• Title/Summary/Keyword: Stream-water

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Dynamics of Organic Matter and Inorganic Nutrients in a Over-enriched Mountain Stream due to Anthropogenic Loading (생활하수가 유입된 산지하천(대천천)의 유기물 및 무기영양염의 동태)

  • Park, Jung-Im;Kim, Young-Kyun;Chung, Mi-Hee;Song, Mi-Young;Lee, Sang-Ho;Chon, Tae-Soo;Lee, Kun-Seop
    • Korean Journal of Environmental Biology
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    • v.24 no.3
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    • pp.230-239
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    • 2006
  • Nutrient over-enrichment as a consequence of anthropogenic loading leads to eutrophication, which has the detrimental effects on river and stream ecosystems. To examine dynamics of factors causing cultural eutrophication in a over-licked mountain stream due to anthropogenic loading, physicochemical parameters were measured from 5 stations in the upper Daecheon stream, Busan, from January 2002 to May 2003. The five study sites were located along the stream gradient. DC1 is upper most clean site, and DC5 is located at the lowest area. Wastewater was released into the stream from just upstream of DC2 site. Water column ammonium and phosphate concentrations were higher during winter than other seasons, while water column nitrate +nitrite concentration did not show clear seasonal variation. Water column ammonium, nitrate+nitrite and phosphate concentrations were lowest at DC1 and highest at DC2 in which waste water loading occurred. TOC and DOC, conductivity, turbidity, and BOD in the water column were also increased drastically at DC2, and then decreased at DC5. Sediment pore water phosphate concentrations during winter and spring were higher than those in summer and fall, while sediment pore water ammonium and nitrate +nitrite concentrations showed no seasonal trend. Sediment pore water ammonium and phosphate concentration were also increased at DC2 and slightly decreased at DC5, while sediment pore water nitrate+nitrite concentration was highest at DC5. Organic matter and inorganic nutrients at up-stream of Daechon stream significantly increased as a result of wastewater discharge, and the nutrient concentrations decreased at low-stream suggesting self-purification ability of the stream.

Studies on the flora in Sinchun Stream Side-bed (대구시 신천 고수부지의 식생 조사)

  • 박인환
    • Asian Journal of Turfgrass Science
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    • v.11 no.3
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    • pp.193-203
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    • 1997
  • This study was carried out to investigate the phytosociological method for analyzing vegetation composition, which would be one of the major keys of land use in Sinchun stream side-bed. The obtained results were as follows As the result of survey, following flora were observed. Most of plants composed of Graminea,Compositae, Leguminosae and Poligonaceae, 23, 17, 13 arid 9 species, respectively. In upper stream side-bed, E crus-galli var. caudata and Phragmites communis were well growed,which were effective for cleansing water. Otherwise both Polygonum species and Rumex were profused in Mid-stream side-bed and Down-stream side-bed, these plants were well growed in polluted stream. Key words: Phytosociological, Polluted stream, Sinchun stream side-bed, Taegu city.

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Characteristics on Stream Water Quality in the Northeastern Part of Puk'ansan National Park(IV) -With a Special Reference to the Physicochemical Characteristics in the Seasonal Variation- (북한산국립공원(北漢山國立公園) 북동사면(北東斜面) 일대(一帶) 계류수질(溪流水質) 특성(特性)(IV) -이화학적(理化學的) 특성(特性)의 계절별(季節別) 변화(變化)를 중심(中心)으로-)

  • Park, Jae Hyeon
    • Journal of Korean Society of Forest Science
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    • v.90 no.1
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    • pp.146-154
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    • 2001
  • This research was conducted to investigate the seasonal changes in physicochemical characteristics of stream water at the four points in the northeastern part of the Puk'ansan National Park from July of 1998 to November of 2000. The average pH of stream water was 6.6(6.53~6.74) and the dissolved oxygen was ranged from 11.0 to $11.3mg/{\ell}$, which indicated that the water quality could be categorized in the first class for the quality of river water quality standard. The average electrical conductivity of stream water was 106.8(52.3~154.0) ${\mu}S/cm$ and the electrical conductivities of downstream water were ranged from 139.4 to $154{\mu}S/cm$, which were about 1.7~3.0 times higher than those in upstream water that showed from 52.3 to $81.6{\mu}S/cm$. The amount of anion($Cl^-$, $NO{_3}^-$, $SO{_4}^{2-}$) which indicates the pollution index in downstream was higher than that in upstream, In addition, the seasonal impacts of pollution on stream water were higher in Autumn than in Spring or Summer.

