• 제목/요약/키워드: Stream health assessment

검색결과 101건 처리시간 0.031초

수생태계 현황 조사 및 건강성 평가결과를 활용한 수생태계 훼손원인 진단체계 구축 (Establishing Diagnosis Systems for Impaired Stream Ecosystem using Stream/River Ecosystem Survey and Health Assessment)

  • 이종원;이상우;황순진;장민호;원두희;안경진;박혜진;이정아
    • 생태와환경
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    • 제53권1호
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    • pp.1-10
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    • 2020
  • 본 연구는 훼손된 하천 수생태계의 훼손원인을 식별하고 그 전이 과정을 규명하기 위해 수생태계 훼손원인 진단체계를 구축하고 정책적 활용 가능성을 보고자 하였다. 수생태계 현황 조사 및 건강성 평가결과는 하천의 훼손에 대한 전반적인 상황을 알 수 있어 하천 복원 및 관리의 판단 근거로 사용된다. 그러나 하천이 훼손된 원인이나 훼손이 발생하게 된 전이 과정을 고려하지 못한다는 한계를 가진다. 따라서 본 연구에서는 과학적이고 체계적인 진단체계를 제안하여 훼손원인과 그 전이 과정을 규명하였다. 미국, 호주, 유럽의 사례를 분석하여 우리나라에 맞는 진단체계를 제안하였다. 총 8단계로 구성되며, 기초자료 조사, 하천 수생태계 훼손 판단, 훼손 구간 설정, 훼손 유형화 및 잠재적 훼손원인 도출, 본 조사, 주훼손원인 진단 및 최적 훼손 모델 도출, 종합분석 및 하천 복원방안으로 이루어져 있다. 이러한 진단체계는 하천 생태계의 복잡하고 다양한 특성을 고려하여 훼손원인을 파악할 수 있으며 하천 복원 및 관리 방안을 제시하여 효율적인 의사결정을 지원할 수 있다.

물리적 서식지평가기법 및 어류 다변수 평가모델에 의거한 대전천의 생태학적 건강도 진단 (A Diagnosis of Ecological Health Using a Physical Habitat Assessment and Multimetric Fish Model in Daejeon Stream)

  • 김자현;안광국
    • 생태와환경
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    • 제38권3호통권113호
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    • pp.361-371
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    • 2005
  • 본 연구는 금강의 지천인 대전천에서 도심하천에서의 생태학적 건강성 평가를 위해 2004년 8월부터 2005년 4월까지 어류를 이용한 생물학적 건강도지수 (IBI), 대전천의 수질 모니터링 자료 및 물리적 서식지 평가 지수 (QHEI)를 비교하여 총체적 하천생태계 건강도를 진단하였다. 상기 변수의 시공간적인 분석을 위해 대전천의 상류부에서 하류까지 4개의 지점을 선정하였다. 대전천의 생물학적 건강도 지수산정 및 적용을 위해 하천 건강도 평가모델(SHA model)을 개발하였고, 건강도 평가모델은 안 등 (2003)에 의해 국내 환경에 맞게 적용된 IBI (Karr, 1981: Barbour et al., 1999)모델을 이용하였다. 대전천의 이화학적 수질자료 분석에 따르면, 1995년부터 2004년까지 10년 동안 화학적 산소요구량 (COD), 생물학적 산소요구량 (BOD), 총질소 (TN), 총인 (TP)은 1.6 ${\sim}$ 5.3배까지 감소하였고, 상류부터 하류까지 4배 이상의 공간적인 수질 차이를 보였다. 생물학적 건강도지수를 나타내는 SHA모델 값은 평균 23였고, 지점에 따라 20 ${\sim}$ 26까지 변이를 보여 건강도는 ‘보통(Fair)-악화' 상태 (poor)로 나타났다. 서식지 건강도를 나타내는 물리적 서식지 평가지수는 상류부터 하류까지 39(악화상태) ${\sim}$ 124(양호상태)의 범위로 상류역에 위치한 지점 1을 제외하고는 나머지 3개 지점에서 모두 낮은 값을 보였다. US EPA (1993)의 기준에 의거할 때, 생물학적 건강도는 TN, TP, BOD 및 COD 값이 최고치를 보인 지점 4에서 ’악화상태‘로 나타났으며, 화학적 수질 및 서식지 건강도가 타 조사지점들보다 높은 최상류의 지점 1에서 생물학적 건강도는 양호한 것으로 나타났다. 또한 민감종의 상대빈도는 수질과 직접적인 함수관계에 있었으며, 이런 양상은 내성종의 구성비에서도 나타났다. 이 같은 결과는 어류를 이용한 생물학적 건강도는 이화학적 수질 및 물리적서식지 특성을 잘 반영하는 것으로 나타났다.

