• 제목/요약/키워드: Stormwater Pollution

검색결과 91건 처리시간 0.021초

합류식 하수관거 지역에서 강우시 하수처리장 적정운영방안에 관한 연구 (Alternatives for The Stable Operation of Wastewater Treatment Plant in Combined Sewer System during Wet Weather)

  • 이두진;신응배;홍철의;안세영
    • 한국물환경학회지
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    • 제20권2호
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    • pp.132-144
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    • 2004
  • The purpose of this study was to evaluate alternatives for stable operation of WWTP(Wastewater Treatment Plant) with a higher rate of inflows and a higher concentration of pollutants during wet weather to minimize the pollution loads being discharged into receiving waters. 3Q(Q: dry weather flow) of a base flow is normally intercepted and flows into WWTP as it was current practice. It is revealed by simulation that the bypassing alternative of 1Q through secondary treatment and 2Q into the stream after primary treatment was as good as it is expected. The bypass pollution loads were in the range of 23.9 ~ 38.5 % of the total loads flowing into the WWTP indicating that the bypassed flows need an extra treatment such as stormwater detention reservoir, high-rate coagulation with sedimentation, and step-feed. The high-rate coagulation with sedimentation was the most effective with respect to removal of the pollution loads.

Estimation of stormwater interception ratio for evaluating LID facilities performance in Korea

  • Choi, Jeonghyeon;Lee, Okjeong;Lee, Jeonghoon;Kim, Sangdan
    • Membrane and Water Treatment
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    • 제10권1호
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    • pp.19-28
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    • 2019
  • To minimize the impact of urbanization, accurate performance evaluation of Low Impact Development (LID) facilities is needed. In Korea, the method designed to evaluate large-scale non-point pollution reduction facilities is being applied to LID facilities. However, it has been pointed out that this method is not suitable for evaluating the performance of relatively small-scale installed LID facilities. In this study, a new design formula was proposed based on the ratio of LID facility area and contributing drainage area, for estimating the Stormwater Interception Ratio (SIR) for LID facilities. The SIR was estimated for bio-retentions, infiltration trenches and vegetative swales, which are typical LID facilities, under various conditions through long-term stormwater simulation using the LID module of EPA SWMM. Based on the results of these numerical experiments, the new SIR formula for each LID facility was derived. The sensitivity of the proposed SIR formula to local rainfall properties and design variables is analysed. In addition, the SIR formula was compared with the existing design formula, the Rainfall Interception Ratio (RIR).

도시지역에 적용가능한 인공습지에서의 강우유출수 함유 오염물질의 거동과 특성 (Characteristics and Fate of Stormwater Runoff Pollutants in Constructed Wetlands)

  • ;;최지연;;김이형
    • 한국습지학회지
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    • 제19권1호
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    • pp.37-44
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    • 2017
  • 도시지역은 인구가 집중되어 토지이용이 집약적이며 불투수면의 비율이 높아 강우시 비점오염에 의한 영향이 높은 지역이다. 비점오염원은 강우시 다양한 토지이용으로부터 발생되며 수계에 직접적인 영향을 미치고 오염물질의 종류와 양에 따라 불확실성이 높은 오염원이므로 점오염원과 함께 관리가 필요하다. 이러한 비점오염원을 관리하기 위한 방안으로 국내 외에서는 자연적인 기작을 이용한 비점오염원 관리기법인 저영향개발기법 (Low impact development, LID)을 도입하였으며 침투도랑, 식생체류지, 인공습지 등 다양한 요소기술이 포함된다. 이중 인공습지는 수질정화 (비점오염물질 저감)와 더불어 물을 저류하는 기능을 가진 친환경적인 시설로 잘 알려져 있다. 본 연구는 비점오염원 관리를 위한 LID 기술의 효과를 알아보기 위하여 수행되었으며 도시지역에 조성된 두 종류의 인공습지를 운영한 결과를 분석하고 평가하고자 한다. 연구대상 인공습지는 HSSF형과 Hybrid형으로 두 시설 모두2010년에 조성되어 현재까지 운영 중에 있으며 본 논문에서는 2010년부터 2015년까지의 총 42회의 모니터링 결과를 이용하였다. 분석결과, 두 인공습지를 통해 강우유출유출량을 평균 37~41% 범위로 저감되였으며 오염물질별 저감효율의 경우 TSS는 63~79%, TN은 38~54%, TP는 54%, 중금속은 32~81% 범위로 나타나 도시지역내 인공습지 적용시 비점오염원 저감에 도움이 될 수 있을 것으로 판단된다.

