, Kangwon National University;Department of Biological Environment, Kangwon National University;Department of Biological Environment, Kangwon National University;Department of Biological Environment, Kangwon National University;Department of Regional Infrastructures Engineering, Kangwon National University;Department of Bio Environmental Chemistry, Chungnam National University;Department of Rural Construction Engineering, Kongju National University;Construction & Disaster Prevention Engineering, Kyungpook National University;Korea Environment Institute;Department of Biological Environment, Kangwon National University;
  • 표토유실 보전을 통한 온실가스배출 저감과 수자원 보전 기능의 산출 및 정책제안
  • 오승민;김혁수;이상필;이종건;정석순;임경재;김성철;박윤식;이기하;황상일;양재의;
  • 강원대학교 바이오자원환경학과;강원대학교 바이오자원환경학과;강원대학교 바이오자원환경학과;강원대학교 바이오자원환경학과;강원대학교 바이오자원환경학과;강원대학교 지역건설공학과;충남대학교 생물환경화학과;공주대학교 생물산업공학부;경북대학교 건설방재공학부;한국환경정책.평가연구원;강원대학교 바이오자원환경학과;
References
  • 1. AIRI, 2013, Analysis of Non-point Pollution Source for Improvement of Water Quality, Audit Result Report, Audit and Inspection Research Institute, Korea.
  •  
  • 2. Beyer, L., Frund, R., SchleuB, U., and Wachendorf, C., 1993, Colluvisols under cultivation in Schleswig-Holstein. 2. Carbon distribution and soil organic matter composition, J. Plant Nutr. Soil Sci., 156(3), 213-217.
  •  
  • 3. Bouma, J., 2014, Soil science contributions towards Sustainable Development Goals and their implementation: linking soil functions with ecosystem services, J. Plant Nutr. Soil Sci., 177, 111-120.
  •  
  • 4. Chappell, A., Baldock, J., and Sanderman, J., 2015, The global significance of omitting soil erosion from soil organic carbon cycling schemes, Nat. Clim. Change, 6(2), 187-191.
  •  
  • 5. Cho, Y.C., Jin, S.J., Han, H.J., Ryu, M.H. and Yoo, S.H., 2016, Estimailn of the Aesthetic and Environmental Costs of Algal Bloom, Kor. Environ. Pol. Admin. Soc., 24(4), 227-246.
  •  
  • 6. De Rose, R.C., 2013, Slope control on the frequency distribution of shallow landslides and associated soil properties, North Island, New Zealand, Earth Surf. Process. Landf., 38, 356-371.
  •  
  • 7. European Commission, 2006, Proposal for a Directive of the European Parliament and of the Council Establishing a Framework for the Protection of Soil and Amending Directive 2004/35/EC. Brussels, 22-9-2006. COM (2006)232 final.
  •  
  • 8. FAO, IIASA, ISRIC, ISS-CAS, JRC, 2009, Harmonized World Soil Database v1.1. FAO, Rome, Italy and IIASA, Laxenburg, Austria.
  •  
  • 9. FAO, 2017, Soil Organic Carbon: the Hidden Potential.
  •  
  • 10. Hong, S.Y., Minasny, B., Zhang, Y., Kim, Y., and Jung, K., 2010, Digital soil mapping using legacy soil data in Korea. Proceeding of 19th World Congress of Soil Science, Soil Solutions for a Changing World, World Congress of Soil Science, Brisbane, Australia, p. 1-6.
  •  
  • 11. Hoyle, F.C., Baldock, J.A., and Murphy, D.V., 2011, Soil organic carbon-role in rainfed farming systems. In: Rainfed Farming Systems, Springer, Netherlands, p. 339-361)
  •  
  • 12. Huang, J., Yu, H., Guan, X., Wang, G., and Guo, R., 2016, Accelerated dryland expansion under climate change, Nature Clim. Change, 6(2), 166-171.
  •  
  • 13. IPCC, 2014, Climate Change: Synthesis Report; Summary for Policymakers.
  •  
  • 14. Jacinthe, P.A., and Lal, R., 2001, A mass balance approach to assess carbon dioxide evolution during erosional events. Land Degrad. Dev., 12(4), 329-339.
