Effects of Soil Environments by Location on the Cambium Electric Resistance of Pinus thunbergii in Urban Park and Open Space

도시공원녹지의 입지별 토양특성이 곰솔의 형성층 전기저항에 미치는 영향

  • Park, Seung-Burm (Dept. of Urban Planning and Landscape Architecture, Donga University) ;
  • Nam, Jung-Chil (Dept. of Urban Planning and Landscape Architecture, Donga University) ;
  • Kim, Seok-Kyu (NEXUS Environmental Design Center/Dept. of Urban Planning and Landscape Architecture, Donga University)
  • 박승범 (동아대학교 도시계획조경학부) ;
  • 남정칠 (동아대학교 도시계획조경학부) ;
  • 김석규 (NEXUS환경디자인연구원/동아대학교 도시계획조경학부)
  • Received : 2006.08.02
  • Accepted : 2006.12.01
  • Published : 2006.12.31

Abstract

The purpose of this study is to propose rational methods in order to maintain vegetation condition and soil environment based on the analysis of tree growth in relation to the soil environment, which is one of the most significant environmental factors on vegetation condition in urban parks and open spaces. The result of the study can be described as below;The soil on every study site had strong acidity. In particular, study sites around industrial district and central business district showed extreme soil acidity. Therefore, soil management system is needed in urban parks and green spaces around those areas. Among Cambium Electric Resistance classified by locations of urban parks and open spaces, one in the costal area was the lowest. The Cambium Electric Resistance in the industrial area was the highest. Therefore, soil condition and locational environment in the industrial area are highly related to the Cambium Electric Resistance. Among the factors, which affect Cambium Electric Resistance in different locations, inorganic content was found to be the main factor in all of the study sites. Inorganic content was an important factor to the Cambium Electric Resistance in study sites located in industrial and central business districts. In the study sites located in costal area, Soil acidity was found to be other important factors that affect Cambium Electric Resistance. To improve the soil acidity, soil buffering ability should be improved from activating microorganisms in the soil by using lime and organic material, Since it takes a long time to make a change in the soil structure, well planed maintenance system is required by mid-term or long-term plans.

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