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http://dx.doi.org/10.14578/jkfs.2011.100.2.3

A Change of Stream Water Quality by Forest Types  

Ma, Ho-Seop (Division of Forest Environment Science, Gyeongsang National University (Institute of Agriculture Llife Science))
Kang, Won-Seok (Division of Forest Environment Science, Gyeongsang National University (Institute of Agriculture Llife Science))
Kang, Eun-Min (Division of Forest Environment Science, Gyeongsang National University (Institute of Agriculture Llife Science))
Publication Information
Journal of Korean Society of Forest Science / v.100, no.2, 2011 , pp. 142-148 More about this Journal
Abstract
This study was carried out to clarify the change characteristics of stream water quality by type of forest from June to August, 2009 in three stands (Castanea crenata, Pinus densiflora and Plantation Land) of Samgye-ri Naedong-myeon Jinju-si Gyeongsangnam-do. The pH of stream water in three stands was highest in Pinus densiflora (pH 7.18) followed by Castanea crenata (pH 6.90) and Plantation land (pH 6.90) while the electrical conductivity of stream water was highest in Plantation land followed by Castanea crenata stand and Pinus densiflora stand was the lowest. Cations contents of stream water in three stands were high in order of $Ca^{2+}$, $Na^{+}$, $Mg^{2+}$, $K^{+}$, and $NH_{4}{^{+}}$. But anions of stream water in Castanea crenata stand and Pinus densiflora stand were high in order of $SO_{4}{^{2-}}$, $Cl^{-}$ and $NO_{3}{^{-}}$ while those of stream water in Plantation land were high in order of $SO_{4}{^{2-}}$, $NO_{3}{^{-}}$ and $C\lambda^{-}$. The stream water in three stands was significant at pH, EC, $NO{^{3-}}$, $Ca^{2+}$, $Mg^{2+}$, $Na^{+}$, $Cl^{-}$, TNU and Color by duncan test. These results indicate that quality of stream water have a difference among three stands. The level of pH, $NH_{4}{^{+}}$, $Cl^{-}$, $SO_{4}{^{2-}}$ and $NO_{3}{^{-}}$ of stream water in three stands were within the domestic use standard for drinking water. but turbidity and color of stream water were more than that of domestic use standard for drinking water. Therefore, non-point sources like urban forest watersheds which are soil erosion and fertilizer application lands should be taken to the appropriate mitigation measures if they are to be used as source of drinking water.
Keywords
anions contents; electrical conductivity; stream water quality; non-point Source pollution;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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1 김준현. 1995. 고산계곡수 활용가능성과 개발전략. 고산 계곡수 식수원활용 세미나자료용집. pp. 18.
2 김명희, 민일식, 송석환. 1997. 금산 폐탄광지역의 오염이 하천수에 미치는 영향. 한국임학회지 86(4): 435-442.
3 마호섭, 구소영. 2002. 임지이용이 계류수질변화에 미치는 영향. 한국환경복원녹화기술학회지 5(6): 43-48.
4 박재현, 우보명. 1997. 산림유역내 강수로부터 계류수질에 미치는 영향인자 분석. 한국임학회지 86(4): 489-501.
5 박재현, 마호섭. 1999. 북한산 국립공원내 휴식년 계곡의 수질관리를 위한 계류 수질 모니터. 한국환경복원녹화기술학회지 2(2): 88-96.
6 박재현. 2000. 북한산국립공원 북동사면 일대 계류수질 특성(III)-계류수질 오염에 미치는 영향인자를 중심으로. 한국임학회지 89(3): 297-305.
7 박재현, 우보명, 김우룡, 안현철, 조현서, 추갑철, 김춘식, 최형태. 2001. 북한산 국립공원의 계류수질 보전 전략(I). 한국환경복원녹화기술학회지 4(3): 30-37.
8 이인선, 신상철, 정동일. 1993. 토양 컬럼실험을 통한 비점오염원 오염물질 배출 원단위 산정. 한국수질보전학회지 9(4): 240-245.
9 이호범, 박찬오, 신대윤. 2007. 식생이 다른 산림유역 유출수 특성. 대한환경공학회지 29(3): 311-316.
10 전상린, 황종서. 1993. 지리산의 칠선계곡, 백무동계곡 및 뱀사골계곡의 수환경과 담수어류상. 한국자연보존협회. 조사보고서 제31호: 141-151.
11 전상린, 황종서. 1995. 소백산 국립공원 계류의 수환경 및 담수어류상. 한국자연 보존협회. 조사보고서 제33호: 141-149.
12 정용호, 원형규, 김경하, 박재현, 유정환. 1997. 전기전도가 산림유역내 계류수와 토양수질에 미치는 영향. 산림과학논문집 55: 125-137.
13 정용호, 박재현, 윤호중, 김경하. 2000. 전나무림, 잣나무림 유역에서 산림의 수질정화 기능에 미치는 산림시업영향 (III)-임외우, 수관통과우, 수간류의 pH와 전기전도도를 중심으로. 한국임학회지 89(2): 223-231.
14 최한규, 김종욱, 오기호, 박수진. 2008. 고랭지유역의 강우특성에 의한 하천탁도 발생에 관한 연구. 한국방재학회논문집 8(3): 123-128.
15 相澤州平. 1993. 樹幹流の土壤陽イオン交換における役割. 日本東北支誌 45: 193-194.
16 大類淸和, 生原喜久雄, 相場芳憲 1993. 森林集水域での土壤から溪流 への水質變化. 日本林學會誌 75(5): 389-397.
17 大類淸和, 生原喜久雄, 相場芳賀野 1994. 森林小集水域に おける溪流水質に及ぼ す諸要因の影響. 日本林學會誌 76(5): 383-392.
18 岩坪五郞, 司王林ゆり, 堤利夫 1982. On thespraying of sewage water in a forest(I)-Effect of the spraying on the run-off waterchemicals and the nutrient budgets of theforest watershed. 日本林學會誌 64(5): 187-192.
19 志水俊夫, 坪山良夫. 1990. 寶川流域における融雲流出水の水質特性. 日本林學 會誌 72(2): 171-174.
20 Brooks, K.N., Ffolliott, P.F., Gregersen, H.M. and Thames, J.L. 1994. Hydrology and the management of watersheds. pp. 392.
21 Huang, S.-L. and Ferng, J.-J. 1990. Applied land classification for surface water utility management I.: Watershed Classification. Journal of Environmental Management 31: 107-126.   DOI
22 Tsugio, E. 1996. Changes in pH values on the runoff water of the rainfall by forest. Northeast Asian Forests in 21st Century in '96 International Symposium on Forest Science. The Institute of Forest Science. Kangwon National University. pp. 37-46.
23 Vaughan, L. 1984 Logging and the environment. N.Z. Logging Industry Research Association Research Association. pp. 73.
24 Whitehead, P.G., Bird, S., Hornung, M., Cosby, J., Neal, C. and Paricos, P. 1988. Stream acidfication trends in the welsh uplands-a modelling study of the Llyn Brianne catchments. Journal of Hydrology 101: 191-212.   DOI   ScienceOn