침투도랑 시설의 유지관리 시점 산정방법에 관한 연구 (An estimation method for the maintenance timing of the infiltration trench)

  • 이승원;차성민
    • 한국물환경학회지
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    • 제36권1호
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    • pp.29-35
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    • 2020
  • To manage the non-point source pollution and restore the water circulation, many technologies including infiltration or reservoir systems were installed in the urban area. These facilities have many problems regarding maintenance as their operation period becomes lengthier. The purpose of this study was to estimate the optimal maintenance timing through a long-term load test on the infiltration trench as one of the low impact development techniques. An infiltration trench was installed in the demonstration test facility, and stormwater was manufactured by Manual on installation and operation of non-point pollution management facilities from the Ministry of Environment, Korea and entered into the infiltration trench. Particle size distribution (PSD), suspended solids (SS) removal efficiency, and infiltration rate change tests were performed on inflow and outflow water. In case of the PSD, the maximum particulate size in the outflow decreased from 64 ㎛ to 33 ㎛ as the operating duration elapsed. The SS removal efficiency improved from 97 % to 99 %. The infiltration rate changed from 0.113 L/sec to 0.015 L/sec during the operation duration. The maintenance timing was determined based on the stormwater runoff requirements with these changes in water quality and infiltration rate. The methodologies in this study could be used to estimate the timing of maintenance of other low impact development techniques.

비점오염원관리를 위한 레인가든에서 식물과 토양의 영양물질과 중금속 농도변화 (Changes in Concentrations of Nutrients and Heavy Metals of Plants and Soils in Rain Garden Systems used for Non-point Source Pollution Management)

  • 김창수;성기준
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권4호
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    • pp.27-35
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    • 2012
  • Recently, there has been increasing interest in the use of rain garden systems as environmentally friendly ecological infrastructures for controlling stormwater runoff and managing non-point source pollution and information for the contamination of soil and plants can be essential for sustainable rain garden management. In this study, four rain garden mesocosms, namely single species planting with Rhododendron lateritium, single species planting with Zoysia japonica, mixed planting with R. lateritium and Z. japonica, and control without plants, were tested to investigate the change in concentrations of nutrients (N and P) and heavy metals (Cd, Cu, Pb, and Ni) in the soil and plants used in the rain garden system. The presence of plants resulted in greater nutrient retention in soil and lower potential leaching from the system. All systems showed an increase in the heavy metal concentrations in soil. The concentrations of most heavy metals were found to be higher in the herbaceous plants (Z. japonica) than in the shrubs (R. lateritium). The belowground part (root) had higher heavy metal concentrations than the aboveground part (leaf) but also showed a potential increase in leaves, and hence, careful plant management should be considered during rain garden operation.

주차장 및 교량 강우유출수의 중금속 오염물질 특성과 동적 EMCs (Characteristics of Metal Pollutants and Dynamic EMCs in a Parking Lot and a Bridge during Storms)

  • 김이형;이선하
    • 한국물환경학회지
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    • 제21권4호
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    • pp.385-392
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    • 2005
  • The control of nonpoint source pollution is essentially needed to successfully perform the Total Maximum Daily Load program. Of the various land uses in the nonpoint source, the paved areas such as a parking lot and a bridge are stormwater intensive land uses because of high imperviousness and high pollutant mass emissions. This research was performed to understand the magnitude and nature of the stormwater emissions with the purposes of quantifying stormwater pollutant concentrations and mass emission rates from a parking lot and a bridge. Two monitoring sites in Kongju city were equipped with an automatic rainfall gages and an automatic flow meter for accumulating the data such as rainfall, water quality and runoff flow rates. This paper will summarize the metal concentration changes during the storm duration and metal EMCs to characterize the concentration profiles in a parking lot and a bridge. Also a new concept, dynamic EMC, will be proposed to find the relationship between EMC and first flush effect. It can be used to determine the economical treatment criteria in best management practices.

다목적 저류지의 수질개선을 위한 설계과정 및 적용에 관한 연구 - 남악 신도시 개발지를 대상으로 - (A Study on the Application and Design Procedure of Multi-Purpose Wet Detention Ponds for Improving Water Quality - Case Study of NamAk New Town Development Area -)

