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Two years Monitoring of Vegetation Change in Torrential Stream Restoration Site

황폐계류 복원지의 식생변화 단기 모니터링

  • Received : 2014.02.11
  • Accepted : 2014.04.23
  • Published : 2014.06.30

Abstract

This study was conducted as a restoration research in a mountain stream of hydrologic cycle system, which is a type of microsites purposely changing vegetation. The status of vegetation in the three experimental sites, water purification site, small dammed pole site, and aquatic plant restoration site, and one control site within the area of the mountain forest stream were investigated in three different periods, namely before sites restoration, year of sites restoration, and year after sites restoration. After one year of restoration, number of vegetation was increased in the small dammed pool and control site respectively. Vegetation coverage ratio of Zizania latifolia was increased at the water purification area. The effects of habitats restoration appeared to be good a year after the restoration of the experimental sites, in terms of families and species composition of the introduced vegetation, and stream flow. Therefore, the results of the study strongly suggest that fairly effective ways to restore and reproduce degrading mountain hydroecological habitats are by way of forming pool sites and small dams in intermittent mountain streams and re-vegetating with selected plants.

본 연구는 황폐계류 복원지의 식생변화에 대한 시계열 분석을 통하여 복원기법 및 효과에 대해 고찰하고자 수행 되었으며, 수질정화습지와 월류보, 수생식물 복원지에서 복원 전, 후 식생변화를 2년간 모니터링 하였다. 복원 1년 후 월류보에서 초본류 증가와 수질정화습지에서 줄풀의 피복도 증가가 조사되었다. 식생 피복률은 복원직후 10~30% 감소되었고, 복원 1년 후 복원 전 수준으로 조사 되었다. 황폐계류 복원지의 식생변화는 복원 후 1년 경과시점부터 서식종수, 귀화률, 피복률이 증가하는 것으로 조사되었다.

Keywords

References

  1. Bernhardt, E.S., Palmer, M.A., Allan, J.D., Alexander, G., Barnas, K., Brooks, S., Carr, S., Clayton, S., Dahm, C., Follstad-Shah, J., Galat, D., Gloss, S., Goodwin, P., Hart, D., Hassett, B., Jenkinson, R., Katz, S., Kondolf, G.M., Lake, P.S., Lave, R., Meyer, J.L., O'Donnell, T.K., Pagano, L., Powell, B., Sudduth, E. 2005. Synthesizing U.S. river restoration efforts. Science 308: 636-637. https://doi.org/10.1126/science.1109769
  2. Braun-Blanquet, J. 1964. Pflanzensoziologie. Grundzuge der Vegetationskunde. Dritte Auflage. Springer-Verlag. Wien. pp. 865.
  3. Choi, H.T., Jeong, Y.H., Kim, K.H., Youn, H.J., and Yoo, J.Y. 2008. [Ecological Restoration of Mountain Streams II - Ecological Restoration Plan and Analysis-]. Korea Forest Research Institute. pp. 230 (In Korean).
  4. Choung, Y.S. and Roh, C.H. 2002. Application of Macrophytes for the Treatment of Drained Water from a Freshwater Fish-Farm. Journal of Ecology and Field Biology 25(1): 45-50. https://doi.org/10.5141/JEFB.2002.25.1.045
  5. Chun, S.H., Hyun, J.Y., and Choi, J.K. 1999. A Study on the Distribution Patterns of Salix gracilistyla and Phragmites japonica Communities according to Micro-landforms and Substrates of the Stream Corridor. Journal of the Korean Institute of Landscape Architecture 27(2): 58-68.
  6. Kim, J.J. 2009. A Study on the Method of the Riparian Revegetation Techniques for the Riparian Areas Restoration : Focused on the Han-River Riparian Areas. Ph. D. Thesis. Dankook University pp. 118.
  7. Kim, T.G. and Park, M.A. 2000. Instability and Adjustment of Point Bar with Phragmites Japonica. Journal of Jinju National University 39: 21-28.
  8. Lee, H.H., Lee, D.H., Suk, S.I., and Joo, J.D. 2004. Developing of artificial wetland model for improving water quality of the small-stream. Journal of Korean Forestry Society 2: 341-343.
  9. Lee, M.G. 2009. A Study on Vegetation Characteristic of Forest Wetlands. M. Sc. Thesis. Chonbuk University. pp. 144.
  10. Markoff, D. 2004. The river doctor-profile Dave Rosgen. Science 305: 937-939. https://doi.org/10.1126/science.305.5686.937
  11. Min, K.S., Kwak, Y.S., and Kim, J.H. 2005. Changes in Forms of Nitrogen and Phosphorus in Sediment by Growth of Zizania Latifolia. Journal of Ecology and Field Biology 28(2): 93-98. https://doi.org/10.5141/JEFB.2005.28.2.093
  12. Ministry of Environment. 1997. Development of Close-to-Nature River Improvement Techniques Adapted to the Korean Streams. Korea Institute of Construction Technology. pp. 31.
  13. Ministry of Environment. 2002. Stream restoration guideline. Korea Institute of Construction Technology. pp. 255.
  14. Macoto, N. 1975. [Naturalized Plant. Environmental Science Library]. Dainippon Tosho. p 160 (In Japanese).
  15. Park, J.C. and Lee, H.H. 2000. At a Watershed in Mt. Palgong = Variations of Stream Water Quality Caused by Discharge Change. Journal of Korean Forestry Society 89(3): 342-355.
  16. Park, J.H. 2002. Special Issues : Consideration on Environmentally Friendly Erosion Control Strategy for Conservation of Stream Valley Ecosystem (1). The Korea Society For Environmental Restoration And Restoration Technology 5(5): 67-25.
  17. Raunkiaer, C. 1934. The life forms of plants and statistical plant geography. Clarendon Press. Oxford. pp. 632.
  18. U, H.S. and Kim, S.T. 2000. A Review and Understanding of Stream Corridor Restoration. Journal of The Korea Society For Environmental Restoration and Revegetation Technology 3: 126-144.
  19. Woo, B.M. 1997. Development of Forest Environment Conservation and rehabilitation Technique. Annual Report of Research in Agriculture and Life Sciences 1: 160-162.

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