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안광국,An, Kwang-Guk 한국하천호수학회 2000 생태와 환경 Vol.33 No.4
본 연구는 1993${\sim}$1994년 대청호 17개 조사지점에서 점오염원 및 계절적 유입수에 대한 무기질소원의 다변적 동태에 대하여 평가하였다. 연구기간 동안 총질소(TN)는 평균 1.53 mg/L으로, $0.70{\sim}2.56\;mg/L$ 범위에 있었다. 용존 무기질소(DIN)는 계절 및 조사지점에 관계없이 총질소의 90%이상을 차지하여 질소가 풍부한 부영양-과영양 상태의 호수임이 확인되었다. 용존 무기질소의 $67{\sim}94%$는 질산성-질소인 반면, 암모니아성-질소는 용존 무기질소의 5%이하로 구성되었다. 1993년 장마동안 질산성-질소는 빗물과 호수물의 혼합의 결과로서 상류역에서 희석된 반면, 암모니아성-질소는 장마 전에 비해 100%이상 증가를 보였다. 암모니아성-질소는 강우량과 정 상관관계(r=0.85; p<0.001)를 보였고, 수 체류시간(r = -0.90; p<0.001) 및 전기전도도 (r = -0.78, p<0.001)와는 역 상관관계를 보였다. 이런 결과에 따르면, 암모니아성-질소는 장마기에 호수 외부로부터 유입되었음을 제시한다. 연구기간 2년 모두 평균 총질소는 호수내 상류 및 하류에서보다 가두리 양식장 및 폐수 처리장이 위치한 중류역에서 높았다. 중류역에서 이런 특성은 유입량이 적은 1994년하절기 동안 점 오염원에서 축적된 오염부하 증가의 결과로서 가장 심화되었다. 본 인공호에서 총질소 분포는 호수내 상${\cdot}$하류역 사이에 큰 차이를 보이지 않았고, 유입량 보다는 점오염원에 의해 직접적으로 결정되는 것으로 사료된다. This paper evaluated the influence of point source and flow events on inorganic nitrogen fractions at 17 sites of Taechung Reservoir during 1993${\sim}$1994. Total nitrogen (TN) averaged 1.53 mg/L during the study and ranged between 0.70 and 2.56 mg/L. Dissolved inorganic nitrogen(DIN) accounted for >90% of TN regardless of season and location, indicating a nitrogen-rich system showing eutrophic${\sim}$hypereutrophic conditions. Some 67${\sim}$94% of DIN was NO$_{3}$-N, whereas mean level of NH$_{4}$-N was less than 5% of DIN. During monsoon 1993, dilution of NO$_{3}$-N was evident in the headwaters as a result of mixing of lake water with rain water, while NH$_{4}$-N increased>100% compared to the premonsoon. Values of NH$_{4}$-N had a positive correlation with rainfall (r=0.85; p<0.001) and negative correlations with theoretical water residence time(r=-0.90; p<0.001) and conductivity(r=-0.78, p<0.001), respectively. These outcomes suggest that NH$_{4}$-N came from external input from the watershed during the monsoon. In both years, mean TN was greater in the mid-lake sites than any other sites. A great amount of TN in the mid-lake was most pronounced in monsoon 1994 because of an accumulated influence of the point sources during low inflow. Overall data suggest that concentrations of TN in this system did not show large differences along the longitudinal gradients and its distributions is likely determined by point-sources rather than inflow regime.
대형 인공댐호이 효율적 수질 감시를 위한 적정 조사 빈도 설정 연구
안광국,홍욱희,최신석 ( Kwang Guk An,Wuk Hee Hong,Shin Suk Choi ) 한국하천호수학회 1995 생태와 환경 Vol.28 No.3
In water quality monitoring practices, frequent water sampling would promise data accuracy but may not be so cost effective. However, less frequent sampling would fail to provide accurate data which represents the exact quality of the water body. Hence, determining appropriate sampling frequencies will be enormously important in terms of data accuracy and cost saving, particularly when the sampled water bodies are of great importance as major water resources . In this study, such determination of sampling frequencies was carried out for the Lake Taechung. Total 13 water quality parameters sampled and analyzed every 2 to 3 days for a year were compared with the data sampled less frequently; once every 7 to 10 days, twice a month, and once a month. While general water quality parameters such as dissolved oxygen, pH, and turbidity were dynamically fluctuated throughout the year, the parameters related to the trophic state such as Secchi depths, total suspended solids, nutrients, and chlorophyll-a showed more distinctive fluctuations during the algal growth season. The effects of summer monsoon were remarkable in most water quality parameters. Based on these findings, it was suggested that during the algal growth season, June to September, at least weekly samplings should be carried out for VSS, total nitrogen, total phosphorus and chlorophyll-a. Nitrate- and ammonia-N, dissolved phosphorus, NVSS and other parameters may be measured twice a month during this season. During non-algal growth seasons, from October to May of the next year, bimonthly samplings were suggested for such parameters as total nitrogen, total phosphorus, and chlorophyll-a Monthly samplings would suffice for all other parameters.