  •  
  • 15. Jung Y.S. and Ha S.K., 2013, Soil Science, Kangwon National University, Korea
  •  
  • 16. KECO, 2012, Algae Reduction Technology for Improvement Water Ecological Stability. Korea Environment Corporation, Korea.
  •  
  • 17. Keesstra S.D., V. Geissen, K. Mosse, S. Piiranen, E. Scudiero, M. Leistra and van Schaik L., 2012, Soil as a filter for groundwater quality, Environ. Sustain., 4(5), 507-516.
  •  
  • 18. KEI, 2007, Building the Environmental Valuation $System{\bullet}{\times}$, Korea Environment Institute, Korea.
  •  
  • 19. KEI, 2013, Research on Mid-long-term Policy Plan for Building National Water Security, Korea Envionment Istitute, Korea.
  •  
  • 20. Kim, J.H., Kim, K.T. and Lee, H.J., 2009, Analysis of Korea soil erosion yields and soil loss hazard zone, J. GIS Assoc. Korea, 17, 261-268.
  •  
  • 21. Kirkels, F.M.S.A., Cammeraat, L.H., and Kuhn, N.J., 2014, The fate of soil organic carbon upon erosion, transport and deposition in agricultural landscapes-a review of different concepts, Geomorphology, 226, 94-105.
  •  
  • 22. Koch, A., McBratney, A., Adams, M., Field, D., Hill, R., Crawford, J., Minasny, B., Lal, R., Abbott, L., O'Donnell, A., Angers, D., Baldock, J., Barbier, E., Binkley, D., Parton, W., Wall, D.H., Bird, M., Bouma, J., Chenu, C., Flora, C.B., Goulding, K., Grunwald, S., Hwmpel, J., Jastrow, J., Lehmann, J., Lorenz, K., Morgan, C.L., Rice, C.W., Whitehead, D., Young, I., and Zimmermann, M., 2013, Soil security: solving the global soil crisis, Global Policy, 4(4), 434-441.
  •  
  • 23. Lal, R., 1995, Global soil erosion by water and carbon dynamics. In: Lal, R., Kimble, J.M., Levine, E., Stewart, B.A., (ed.), Soils and Global Change, CRC/Lewis Publishers, Boca Raton, p. 131-141.
  •  
  • 24. Lal, R., 2003, Soil erosion and the global carbon budget, Environ. Int., 29, 437-450.
  •  
  • 25. Lal, R., 2004, Soil carbon sequestration impacts on global climate change and food security, Science, 304(5677), 1623-1627.
  •  
  • 26. Lal, R., 2005, Soil erosion and carbon dynamics, Soil Till. Res., 81(2), 137-142.
  •  
  • 27. Lal, R., 2006, Influence of soil erosion on carbon dynamics in the world, In: Roose, E.J., Lal, R., Feller, C., Barthes, B., Stewart, B.A. (ed.), Advances in Soil Science: Soil Erosion and Carbon Dynamics, Taylor & Francis, Boca Raton, p. 23-36.
  •  
  • 28. Lal, R., Pimentel, D., 2008, Soil erosion: a carbon sink or source?, Science, 319(5866), 1040-1042.
  •  
  • 29. McBratney, A., Field, D.J., and Koch, A., 2014, The dimensions of soil security, Geoderma, 213, 203-213.
  •  
  • 30. MCT, 2006, Long-term Comprehensive Plan for Water Resources (2006-2020), Ministry of Construction & Transportation, Korea.
  •  
  • 31. Minasny, B., Malone, B.P., McBratney, A.B., Angers, D.A., Arrouays, D., Chambers, A., Chaplot, V., Chen, Z., S., Cheng, K., Das, B.S., Field, D.J., Gimona, A., Hedley, C.B., Hong, S.Y., Mandal, B., Marchant, B.P., Martin, M., McConkey, B.G., Mulder, V.L., O'Rourke, S., Richer-de-Forges, A.C., Odeh, I., Padarian, J., Paustian, K., Pan, G., Poggio, L., Savin, I., Stolbovoy, V., Stockmann, U., Sulaeman, Y., Tsui, C.C., Vagen, T.G., van Wesemael, B., and Winowiecki, L., 2017, Soil carbon 4 per mille, Geoderma, 292, 59-86.
