In this study, non-point pollution sources in the Yeongsan river basin are analyzed; then, the priority regions (areas divided on a small scale) of management are selected for efficient water management of the Seungcheon and Jooksan reservoirs, which were constructed as one of the 4 major rivers restoration projects. The priority regions are decided by using the criteria of the excessive rate of target water quality, non-point pollution load per unit area, total TP load and down flow distance. The results of this study are as follows. The upper 10% of the priority regions for non-point pollution management includes YB15, YB05, YB10, YB24, YB14 and YB11 for the Seungcheon reservoir watershed, and YC24, YC25, YC30, YC34, YC22 and YC17 for the Jooksan reservoir watershed. However, a few regions in each of the Seungcheon and Jooksan reservoirs need to be selected in higher order, and the non-point pollution removal facilities in the regions need to be installed with respect to budget, urgent matter, and so on.
주암호는 전라남도와 광주광역시에 약 1,180,000톤/일의 생활용수와 공업용수를 공급하는 상수원이다. 상수원수계의 생활하수, 축산폐수, 숙박업소, 식당 등 점오염원과 주거지, 농경지, 산림지역에서 우수와 함께 유출되는 비점오염원으로부터 발생하는 오염부하량으로 이들 상수원의 수질은 점점 악화되어 3급수로 전락할 우려가 높아지고 있다. 이들 상수원의 수질관리에 있어 중요한 인자의 파악과 인자들간 상호작용의 이해를 용이하게 해주는 수계수질관리 부분생태계모형을 제시하였으며 지리정보체계를 응용하여 수계의 점오염원과 비점오염원을 데이터베이스화하는 방법, 오염부하량 산출방법, 점원 및 비점오염원의 공간분석, 상수원 보호구역으로부터 완충구역분석, 위성자료 분석을통한 상수원 수계 토지이용분석과 비점오염원 부하량산출 응용 방법등을 연구하였다 분석결과 주암호수계의 BOD 부하량은 주거지. 생활하수, 축산폐수, 경작지, 식당이 차지하는 비율이 높으며 총질소 부하량은 경작지, 산림, 생활하수, 추간폐수가 높으며 그리고 총인 부하량은 생활하수, 축산폐수, 경작지가 높은 것으로 나타났다. 점오염원인 생활하수, 축산폐수, 식당 뿐만 아니라 비점오염원인 경작지도 수질오염에 상당한 영향을 미치고 있다.
The purpose of this study was to propose an efficient management plan for purchased land considering the hydrological, watershed characteristics and ecological functions of the target land and surrounding area based on the result of monitoring the water quality improvement effect obtained by purchasing the land in the watershed area in the Geum river system. For this purpose, this study investigated through literature review, and examined ways to apply them to this research by deriving implications from a comprehensive analysis of previous research cases. After that, the components of assessment were derived to evaluate the ecological function of the purchase land, and the ecological function evaluation model for each land and area was proposed. In order to select purchase and restoration priorities of the land, this study analyzed the ecological status of the purchased land in main watersheds and tributaries using Arc GIS ver 10.1. Through this, a process to select restoration priorities was developed. And this study constructed the integrated management process with proposing a mid - to long - term plan by integrating the purchased land valuation and restoration priority selection process. Based on this process, this study suggested an effective management plan for purchased land through the integrated ecological management system of lands purchased. It can be used systematically in appraisal valuation, land purchase system, restoration project, and follow-up management of land purchase.
For the development of flow duration curves for the management of 41 Total Maximum Daily Load (TMDL) units of the Nakdong River basin, first, an equation for estimating daily flow rates as well as the level of correlation (correlation and determination coefficients) was extrapolated through regression analysis of discrete (Ministry of Environment) and continuous (Ministry of Land, Infrastructure and Transportation) measurement data. The equation derived from the analysis was used to estimate daily flow rates in order to develop flow duration curves for each TMDL unit. By using the equation, the annual flow duration curves and flow curves, for the entire period and for each TMDL unit of the basin, were developed to be demonstrated in this research. Standard flow rates (abundant-, ordinary-, low- and drought flows) for major flow duration periods were calculated based on the annual flow duration curves. Then, the flow rates, based on percentile ranks of exceedance probabilities (5, 25, 50, 75, and 95%), were calculated according to the flow duration curves for the entire period and are suggested in this research. These results can be used for feasibility assessment of the set values of primary and secondary standard flow rates for each river system, which are derived from complicated models. In addition, they will also be useful for the process of implementing TMDL management, including evaluation of the target level of water purity based on load duration curves.