우리나라 주요하천 수계에서 다변수모델을 이용한 생태학적 수환경 평가 (Ecological Assessments of Aquatic Environment using Multi-metric Model in Major Nationwide Stream Watersheds)

  • 안광국;이재연;배대열;김자현;황순진;원두희;이재관;김창수
    • 한국물환경학회지
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    • 제22권5호
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    • pp.796-804
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    • 2006
  • The objective of this research was to develop ecological multi-metric models using natural fish assemblages for a diagnosis of current stream health condition, and apply the model to nationwide lotic ecosystems of the Geum River, the Youngsan River, and the Sumjin River. The ecological stream health model was based on the index of biological integrity (IBI), which was originally developed in North American streams by Karr (1981), and the Rapid Bioassessment Protocol (RBP), which was scientifically established by the US EPA (1999). The metric numbers and metric attributes were partially changed for the regional applications, so the scoring criteria was modified for the assessment. Overall, metric values, based on the IBI calculations, reflected conventional water quality characteristics, based on nutrient regime, and agreed with results of staticeco-toxicity tests. Some stations impaired in terms of stream health were identified by the IBI approach, and also major key stressors affecting the stream health were identified by additional evaluations of physical habitats. Our preliminary results suggested that biological integrity in stream ecosystems was largely disturbed by habitat degradation as well as chemical pollutions. This new approach would be used as a key tool for ecological restorations and species conservations in the degraded aquatic ecosystems in Korea and applied for elucidating major causes of ecological disturbances. Ultimately, this approach provides us an effective management strategy of stream ecosystems through establishments of ecological networks in various watersheds.

청계천 복원구간 내 분변오염도 평가와 미생물 군집 연구 (Assessment of Fecal Pollution and Bacterial Community Structure in Restored Section of Cheonggyecheon Stream)

  • 박영빈;이희태;김세윤;고광표
    • 한국물환경학회지
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    • 제25권1호
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    • pp.76-83
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    • 2009
  • In 2005, the 5.84-Km length of Cheonggyecheon stream, previously covered with concrete road, was uncovered in the middle of Seoul, Korea. We investigated microbial water quality in various sites in Cheonggyecheon stream. We took water samples on three different days. The sampling sites included inflow water from upper stream (Mojeongyo), midstream (Ogansugyo), and downstream (Muhakgyo). Fecal pollution indicator microorganisms were measured by both IDEXX $Colilert^{(R)}$ and $Enterolert^{(R)}$. Microbial community from these sampling sites was also characterized based on 16S rRNA gene sequences. The average concentrations of total coliform are 5 CFU/100 mL, 1474 CFU/100 mL, and 1776 CFU/100 mL at Mojeongyo, Ogansugyo, and Muhakgyo, respectively. The average concentrations of fecal coliform were 28 CFU/100 mL, 47 CFU/100 mL in Ogansugyo, and Muhakgyo, respectively. The concentrations of other fecal indicator microorganisms including E. coli and Enterococcus sp. increased in downstream. When we characterized the microbial community, unique microbial community were discovered at different sampling sites. This study suggests that Cheonggyechoen stream is likely affected by non-point fecal sources and has unique microbial environment as the river flows downstream.