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Assessment of Water Quality in the Miho Stream Using Multivariate Statistics (다변량 통계기법을 이용한 미호천 본류 수질특성 평가)

  • Yoon, Hyeyoung;Kim, Jeehyun;Chae, Minhee;Cho, Yoonhae;Cheon, Seuk
    • Journal of Environmental Impact Assessment
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    • v.28 no.4
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    • pp.373-386
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    • 2019
  • In The study, is to investigate the spatial characteristics of the Miho stream, which is the main tributary of the Geum River system, and to identify the main factors influencing the water quality using water quality analysis and multivariate analysis. The survey subjects were selected as 7 main sites in the Miho stream water system, From 2012 to 2017, 16 items including weather temperature and weather data were used for multivariate analysis. As a result of the water quality analysis, the average concentration of BOD and COD for 6 years was 3grade (normal) compared with the water quality environmental standard (river) of conditions. The concentrations of nitrogen and phosphorus were highest at th upstream site, then decreased and then increased again by the hydrogeological and geomorphological effect. Cluster analysis of spatial and water quality characteristics, it was evaluated as three clusters and the pollution sources is the greatest impact. As a result of principal component analysis and factor analysis on each cluster and mainstream, three to four major components were extracted. Main stream and the Cluster 1, Cluster 3 first principal factor included nitrogen and seasonal factors,first factor of Cluster 2 included nitrogen and water temperature. Nitrogen is the principal factor which affects water quality in Miho stream.

Statistical Analysis of the Spatio-temporal Water Quality Characteristics of the Nakdong River (낙동강수계 수질의 시·공간적 특성에 대한 통계학적 분석)

  • Seo, Mijin;Cho, Changdae;Im, Taehyo;Kim, Sanghun;Yoon, Hyunjeong;Kim, Yongseok;Kim, Gyeonghoon
    • Journal of Environmental Science International
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    • v.28 no.3
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    • pp.303-320
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    • 2019
  • Water quality is characterized by various complex factors. Therefore, a systematic understanding of water quality trends is required to carry out a proper evaluation. In this study, we analyzed the spatio-temporal water quality characteristics of the Nakdong River using five-year data from 2012 to 2016. Data was collected on the pH, DO, BOD, COD, SS, TN, TP, TOC, WT, EC, $NH_3-N$, $NO_3-N$, $PO_4-P$, Chl-a, rainfall, and total and fecal coliforms. A total of 38 water quality measurement stations, from Andong1 to Gupo, were considered. Statistical analyses including trend, cluster, and factor analyses were conducted to identify the dominant water quality components affecting the Nakdong River. The Nakdong River was spatially classified into three groups for up-stream (Andong1 to Sangju1), mid/up-stream (Donam to Dalseong), and mid/down-stream (Hwawonnaru to Gupo) data collection, and temporally into two groups for summer/fall (7~10), and the rest of the season (11~6) data. The water quality of the entire Nakdong River showed trends similar to the mid/down-stream section, which indicates the importance of water quality management in this section. Suspended solids, phosphorus, and coliform groups were established as important factors to be considered in the summer/fall season across the river, especially in the mid/down-stream section. Nitrogen and organic matter were identified as important factors to be considered in the rest of the season, especially in the mid/up-stream section. This study could help determine the water quality components that should be intensively monitored in the Nakdong River.