본 연구에서는 국내 수계의 퇴적토에 대한 특성을 분석하였으며 이를 바탕으로 준설 퇴적토의 관리방안을 제시하였다. 발생기원별로 퇴적토의 오염특성을 알아본 결과, 도시 및 공단지역은 중금속, 농축산지역은 유기물질, 해안지역은 중금속과 유기물질이 복합적으로 오염된 것으로 조사되었다. 4대강 유역은 유기물오염은 낮게 나타났으나 중금속의 경우 일부구간에서 미국의 기준치를 초과하는 것으로 나타났다. 따라서 퇴적물의 성상은 지역별 오염기원별로 그 특성이 달리 관찰되는 바, 그 특성에 맞는 국내 퇴적물 관리방안이 요구된다. 제한적인 부지를 대상으로 용출평가를 수행결과 퇴적물의 오염물질이 수계로의 영향을 주는 것으로 나타났으며 이에 따른 생태독성평가, 위해성평가를 통한 국내 실정에 맞는 퇴적물관리기준의 제정과 중점관리대상을 선정하여 주기적인 모니터링을 통한 관리가 필요할 것이다. 한편, 국내 하천·호소에서의 준설사업은 골재 채취를 제외하고 대부분이 육상매립 혹은 해양투기 등의 방법으로 단순 처리되고 있어 준설물질의 다양한 활용을 촉진해야 할 필요성이 요구된다. 따라서 준설토의 활용을 위하여 관련법을 정비하고 유효활용에 대한 법적 기준근거를 제시한다면, 향후 오염물질 제거를 위한 준설사업이라 할지라도 적절한 처리를 통하여 유용하게 재활용 할 수 있을 것으로 보인다.
수계관리를 위해서는 수계의 상태를 평가하고 관리 목표를 바탕으로 수계의 문제를 파악하고, 이를 해결하기 위한 적절한 대책을 수립해야 한다. 수계는 여러 개의 유역들로 나눠지며, 이들은 수자원, 사회 및 경제 시스템, 법률 및 제도, 사용자, 토지, 생태계 등의 요소들로 구성되어 있다. 이들은 복잡하게 연결되어 네트워크를 형성한다. 본 연구에서는 수계 관리 정황에서 유역관리를 실시하기 위해서 유역의 관리 상태를 평가하기 위한 평가지수를 개발하였다. 평가지
본 논문에서는 금강수계 오염총량관리 기본계획에서 제시된 오염부하량 자료를 기반으로 공시된 목표수질을 달성하기 위한 적정방류량을 산정하였다. 오염총량관리의 1단계로 BOD를 대상으로 총량관리가 이루어질 계획이며 향후 질소 및 인 계열로 확대될 전망이다. 총량구역별 및 행정구역별로 산정된 BOD와 TN, TP 부하량을 GIS를 활용하여 10개의 지류수계에 대하여 재분배하였고 지류수계에 해당되지 않는 구역에 대해서는 15개의 소구간으로 처리하여 반영하였다.
The Keum river is one of the important river in Korea and has a drainage area of 9,873 ㎦. The Keum river is deepening pollution state due to development of the lower city and construction of a industrial complex. The water quality of the Keum river come to eutrophication state and belong to Ⅲ grade of water quality standard.
The concentration BOD in river is affected by the organic loading from a tributary and the algae biomass that largely happen to under eutrophication state. In the eutrophic water mass such as the Keum river, the autochthonous BOD was very important part for making a decision of water quality management, because it was accounted for majority of the total BOD.
The purpose of this study was to survey the characteristics of water quality in summer and to estimate reaction coefficient. Also, we studied to correlationship between chlorophyll a and BOD(COD) for estimation of the autochthonous BOD. The correlationship between chlorophyll a and BOD(COD) were obtained through the culture experiment of phytoplankton in the laboratory. The results of this study may be summarized as follows ;
The characteristics of water quality in summer were belong to Ⅲ∼Ⅳgrade of water quality standard as BOD and nutritive condition is very high.
