• Title/Summary/Keyword: 생태학적

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An Analysis of China's Approach to Shared Rivers: Focusing on Factors of Dam projects at the Yaluzangbu River Basin (중국의 공유하천 접근방식 분석 -중국의 야루짱부(아로장포(雅魯藏布))강 댐 건설 요인을 중심으로-)

  • An, Seon-Young;Park, Sung-Je;Ryu, Si-Saeng
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.841-845
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    • 2012
  • 최근 중국과 인도는 공유하천인 야루짱부(중국명: 아로장포(雅魯藏布), 인도명:Brahmaputra)강 유역 내 수력발전용 댐 건설을 놓고 갈등 중이다. 발단은 중국이 2010년 9월에 정식으로 착공한 짱무수력발전댐(장목수전참(藏木水電站))의 건설이다. 총길이 3,848km, 유역면적 71만여 $km^2$인 야루짱부강은 중국과 인도, 방글라데시, 부탄 4개국이 공유하고 있다. 야루짱부강의 발원지는 히말라야 산맥 북쪽 기슭의 지에마양쫑 빙하(걸마앙종(杰馬央宗) 빙천(冰川))이고 중국내 길이가 2,057km에 달한다. 강은 중국의 씨짱(서장(西藏))지역, 인도의 아루나찰 프라데시(Arunachal Pradesh)주와 아쌈(Assam)주를 경유하여 부탄, 방글라데시로 흐른다. 야루짱부강은 티베트로 잘 알려진 시짱자치구에서 발원하여 중국과 인도의 영토 분쟁지역인 아루나찰 프라데시주를 관통함으로 인해 지정학적으로 중요한 의미를 갖고 있다. 짱무수력발전댐은 시짱 지역 최대 수력개발댐으로, 인도와 방글라데시는 중국의 댐 건설로 인해 자국의 수자원의 감소와 생태계 파괴가 발생할 것을 우려하고 있다. 그러나 최근 중국과 인도의 관방은 이 같은 우려를 부인하며 인도의 아루나찰 연방당국 또한 5개 주요 지류에 1,750MW 규모의 수력발전댐을 건설할 계획을 발표하였다. 이와 같이 수력발전댐 건설과 수자원확보를 놓고 중국과 인도가 팽팽하게 경쟁하게 된 데는 중국과 인도 간의 역내 힘겨루기와 자국 내 정치적 이해, 영토분쟁지역의 존재 등이 원인으로 작용하고 있다. 본 연구는 중국의 짱무수력발전댐(장목수전참(藏木水電站)) 건설원인을 중국정부가 가진 시짱지역관리 및 개발의 필요성에서 찾고 짱무수력발전댐(장목수전참(藏木水電站)) 건설에 드러난 중국의 표면적, 내재적 의도의 분석을 통해 중국의 공유하천 접근 방식의 특징과 원인을 규명하였다. 발원지에 위치한 중국이 수자원확보경쟁에서 유리한 입장을 점하고 있는 가운데 중국에 비해 상대적으로 정치적, 경제적 열세에 놓인 하류국가들은 공유하천의 동등하게 이용할 권리를 쟁취하기 위해 필요한 협상력을 갖고 있지 못하다. 따라서 하류국가들은 중국의 의도를 파악하여 이를 토대로 적절한 대안을 마련해야 할 필요성이 있다. 중국의 공유하천접근방식의 원인과 특징에 대한 분석은 남북통일 후 중국과 하천을 공유하게 될 우리나라에 시사하는 바가 클 것이라 생각된다.