APPLICATION OF AQUATIC HABITAT IMPROVEMENT TECHNIQUES AT TA-CHIA RIVER IN TAIWAN

  • Tuan, Ching-Hao;Yeh, Chao-Hsien
    • Water Engineering Research
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    • v.6 no.4
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    • pp.161-168
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    • 2005
  • With characteristics of river continuum, stream ecosystems have diverse components and environments from upstream channel to estuarine area. Therefore, the habitat requirements and composition of conservative object should be well understood before applying any improvement measure. In this paper, the causes of stream habitat changes were first illustrated with the categories and principles of habitat restoration methods. The structural restoration techniques of fish habitat improvement utilized by the authors or one three-year research project starting at 1990 were then presented. Through the introductions on the project background, planning guidelines, structure design, and ecological evaluation, this paper tried to provide some effective examples of stream restoration practices that ecological expert was invited for cooperation and advising.

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Performance of Shi-hwa Constructed Wetland for the treatment of severely polluted stream water (시화호 인공습지를 이용한 오염된 하천의 수질 정화)

  • Lee, Kyung-Do;Kwun, Soon-Kuk
    • Proceedings of the Korean Society of Agricultural Engineers Conference
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    • 2003.10a
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    • pp.615-618
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    • 2003
  • A prototype of 76 ha Shi-hwa constructed wetland was constructed for the first time in Korea to purify severely polluted stream water. Hydrology, vegetation(macrophyte) and water quality for Banwol and Donghwa wetland built in Shi-hwa tidal reclaimed area were monitored to evaluate the performance of the wetlands. The overall efficiency for the treatment of polluted stream water using the wetlands showed no significant improvement. The monthly average removal rates on SS, BOD, TN and TP for Banwol and Donghwa wetlands showed 66.5% and 62.8%, 14.8 and 34.3%, 33.9 and 47.1% and 20.8 and 51.6%, respectively. It is considered that three major factors, ie. wide fluctuations in inflow rate, short hydraulic retention time and small open area compared with vegetated area could have a great influence on low system efficiency.

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Analysis of Operation Plan by Multipurpose Supply for Heightened Agricultural Reservoir (둑높임저수지 다중용수공급에 따른 운영 방안 분석)

  • Kim, Hae Do;Lee, Kwang Ya;Park, Jong Yoon;Han, Guk Heon;Lim, Heung Chang
    • KCID journal
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    • v.19 no.1
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    • pp.77-86
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    • 2012
  • The aim of this study was to analyze the operation plan for heightened agricultural reservoir, in terms of water supply to downstream paddy fields and instreams. Operation of agricultural reservoir before the heightened reservoir project is easy to manage because of its single purpose, which is irrigation water supply. However, after proceeding the heightened project, there is needed to be set the operation rule because of its multiple purpose, which is water for irrigation and supply to the stream. In this paper, propose the method of design the criteria of supply to the stream and operation rule curve for the heightened reservoir. According to simulation results by proposed operating rule for the Gumsa reservoir, the yearly amount of water supply to the stream can be 2,588 thousand $m^3$, 3 times of the heightened space (2,588 thousand $m^3$).

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유성지역 소유역에서 추적자(Cl)를 이용한 강우사상에 따른 지표수로부터 기저유출의 분리

  • Jo Seong-Hyeon;Ha Gyu-Cheol;Go Dong-Chan;Jo Min-Jo;Song Mu-Yeong
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2005.04a
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    • pp.352-358
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    • 2005
  • This study aims to separate hydrograph into baseflow and event water to calculate baseflow rate during a rainfall in small catchments, Yuseong, Daejeon, The hydrograph of stream during a period with no excess rainfall will decay. The discharge is composed entirely of groundwater contributions. During the period, the Cl concentration of the stream water can be regarded as being in equilibrium with that of the groundwater. Using Cl as a conservative tracer, two-component hydrograph separations were performed from end point of the period to next end point. The required data were obtained by monitoring of the surface water table, along with discharge rate of stream. Cl concentration of rainfall, surface water were measured and recorded. Hydrograph separation, a mixing model using chemical tracer is applied to chemical hydrograph separation technique. These results show that baseflow rates are 31.6% of rainfall in the catchments during study period.

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