Assessing Stream Vegetation Dynamics and Revetment Impact Using Time-Series RGB UAV Images and ResNeXt101 CNNs

  • Seung-Hwan Go;Kyeong-Soo Jeong;Jong-Hwa Park
    • 대한원격탐사학회지
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    • 제40권1호
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    • pp.9-18
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    • 2024
  • Small streams, despite their rich ecosystems, face challenges in vegetation assessment due to the limitations of traditional, time-consuming methods. This study presents a groundbreaking approach, combining unmanned aerial vehicles(UAVs), convolutional neural networks(CNNs), and the vegetation differential vegetation index (VDVI), to revolutionize both assessment and management of stream vegetation. Focusing on Idong Stream in South Korea (2.7 km long, 2.34 km2 basin area)with eight diverse revetment methods, we leveraged high-resolution RGB images captured by UAVs across five dates (July-December). These images trained a ResNeXt101 CNN model, achieving an impressive 89% accuracy in classifying vegetation cover(soil,water, and vegetation). This enabled detailed spatial and temporal analysis of vegetation distribution. Further, VDVI calculations on classified vegetation areas allowed assessment of vegetation vitality. Our key findings showcase the power of this approach:(a) TheCNN model generated highly accurate cover maps, facilitating precise monitoring of vegetation changes overtime and space. (b) August displayed the highest average VDVI(0.24), indicating peak vegetation growth crucial for stabilizing streambanks and resisting flow. (c) Different revetment methods impacted vegetation vitality. Fieldstone sections exhibited initial high vitality followed by decline due to leaf browning. Block-type sections and the control group showed a gradual decline after peak growth. Interestingly, the "H environment block" exhibited minimal change, suggesting potential benefits for specific ecological functions.(d) Despite initial differences, all sections converged in vegetation distribution trends after 15 years due to the influence of surrounding vegetation. This study demonstrates the immense potential of UAV-based remote sensing and CNNs for revolutionizing small-stream vegetation assessment and management. By providing high-resolution, temporally detailed data, this approach offers distinct advantages over traditional methods, ultimately benefiting both the environment and surrounding communities through informed decision-making for improved stream health and ecological conservation.

저서성 대형무척추동물을 이용한 한국오수생물지수의 개발과 생물학적 하천환경평가 적용 (Development of Konan Saprobic Index using Benthic Macroinvertebrates and Its Application to Biological Stream Environment Assessment)

  • 원두희;전영철;권순직;황순진;안광국;이재관
    • 한국물환경학회지
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    • 제22권5호
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    • pp.768-783
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    • 2006
  • Biological stream environment assessment has been an essential trend of aquatic ecosystems among advanced countries, because the chemical water quality assessment has limitations that only represent temporal water environmental status. Benthic macroinvertebrates are the most popular bioindicator group useful to biological water quality assessment for a long time. In addition, a number of indices using benthic macroinvertebrates have recently been developed not only for water quality assessment but also for ecological health assessment. In this paper Korean Saprobic Index (KSI) based on Zelinka-Marvan's saprobic valency concept is developed by applying DIN 38410 in Germany. The KSI value was widely applicable to most Korean streams with the exception of sand-based large streams, for example main stream of Nakdong River. But as a result of non-linear regression analysis the correlation between KSI and $BOD_5$ concentration was high and KSI reflected water quality alteration for mid and long-term period. In spite of applicability of KSI, it should be supplemented and developed to make it strong by accumulating field data as well as to manage integrated water environment in general through continuous biomonitoring.

자운천 유역 내 환경특성과 탁류발생의 관계성에 대한 기초연구 (A Basic Study on the Relationship between the Environmental Characteristics and Turbidity Generation in Jaun Watershed)

  • 함광준;배선학;김준현;박성빈;김성석
    • 환경영향평가
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    • 제15권4호
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    • pp.259-270
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    • 2006
  • The purpose of this study is to understand the relation between the land use status in watersheds and stream turbidity. Major water quality components (flow rate, turbidity, SS, BOD, TN, TP, etc.) of two streams (Jaun and Naerin) and the land use status for each correspondent watershed have been analyzed through the field sampling and the geographical overlaying of land use and watershed map. The detailed results of this study showed that; turbidity has been increased rapidly from 1.9 to 13.0 NTU for Jaun Stream, 0.4 to 0.7 NTU for Naerin Stream, due to the increased flow rate during the period of June. The agricultural area of the Jaun watershed was $13.5km^2$ (10.1% of the overall watershed), comparing to $2.0km^2$(1.4%) of upper watershed of Naerin stream. The forest was widely distributed along the 30m buffering zone from the center of Naerin stream, which comprised 64.14% of the whole watershed area. But in case of the Jaun, the ratio of forest was 17.84%, while the ratio of farming field was 30.33%.