분자수준의 바이어마커로 부터 군집수준의 바이오인디케이터의 다변수체계를 이용한 통합적 하천 생태 건강도평가 기법
안광국 ( Kwang Guk An ) 한국환경생태학회 2016 한국환경생태학회 학술대회지 Vol.2016 No.1
The integrative approach for ecological stream health assessments was applied to a stream ecosystem using a multi-level organization from molecular level of biomarkers to community levels of bioindicators along with analysis of physical and chemical stressors. Water quality parameters of BOD, COD, TN, and TP etc were measured and physical habitat health, based on Qualitative habitat Evaluation Index (QHEI) model were analyzed. Also, Ecological stream health model, based on index of biological integrity (IBI) by fish assemblage, was developed for regional assessments and then applied to the stream. Six metric attributes of original 11 metrics were modified for a development of the model. Biomarkers of comet assay, blood chemistry, physiological parameters, and bioindicators such as organismal-, population-, community- level parameters were evaluated in this study along with eco-toxicity tests. Some stations impaired (stressed) in terms of stream health were identified by the IBI approach and also major key stressors affecting the health were identified using BOD, TN, TP, physical habitat evaluation, and eco-toxicity tests. The assessment approach of integrative ecological stream health would be used as a key tool for ecological restorations and species conservations in the degraded stream ecosystems 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. This research was supported by Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education (No. 2013R1A1A4A01012939).
연구논문 : 주거단지 건설이 하천에 미치는 생태영향평가
안광국 ( Kwang Guk An ),한정호 ( Jeong Ho Han ),이재훈 ( Jae Hoon Lee ) 한국환경영향평가학회 2012 환경영향평가 Vol.21 No.5
The integrative ecological approaches of chemical assessments, physical habitat modelling, and multi-metric biological health modelling were applied to Gwanpyeong Stream within Gap- Stream watersheds to evaluate environmental impacts on the constructions of residential and commercial complex. For the analysis, the surveys conducted from 45 sites of reference streams within the Gap-Stream watershed and 3 regular sites during 2009 - 2010. Physical habitat health, based on the habitat model of Qualitative Habitat Evaluation Index(QHEI) declined from the headwaters(good - fair condition) to the downstream(poor condition). Chemical water quality, based turbidity and electric conductivity(EC), was degraded toward to the downstream, and especially showed abrupt increases, compared to the values of control streams(CS). Also, concentrations of chlorophyll-a in the downstreams were greater compared to the control stream(CS), indicating an eutrophication. Biological health conditions, based on the Index of Biological Integrity(IBI) using fish assemblages, averaged 19.3 which is judged as a fair condition by the biological criteria of the Ministry of Environment, Korea. The comparisons of model metric values in sensitive species and riffle-benthic species on the Maximum Species Richness Line(MSRL) of 45 reference streams indicated a massive disturbances in all sampling locations. Also, tolerance guild and trophic guild analyses suggest that dominances of tolerant species and omnivores were evident, indicating a biological degradation by habitat disturbances and organic matter pollutions. There was no distinct longitudinal variations of IBI model values from the headwater to the downstream in spite of slight chemical and habitat health gradients among the sampling sites. Overall, integrative ecological health(IEH) scores, based on the chemical, physical, and biological parameters, were low compared to the 45 reference streams due to physical and chemical disturbances of massive constructions of the residential and commercial complex. This stream, thus showed a tendency of typical urban streams which are disturbed in the chemical water quality, habitat structures, and biological integrity. Effective stream management plans and restoration strategies are required in this urban stream for improving integrative stream health.