The BOD, ammonia nitrogen and phosphate loadings in Miho stream which inflowing untreated sewage from Chungju city was occupied with 64.07%, 26.36%, 46.08%, respectively.
Maximum nutrient uptake (Vmax) was 0.4400 μM/hr as substrate of ammonia nitrogen, 0.1652 μM/hr as substrate of phosphate. Maximum specific growth rate (μmax) was 1.2525 hr-1 as substrate of ammonia nitrogen, 1.5177 hr-1 as substrate of phosphate.
The correlation coefficient between chlorophyll a and BOD by the culture experiment were found to be 0.911∼0.935 and 0.942∼0.947 in the case adding nutrient and no adding nutrient, respectively.
The correlation coefficient between chlorophyll a and COD through the culture experiment were found to be 0.918∼0.977 and 0.880∼0.931 in the case adding nutrient and no adding nutrient, respectively.
The autochthonous BOD(COD) was estimated to the relationship between BOD(COD) and chlorophyll a. The regression equation were found to be autochthonous BOD=(0.045∼0.073)×chlorophyll a and autochthonous COD=(0.137∼0.182)×chlorophyll a.
This paper described the overall operations and applications of the water environment management and evaluation systems (WEMES) for environmental management, conservation, and evaluation for a small watershed. WEMES was to be applied with field data from small watersheds ranging from 0.4 to 29.79km2 in size which have steep topography and complex landuses. WEMES was a computer aided decision support system, that was comprised of the database subsystem, the simulation model subsystem, the environmental evaluation model subsystem, and the graphic user interface subsystem that visualizes the simulated results. The water environment management and evaluation with WEMES was successfully performed.
In an effort to effectively manage and evaluate a water environment at a small watershed, a decision support system for a water environment management and evaluation has been developed. This paper described the overall features and functions of the water environment management and evaluation systems (WEMES) for environmental management, conservation, and evaluation at a small watershed. WEMES consisted of fore subsystems: data, simulation model, evaluation model, and user interface. Each of the systems were briefly described. And special features like simulation and evaluation models were also introduced.
The Keum river has been utilized for drinking water supply of several city including Kunsan city and is deepening pollution state due to numerous municipal and industrial discharges.
The concentration BOD in river is affected by the organic loading from a tributary and the algae biomass that largely happen to under eutrophication state. In the eutrophic water mass such as the Keum river, the autochthonous BOD was very important part for making a decision of water quality management, because it was accounted for majority of the total BOD.
The predict of water quality has important meaning for management of water quality pollution of the Keum river.
The purpose of this study will manage and predict water quality of the Keum river using QUAL-2E model considering the autochthonous BOD.
The estimation of autochthonous BOD represented that the relationship between BOD and chlorophyll a. The regression equation was shown to be autochthonous BOD=β5×chlorophyll a. The results of this study may be summarized as followed;
The QUAL-2E model was calibrated with the data surveyed in the field of the study area in June, 1998. The calculated value by QUAL-2E model are in good agree to measured value within relative error of 7.80∼20.33%. Especially, in the case of the considering autochthonous BOD, the calculated value of BOD were fairly good coincided with the observed values within relative error of 15%. But the case of not considering autochthonous BOD, relative error of BOD was shown to be 43.2%.
In order to attain Ⅱ grade of water quality standard in Puyo station which has a intake facility of water supply, we reduced to the pollutants loading of tributaries. In the case of removed 100% BOD of tributaries, the BOD of Puyo station was 4.07㎎/ℓ, belong to Ⅲ grade of water quality standard. But in the case of removed 88% nutrient of tributaries, it was satisfied to Ⅱ grade of water quality standard as below 3㎎/ℓof BOD.
For estimation of autochthonous BOD in Keum river, we are performed simulating in accordance with reduction of nutrient load(50∼100%) under conditions removal 90% organic load. Occupancy of autochthonous BOD according to nutrient loading reductions were varied from 25.97∼79.51%. Occupancy of autochthonous BOD was shown to be a tendency to increasing in accordance with reduction of nutrient loading.
Showing the above results, the nutrient that one of the growing factor of algae was important role in decision of BOD in the Keum river. For the water quality management of the Keum river, therefore, it is necessary to considering autochthonous BOD and to construction of advanced sewage treatment plant for nutrient removal.