Fish Exposure and In Situ Field Pilot Tests in the Abandoned Mine Drainage for a Stream Restoration

  • Bae, Dae-Yeul;Kim, Ju-Yong;Kim, Kyoung-Woong;An, Kwang-Guk
    • 생태와환경
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    • 제40권4호
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    • pp.560-568
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    • 2007
  • The objectives of this study were to analyze ecological effects on effluents from the Sagok Stream (Chonnam province) as an abandoned mine drainage through necropsy-based health assessments and fish exposure tests, and to conduct In situ field pilot tests for restoration of stream water. Also, we analyzed water quality including general parameters and heavy metals. The tests were performed three times on April 2005, April 2006, and April 2007. Also, we constructed a reactor facility in the outflowing point of the abandoned mine for the remediation of AMD wastewater. In lab test, death rates in all three treatments were ${\geq}50%$ in the experiments. Necropsybased fish tissue assessments using the Health Assessment Index (HAI), indicated that the most frequently damaged tissue was liver (average: 20.8). Values of Health Assessment Index were lower in the control than any other treatments of T1, T2, and T3 and three treatments showed a distinct toxicity impacts by the AMD. In situ lethal test, concentration of Fe, Al and Zn decreased particularly by 85%, 99% and 94%, respectively through the disposal facility. Values of pH, ranged from 3.1 to 7.0, increased by 2.3 fold (mean=5.1) along with the reduction of metal contents. All fishes in P1 cage died 100% on 3 days later after the experimental setting, while all fishes in the P6 died 100% on 9 days later. Overall, these results evidently provide a key methodology for pilot test using the disposal facility and also clarify the toxicity of AMD once again, so this approach used in the pilot facilities here may reduce the acidic and toxic effects in the abandoned mining drainage.

무척추동물 생체지표와 화학잔류량 분석을 통한 경북 안동지역내 하천들의 환경오염 평가 (Assessment of Environmental Pollution for Streams of Andong City in Gyeongbuk Province Using Invertebrate Biomarker and Chemical Residual Analysis)

  • 유건상;최종하;김용균;조성환;이화성
    • 한국환경과학회지
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    • 제14권6호
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    • pp.583-596
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    • 2005
  • Samples of water, soil, and sediment were taken from 10 streams of Andong city in Gyeongbuk province in October 2004. To assess the degree of environmental pollution for each stream site, the chemical analyses of pollutants such as T-N, T-P, COD, heavy metal, organophosphorous and organochlorine pesticides, and dioxin-like PCB congeners were implemented using the standard process tests or the U. S. EPA methods. In addition, biological assessment using insect immune biomarkers was conducted on the same environmental samples to complement the chemical assessment. Except Waya stream (T-N; 2.91 mg/L, T-P; 0.16 mg/L, COD; 14.0 mg/L) with above the environmental quality standards, the T-P and COD concentrations of 9 sites are relatively low. The contents of Pb and Cd in samples taken from each stream were much lower than environmental quality standards. However, in comparison with soil samples of other streams, several times higher concentrations of Pb and Cd were found in locations at Mi, Gilan, Yeonha, and Waya stream sites. Dementon-S-methyl, diazinon, parathion, and phenthoate compounds among organophosphorous pesticides were detected as concentrations of ppb levels, respectively, from soil samples collected in the vicinity of Gilan, Mi, Norim, and Waya stream. On the other hand, 16 organochlorine pesticides and 12 dioxin-like PCB congeners selected in this study were not found in all samples. In particular, considering significant disrupting effects of Waya stream's samples on insect immune capacity, this stream seems to be contaminated with investigated and/or univestigated pollutants in this study.