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Influences of Water Level and Vegetation Presence on Spatial Distribution of DOC and Nitrate in Wetland Sediments (수심의 정도와 식생의 유무에 따른 인공습지 토양 내 유기탄소와 질산염의 공간적 분포)

  • Seo, Ju-Young;Song, Keun-Yea;Kang, Ho-Jeong
    • Journal of Wetlands Research
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    • v.12 no.2
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    • pp.59-65
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    • 2010
  • Wetlands are a well known ecosystem which have high spatial-temporal heterogeneity of chemical characteristics. This high heterogeneity induces diverse biogeochemical processes, such as aerobic decomposition, denitrification, and plant productivity in wetlands. Understanding the dynamics of dissolved organic carbon (DOC) and inorganic nitrogen in wetlands is important because DOC and inorganic nitrogen are main factors controlling biological processes in wetlands. In this study, we assessed spatial distribution of DOC and inorganic nitrogen with relation to the different hydrology and vegetation in created wetlands. Both DOC and nitrate contents were significantly higher in vegetated areas than open areas. Different water levels also affected DOC contents and their quality. Average DOC contents were $0.37mg{\cdot}g^{-1}$ in deep riparian (DR) and $0.31mg{\cdot}g^{-1}$ in shallow riparian (SR). These results appeared to be related to the interaction between carbon supply by vegetation and microbial decomposition. On the other hand, inorganic nitrogen contents were not affected by water level differences. This result indicates that presence/absence of vegetation could be a more important factor than hydrology in the spatial dynamics of inorganic nitrogen. In conclusion, we observed that vegetation and hydrology differences induced spatial distribution of carbon and nitrogen which are directly related to biogeochemical processes in wetlands.

Annual cycles of nutrients and dissolved oxygen in a nutrient-rich temperate coastal bay, Chinhae Bay, Korea (영양염류가 풍부한 온대 해역 내만(한국, 진해만)에서의 영양염류와 용존산소의 연변화)

  • HONG, GI HOON;KIM, KYUNG TAE;PAE, SE JIN;KIM, SUK HYUN;LEE, SOO HYUNG
    • 한국해양학회지
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    • v.26 no.3
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    • pp.204-222
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    • 1991
  • The annual cycles of plant major nutrients and dissolved oxygen in a nutrients-rich semi-enclosed coastal inlet, chinhae Bay, of the southern coast of the Korean Peninsula are first presented. The water column of the bay is stratified during summer (April-late September) and well0mixed during winter (October-March). During the summer stratification period, dissolved oxygen contents exceed 400uM in the surface but diminish to less than 50uM in the near bottom waters, which often results in an anoxic environment in the inner part of Chinhae Bay. After the breakdown of the stratification in October, dissolved oxygen concentration remains undersaturated until February. The evidence of allochthonous input of N-nutrients throughout the year is readily seen in the water column: however. crude budget calculations show that the nutrients are efficiently utilized within the bay ecosystem, and that export of the nutrients from the bay to the shelf must be negligible. There is no sign of the enrichment of the nutrients in the water column. The eutrophication phenomenon sensu stricto is not observed in chinhae Bay. Using the standing stock of dissolved oxygen and estimation of the oxygen fluxes across the air-sea boundary, a benthic oxygen respiration rate during winter is estimated conservatively at 21-24 mmol Cm/SUP -2/d/SUP -1/. this oxygen respiration rate accounts for about 20% of the total phytoplankton production in winter.

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Identification of Alga-lytic Bacterium AK-07 and Its Enzyme Activities Associated with Degradability of Cyanobacterium Anabaena cylindrica (Anabaena cylindrica 분해세균 AK-07의 동정과 분해 관련 효소활성 조사)