  •  
  • 32. MLIT (Ministry of Land Infrastructure and Transport) and Kwater, 2016, Water for the Future, Water and Jobs, Korea
  •  
  • 33. MOE, 2013, A Study on Policy Direction Setting by Change of Water Environment Management Condition, Ministry of Environment, Korea.
  •  
  • 34. MOE, 2014, Monitoring and Evaluation Project of Nonpoint Source Controlled Area Nearby Doam Lake, Ministry of Environment, Korea.
  •  
  • 35. MOE, 2015, Notification of the Topsoil Preliminary Investigation, Ministry of Environment, Korea.
  •  
  • 36. Mora, J.L., Guerra, J.A., Armas, C.M., Rodriguez-Rodriguez, A., Arbelo, C.D., and Notario, J.S., 2007, Mineralization rate of eroded organic C in Andosols of the Canary Islands, Sci. total environ., 378(1), 143-146.
  •  
  • 37. Navarro, A.F., Cegarra, J., Roig, A., and Garcia, D., 1993, Relationships between organic matter and carbon contents of organic wastes, Biores. Technol., 44(3), 203-207.
  •  
  • 38. Nearing, M.A., Pruski, F.F., and O'neal, M.R., 2004, Expected climate change impacts on soil erosion rates: a review, J. Soil Water Conserve., 59(1), 43-50.
  •  
  • 39. Novara, A., Keesstra, S., Cerda, A., Pereira, P., and Gristina, L., 2016, Understanding the role of soil erosion on $co_2$-c loss using $^{13}c$ isotopic signatures in abandoned Mediterranean agricultural land, Sci. Total Environ., 550, 330-336.
  •  
  • 40. Nycle C. B. and Ray R.W., 2010, Elements of the Nature and Properties of Soils, 3rd, Pearson College Div, Korea.
  •  
  • 41. OECD, 2008, Environmental performance of agriculture in OECD countires since 1990.
  •  
  • 42. Oh, Y.J., Kim, M.H. Na, Y.E. Hong, S.H., Paik, W.K. and Yoon, S.T., 2012, Vulnerability assessment of soil loss in farm area to climate change adaption, Kor. J. Soil Sci. Fer. 45(5), 711-716.
  •  
  • 43. Oskarsson, H., Arnalds, O., Gudmundsson, J., and Gudbergsson, G., 2004, Organic carbon in Icelandic Andosols: geographical variation and impact of erosion, Catena, 56, 225-238.
  •  
  • 44. Schlesinger, W.H., 1995, Soil respiration and changes in soil carbon stocks, In: Woodwell, G.M., Mackenzie, F.T. (ed.), Biotic Feedbacks in the Global Climatic System: Will the Warming Feed the Warming, Oxford University Press, New York, p. 159-168.
  •  
  • 45. Smith, S.V., Renwick,W.H., Buddemeier, R.W., and Crossland, C.J., 2001, Budgets of soil erosion and deposition for sediments and sedimentary organic carbon across the conterminous United States, Glob. Biogeochem. Cycles, 15, 697-707.
  •  
  • 46. Song, K.Y. and Kang, H.J., 2006, Construction and application of artificial wetlands for water purification, Kor. Geo-Environ. Soc., 7(1), 6-10.
  •  
  • 47. Stallard, R.F., 1998, Terrestrial sedimentation and the carbon cycle: coupling weathering and erosion to carbon burial, Glob. Biogeochem. Cycles, 12(2), 231-257.
  •  
  • 48. UNEP (United Nations Environment Programme), 2007, Global Environmental Outlook GEO4 - Environment for Development.
  •  
  • 49. Van Oost, K., Quine, T.A., Govers, G., De Gryze, S., Six, J., Harden, J.W., Ritchie, J.C., McCarty, G.W., Heckrath, G., Kosmas, C., Giraldez, J.V., Marques da Silva, J.R., and Merckx, R., 2007, The impact of agricultural soil erosion on the global carbon cycle, Science, 318(5850), 626-629.
  •  
  • 50. Wang, X., Cammeraat, E.L.H., Romeijn, P., and Kalbitz, K., 2014, Soil organic carbon redistribution by water erosion - The role of $CO_2$ emissions for the carbon budget, PLOS ONE, 9(5), e96299.
  •  

This Article

Correspondence to

  • E-mail: