• 제목/요약/키워드: Gokneung stream

검색결과 4건 처리시간 0.018초

북한산 정릉천과 곡릉천에 서식하는 수서곤충의 계절적 군집구조와 생물학적 수질평가 (Seasonal Community Structure of Aquatic Insects and Biological Assessment of Water Quality at the Jungneung and Gokneung Streams in the Mountain Bukhan)

  • 박성배;배경석;서미연;이용기;박상현;유명진
    • 한국환경보건학회지
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    • 제19권4호
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    • pp.14-24
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    • 1993
  • The present study was accomplished from October, 1992 to June, 1993 in order to examine the seasonal community structure of aquatic insects and the biological estimation of water quality by the aquatic insects of the Jungneung and Gokneung streams in the Mt. Bukhan. The obtained results are as follows: 1. The total taxa of aquatic insects appeared as 77 species, 45 genera, 28 families in 7 orders. 2. Seasonal occurrence species numbers showed the highest in the autumn of the Jungneung stream (19 species) and in the spring of the Gokneung stream (41 species). Seasonal occurrence individual numbers showed the highest in the summer of the Jungneung and Gokneung streams (5,901, 3,180 individuals) and the lowest in the autumn of Jungneung stream (612 individuals) and in the winter of the Gokneung stream (1,764 individuals). 3. Annual dominance indices showed 0.52 (stJ1)~1.00 (st.J3) range in the Jungneung stream, and 0.47 (st. G1)~0.76 (G2) range in the Gokneung stream. 4. Seasonal species diversity indices showed 0.00 (st J3, whole seasons)~3.12 (st.J1, Spring) range in the Jungneung stream and 0.69 (st. G2, summer) ~3.10 (st. G4, spring) in the Gokneung stream. 5. Biological saprobic system based on species diversity indices of aquatic insects appeared as oligosaprobic area: site J3, $\alpha$-mesosaprobic area: site J2, G2, G3 and $\beta$-mesosaprobic area: site J1, G1, G4.

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곡릉천 생태계의 오염부하량과 계절에 따른 자정능의 변화 (Pollutant Loading and Changes of the Self - Purification Capacity with Season in Gokneung Stream Ecosystem)

  • 이선경;심규철;김재영;김준민;장남기
    • The Korean Journal of Ecology
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    • 제17권3호
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    • pp.355-366
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    • 1994
  • 본 연구에서는 하천 생태계가 갖고 있는 오염에 대한 자정작용의 본질과 오염부하량과의 관계를 구명하기 위한 기초자료를 얻기 위하여 곡릉천에서의 계절에 따른 수질의 변화와 자정작용의 양상을 조사하였다. 하천생태계에 영향을 미칠 것으로 생각되는 곡릉천 유역의 육상생태계의 식생조사 결과 하천의 주변 삼림에는 주로 참나무종류(Quercus sp.)가 우점하고 있었으며, 산등성이 부근에는 소나무(Pinus densiflora)가 우점하고 있었다. 이화학적 수질조사에서 수온 및 pH는 지소별 차이가 거의 없었으나, DO는 가장 상류인 일자꿀부근(지점1)이 낮았고, 하류로 내려올수록 높아져 청운산장 부근(지점5)이 가장 높았다. 평균 BOD는 지점 1이 7.23mg/l로 가장 높았고, 지점 5가 가장 낮았다. 지점 1에서의 전기전도도는 179.9${\mu}$s/cm, 총 인의 양은0.040mg/l로 높고, 지점5가 낮았다. 수서곤충의 출현에 의한 생물학적 수질조사에서는 지점1에서는 오염수역의 지표종인 복족류와 깔다구류가 우점종으로 나타났으며, 지점 4,5에서는 청정수역의 지표종인 하루살이류(Eprorus latifolium), 날도래류(Hydropsyche sp.) 및 플라나리아 등이 우점종으로 나타났다. 생물 오탁지수에 의한 수질 판정에 의하면 지점 1,2는 ${\beta}$-중부수성, 지점 3,4,5는 빈부수성 수역으로 나타났다. BOD를 근거로 한 곡릉천의 자정계수는 지점1과 지점2사이의 구간이 1.013으로 가장 높았고, 전체적으로는 추계인 9월이 0.995로 동계인 1월(0.272)에 비해 높았다. 이로부터 상류인 지점1에서 인간의 영향으로 오염되었던 물이 아래로 내려갈수록 자정되어 청정해짐을 알 수 있으며, 이러한 자정작용은 동계와 하계에 비해 춘계와 추계레 더 크게 일어남을 알 수 있다.mall sleeve long coat, belt , boots as an official dress. 2) the soldiers wore helmet, scarf, yangdang-kap , hung-kap, bak-kap, we-yo-kap, kun-kap and jok-kap and carries arms. 3) The young boys bind his hair up one, two and three angle shape an tied up a hair ribbons. 나) Women's wear : 1. Hair Style and hair dress : high rank ladies made their hair top knot (one, two, or more knots) and tied with hair ribbons , and decorated with precious stone, pan shape head dress , wheel shape head dress. 2. Clothes ; 1) high rank ladie's wore kun -kyun attached jacket , and jacket sleeves decorated pleats and pleats decorated on skirt, apron, back apron, knot belt, scarf.d with gold and silver developed into Kumdongkwan(금동관). The Kwanmo which is similar to Kumkwan (금관) of Baekje and Shilla has been shown in Kaimachong (가마총) 무 dJumdongkwan(금동관) was excavated in the ancient tombs of Kokuryo.것을 볼 수있다. 단순하면서 우주공간을 선회하는 듯한 입체적인 라인,

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生態系에 있어서 自淨係數의 測定과 汚染負荷量의 調節 原理 (Determination of self-purification constants and regulation of pollutants loaded in the ecosystems)

  • Chang, Nam-Kee;Kim, Jae-Young
    • The Korean Journal of Ecology
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    • 제15권3호
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    • pp.287-296
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    • 1992
  • To determinate self-purification constants of pollutants loaded in the ecosystems, the self- purification process was formulated, and a measurement method of the self-purification constants was derived. $C=C_0e^{-st}$ When $C_0$ is the initial pollutant amounts loaded in a ecosystem, and C is the rest pollutant amounts after the time, t, the equation of the self-purification, s, is $s=\frac{P}{C}$ When in aquatic ecosystem, $C_0$ is the initial polluant amounts loaded in water body, and Cis the rest pollutation amounts after the time, t, the self-purification constant, s, is $s=(\frac{\ln C_0-\ln C}{t}$ Self-purification constants of pine and oak forests at kwangneung in kyonggido were 0.07 and 10 respectively, of BOD in gokneung stream in kyonggido was 0.51, and of glucose and phosphate in pools on the stone in mt.jiri were 0.49 and 15.19 respectively.

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자기 환경화를 통한 환경교육 전략의 효과 (The Effect of the Environmental Education Strategy through Personalization of Environment)

  • 이선경;장남기
    • 한국환경교육학회지:환경교육
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    • 제5권1호
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    • pp.71-88
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    • 1993
  • This study was conducted to develop and effective strategy for environmental education. At first, the environmental education strategy through personalization of environment was proposed. Then students in a middle school participated the program according to the strategy and its. effect was investigated. The strategy was designed in basis of the role of the limbic system in brain and involved field-oriented experience such as viewing the non-personal environment as the personal environment. Gokneung stream was selected as the site to conduct this environmental education. Students investigated water quality by senses and biological method. The same content was taught for the classroom group and simple outdoor group selected for the comparison by traditional instructional method. The pre- and post-test by the instrument to test environmental attitude, qualitative questionnaire, cognitive test, the pre- and post-interview were conducted to investigate the effect the program. The achievement of the classroom group(personalization group). But the change of the attitude toward environment of personalization group between pre- and post-test was significantly higher than the classroom group. In qualitative questionnaire and pre- and post-interviews, attitude toward environment differed between two group. The behavioral change to discover and to solve environmental problems was demonstrated in case the personalization group, but was unclear in the classroom group. These results indicated the environmental education strategy through personalization of environment was an effective strategy to change the awareness, attitude and behavior toward the environment compared with a traditional teaching strategy.

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