  • Kim, Jeong-Dong;Han, Myung-Soo
    • Korean Journal of Ecology and Environment
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    • v.36 no.2 s.103
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    • pp.108-116
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    • 2003
  • To investigate bacteria with algal Iytic activities against Anabaena cylindrica when water blooming occurs and to study enzyme profiles of alga-Iytic bacteria, various bacterial strains were isolated from surface waters and sediments in eutrophic lakes or reservoirs in Korea. Abacterial strain AK-07 was characterized and identified as Acinetobacter johnsonii based on its16S rDNA base sequence. When AK-07 was co-cultivated with A. cylindrica, bacterial cells propagated to $8\;{\times}\;10^8$ cfu $ml^{-1}$ and Iyses algal cells. However, culture filtrates of AK-07 did not exhibit algal Iytic activities. That suggesting the enzymes on the surfaces of the bacterium might be effective algal Iytic agents to cause Iyses of cells. Acinetobacter johnsonii AK-07 exhibited high degradation activities against A. cylindrica, and formed alginase, caseinase, lipase, fucodian hydrolase, and laminarinase. Moreover, glycosidases for example ${\beta}$-galatosidase, ${\beta}$-glucosidase, ${\beta}$-glucosaminidase, and ${\beta}$-xylosidase, which hydrolyzed ${\beta}$-0-glycosidic bonds, were found in cell-free extracts of A. johnsonii AK-07. Other glycosidase such as ${\alpha}$-galctosidases, ${\alpha}$-N-Ac-galctosidases, ${\alpha}$-mannosidases, and ${\alpha}$- L-fuco-sidases, which cleavage ${\alpha}$-0-glycosidic bondsare not detected. In the results, enzyme systemsof A. johnsonii AK-07 were very complex to do-grade cell walls of cyanobacteria. The polysaccharides or peptidoglycans of A. cylindrica maybe hydrolyzed and metabolized to a range of easily utilizable monosaccharides or other low molecular weight organic substances by strain AK-07 of A. johnsonii.

Algal Growth Potential Test (AGPT) in the Stream- Reservoir System of the Pyeongtaek Reservoir Watershed, Korea (평택호와 유역 하천에서 조류생장잠재력측정)

  • Hwang, Soon-Jin;Shin, Jae-Ki
    • Korean Journal of Ecology and Environment
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    • v.36 no.2 s.103
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    • pp.172-180
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    • 2003
  • For a biological assessment of Pyeongtaek Reservoir and its major influent streams, an algal growth potential test (AGPT) was conducted with the blue-green algae Microcystis aeruginosa in March, June, September and December, 2000. The range and average value of AGPT were from 0 to 463 mg dw/l and 90 mg dw/l, respectively. For the influent streams in particular, the average of AGPT was the in the Hwangguchi Stream (343 mg dw/l). It decreased to 158, 66, 29, 21, and 21 mg dw/l in the Sojong Stream, Songhwan Stream, Osan Stream, Chinwi Stream, and Ansong Stream, respectively. The AGPT values in the reservoir ranged from 0 to 138 mg dw/1(mean 54 mg dw/1) with a tendency to increase in the upstream, which was close to the influent streams. In general, the AGPT values decreased further in the downstream. Immediately after the abrupt increase in influent discharge in summer, the AGPT value in the downstream almost doubled due to the proliferation of blue-green algae. The water quality of Pyeongtaek Reservoir and its influent streams further deteriorated during the drought period. Similarly, the AGPT value was the highest during this period. The AGPT values showed the closest correlation with the content of P (r = 0.999, p<0,001). Thus, it could be concluded that the content of P is highly effective in the growth of algae. In the Pyeongtaek Reservoir Watershed, the AGPT values varied in space and time. It was also closely related to the nutrient content of influent streams. The AGPT values revealed that the water quality state was hypertrophic (> 20 mg dw/1). Thus, control of the aquatic environment is essential. AGPT is very useful in evaluating the fertility and pollution state of the water as well as determining the nutrients that limit the growth of algae.

Temporal Changes of Limiting Nutrients and Phytoplankton Growth Rate in Lake Paldang (팔당호 식물플랑크톤의 제한영양염과 성장률의 경시적 변화)

  • Choi, Kwang-Hyun;Kim, Ho-Sub;Han, Myung-Soo;Hwang, Soon-Jin
    • Korean Journal of Ecology and Environment
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    • v.36 no.2 s.103
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    • pp.139-149
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    • 2003
  • This study was conducted to determine limiting nutrients and the physiological characteristics of phytoplankton in response of nutrients in Lake Paldang from March 2002 to October 2002. A field research was conducted along with laboratory batch culture experiment to find the limiting nutrients and the growth kinetics. According the results of Chl. a TP relationship, TN/TP ratio, and nutrient addition bioassay, phosphorus appeared to be a major limiting nutrient in Lake Paldang and thus the lake productivity was greatly influenced by it. P limitation for the phytoplankton of Lake Paldang varied with season, and the possibility of limitation by nitrogen and silica also occurred. The degree of P limitation was greatest during spring when the concentration of dissolved phosphorus is relatively much lower than summer and autumn. The maximum growth rate (${\mu}_{max}$) and half saturation concentration ($K_u$) of Lake Paldang phytoplankton ranged from 0.8${\sim}$1.1$day^1$ and from 0.1${\sim}$O.8${\mu}M$, respectively. $K_u$ was highest during May ($0.8{\mu}M$) and the lowest during September ($0.1{\mu}M$). Such result may be induced by the phytoplankton cell quota that showed the lowest concentration ($0.13{\mu}gP/{\mu}gChl.$ a) during May. The growth kinetics showed that phytoplankton growth in Lake Paldang was faster during summer and autumn than spring, suggesting that the Potential of algal bloom is high after the summer monsoon season.

Analysis of the Epilithic Diatom Community and Comparison of Water Quality in the Kumho River (금호강의 부착규조 군집분석과 수질 변화비교)

  • Choi, Jaesin;Chae, Hyunsik;Kim, Han-soon
    • Korean Journal of Ecology and Environment
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    • v.48 no.2
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    • pp.115-121
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    • 2015
  • In order to assess the water quality of Kumho river using Diatom Assemblage Index to organic water pollution (DAIpo) and to campare from the previous water quality, 5 sites in Kumho river were selected and assessed total of 6 times, every April and September from April 2010 to September 2012. As a result, 116 taxa were found in 2 Order, 3 Suborder, 7 Families, 26 Genera, 103 species and 13 varieties. Saprophilous species of 10 dominant species including Achnanthes minutissima, were increased as going to downstream sites. Correlation coefficients (r) between epilithic diatom communities and physicochemical factors were from - 0.62 to 0.71. Correlation coefficients (r) between TN and diatom indices (DAIpo, TDI) were 0.57 and 0.65, respectively. Therefore, epilithic diatom communities were greatly influenced by TN. The Correlation between DAIpo and TDI measured to be high in correlation coefficient (r=0.62) from the result of correlation analysis. Mean of DAIpo values ranged between 37.24~74.98 and decreased as going to downstream sites. Saprobic level was estimated as ${\beta}$-oligosaprobic at st. 1, ${\alpha}$-oligosaprobic at st. 2 and ${\beta}$-mesosaprobic at st. 3. But st. 4 and 5 which were ${\alpha}$-mesosaprobic and polysaprobic in the previous results, were improved as ${\beta}$-mesosaprobic. The RPId, general assessment of the water quality using DAIpo, was 52.27, which means the water quality of Kumho river was middle level.

Comparison of Carbonaceous Sediment Oxygen Demand in Lake Paldang and Lake Chungju (팔당호와 충주호 퇴적물의 탄소성 산소요구량 비교)

  • Shin, Yu-Na;Park, Hae-Kyung;Lee, Sang-Won;Kong, Dong-Soo
    • Korean Journal of Ecology and Environment
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    • v.40 no.3
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    • pp.439-448
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    • 2007
  • The purpose of this study was to investigate the seasonal variations of sediment oxygen demand (SOD) in Lake Paldang and Lake Chungju of the Han River system and to suggest SOD values as parameters for the water quality prediction models of two lakes. SOD was measured at laboratory using sediment collected at 2 sites in Lake Paldang from June to November and at 4 sites in Lake Chungju from May to November in 2005, respectively. It was found from the laboratory test that the SOD in Lake Paldang ranged from 337.8 to 881.0 mg $O_2m^{-2}d^{-1}$ and in Lake Chungju ranged from 143.0 to 969.1 mg $O_2m^{-2}d^{-1}$. The SOD of Lake Paldang showed similar variations to the content of organic matter of sediment. The SOD of Lake Chungju was positively correlated with temperature (r=0.78, p<0.01), $PO_4-P(r=0.79,\;p<0.01)$, TP (r=0.55, p<0.05), DTP (r=0.55, p<0.05), $NO_3-N$ (r=(0.72, p<0.01) of hypolimnetic water. These results indicate that the SOD of Lake Paldang was affected by the content and origin of organic matter of sediment and the SOD of Lake Chungju was closely correlated with physical and chemical factors.

Size-structure and Primary Productivity of Phytoplankton from Major Lakes in Sumjin and Yeongsan Watershed (섬진강.영산강 수계 주요 호소의 식물플랑크톤 크기구조 및 일차생산력)

  • Yi, Hyang-Hwa;Shin, Yong-Sik;Yang, Sung-Ryull;Chang, Nam-Ik;Kim, Dong-Ho
    • Korean Journal of Ecology and Environment
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    • v.40 no.3
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    • pp.419-430
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    • 2007
  • Physiochemical factors, phytoplankton biomass (Chl ${\alpha}$) and primary productivity were investigated seasonally in the three lakes of Dongbok, Juam, and Yeongsan during April 2004${\sim}$March 2006. Microphytoplankton dominated (>60%) in Dongbok lake, and phytoplankton biomass was high in the upper area, especially during April 2004, whereas they were high in the lower area during June 2004. In Juam lake, the high phytoplankton biomass in April 2004 was contributed by nanophytoplankton. In Yeongsan lake, chlorophyll a was high in August with high contribution of nanophytoplankton. Primary production was highest in Dongbok lake, and then followed by Yeongsan and Juam lakes. Regression analysis in Dongbok take showed that Chl ${\alpha}$ and primary production had close relations with secchi depth. In Juam lake, phosphate were correlated with the Chl ${\alpha}$, while temperature and TN was correlated with primary production in the lower area. In Yeongsan lake, Chl ${\alpha}$ have positively correlation with TN/TP. Primary production in the upper have high relationship with secchi depth, however, in the lower have high relationship with turbidity. Linear regression analysis showed that nutrients of nitrogen and phosphorus should be reduced for the protections in Juam and Dongbok lakes. We suggested that suspended solids and phytoplankton growth related to turbidity are needed to manage in Yeongsan lake.

Application Testing and Comparative Effectiveness of Green-tide Mitigation Technique in the Lower Part (Chusori) of the So-ok Stream (Daecheong Reservoir), Korea (소옥천 하류(추소리)에서 녹조현상 경감기술의 현장 시험 적용 및 효과 비교)

  • Shin, Jae-Ki;Kim, Youngsung;Noh, Joonwoo;Kim, Jong-Myung;Hwang, Soon-Jin
    • Korean Journal of Ecology and Environment
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    • v.49 no.4
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    • pp.258-270
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    • 2016
  • This study was conducted to test the green-tide mitigation technique in the lower part of the Sook Stream (Chusori) of Daecheong Reservoir from June 27 to August 24, 2014. And the effects were compared with weekly monitoring result of the watching station of the algae alert system (AAS) as well as test beds reach. The green-tide in a test bed was begun from the upstream, and it was gradually transferred and spread toward the downstream by the hydrological factors. The total amount of algae removed by algae removal device during the test period was 33,920 kg, and solids dewatered by natural gravity was 8,480 kg. Also chlorophyll-a content was 2.83 kg, the number of blue-green algae cells was equivalent to $78.6{\times}10^{14}$ cells. Compared with the results of the watching station of AAS, the pre-concentrate removal work in the outbreak waters was able to suggest the possibility of green-tide mitigation. In addition, an effective management of the green-tide was required spatial and temporal occurrence information and practical device technology. Particularly, the optimal timing of algae removal in the river-reservoir hybrid system was recommended at times before the monsoon rainy season and reached the lowest water level.