  • 우창호
    • 한국환경복원기술학회지
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    • 제7권1호
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    • pp.97-109
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    • 2004
  • The disposal of stormwater is one of the major problems in urban water management. One method of reducing peak runoff rates and other detrimental impacts of stormwater is detention storage. Detention ponds as a water quality control alternatives have been investigated by a number of researchers. Recognizing multiple roles such as flood peak attenuation, pollution removal and aesthetic enhancement, the design and management of detentions ponds deserve more research. The purpose of this research is to establish design criteria wet detention ponds to improve water quality. Water quality in detention pond discharge might be improve with physical, chemical and biological alterations. Physical alteration was focused in this study. There are several methods for estimating the suspended solid control capability of wet detention ponds. Existing models of suspended solids removal are based on sedimentation and gravity settling theory. The pollutant trap efficiency of pond is a function of several interrelating factors. Detention time is the most important factor, because it determine gravity settling quantities of pollutants. Desirable modification of physical factors for improvement of water quality in wet detention ponds are volume ratio, area ratio, length to width ratio, depth, out let location, bottom soil type. In order to apply design procedure in actual site, Namak new town development area was selected.

도시유역에서 재생자원기반 유기성 토량개량제 적용에 따른 비점오염물질 관리 효과 평가 (Evaluation of Nonpoint Pollutant Management Effect by Application of Organic Soil Ameliorant Based on Renewable Resources in Urban Watershed)

  • 박윤경;안창혁
    • 한국물환경학회지
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    • 제40권3호
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    • pp.131-139
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    • 2024
  • This study investigated the chemical properties of Organic Soil Amendments (OSAs) made from organic waste. It also assessed the effectiveness of using these OSAs in the soil layer of Green Infrastructure (GI) to reduce stormwater runoff and non-point source pollutants. The goal was to improve the national environmental value through resource recycling and contribute to the circular economy transformation and carbon neutrality of urban GI. The OSAs used in this study consisted of spent coffee grounds and food waste compost. They were found to be nutrient-rich and stable as artificial soils, indicating their potential use in the soil layer of GI facilities. Applying OSAs to bio-retention cells and permeable pavement resulted in a reduction of approximately 11-17% in stormwater runoff and a decrease of about 16-18% in Total Phosphorus (TP) discharge in the target area. Increasing the proportion of food waste compost in the OSAs had a positive impact on reducing stormwater runoff and pollutant emissions. This study highlights the importance of utilizing recycled resources and can serve as a foundation for future research, such as establishing parameters for assessing the effectiveness of GI facilities through experiments. To enable more accurate analysis, it is recommended to conduct studies that consider both the chemical and biological aspects of substance transfer in OSAs.

강우유출오염부하를 고려한 호수수질모델링 (Lake Water Quality Modelling Considering Rainfall-Runoff Pollution Loads)

  • 조재현;강성효
    • 환경영향평가
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    • 제18권2호
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    • pp.59-67
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    • 2009
  • Water quality of the Lake Youngrang in the Sokcho City is eutrophic. Jangcheon is the largest inflow source to the lake. Major pollutant sources are stormwater runoff from resort areas and various land uses in the Jangcheon watershed. A storm sewer on the southern end of the lake is also an important pollution source. In this study, water quality modelling for Lake Youngrang was carried out considering the rainfall-runoff pollution loads from the watershed. The rainfall-runoff curves and the rainfall-runoff pollutant load curves were derived from the rainfall-runoff survey data during the recent 4 years. The rainfall-runoff pollution loads and flow from the Jangcheon watershed and the storm sewer were estimated using the two kinds of curves, and they were used as the flow and the boundary data of the WASP model. With the measured water quality data of the year 2005 and 2006, WASP model was calibrated. Non-point pollution control measures such as wet pond and infiltration trench were considered as the alternative for water quality management of the lake. The predicted water quality were compared with those under the present condition, and the improvement effect of the lake water quality were analyzed.

생태저류지 LID 시설의 강우유출수 처리비 산정 (Estimation of Stormwater Interception Rate for Bio-retention LID Facility)

  • 최정현;이옥정;김상단
    • 한국물환경학회지
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    • 제33권5호
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    • pp.563-571
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    • 2017
  • Because of the rapid progress of urbanization in recent decades, the proportion of impervious areas in cities has increased. As a result, hydrological properties of urban streams have changed and non-point pollution sources have increased, that have had considerable influence on human life and ecosystems. To manage these situations, application of non-point pollution reduction facilities and LID facilities are expanding recently. In this study, it is investigated if rainfall interception rate used in design of non-point pollution reduction facilities can be applied to design of LID facilities. For this purpose, EPA SWMM is constructed for part of Noksan National Industrial Complex area wherein long-term observed storm water data can be obtained and storm water interception rates for various design capacities of a bio-retention LID facility reservoirs are estimated. While sensitivity of storm water interception rate according to design specifications of bio-retention facility is not large, sensitivity of storm water interception rate according to regional rainfall characteristics is relatively large. As a result of comparing present rainfall interception rate estimation method with the one proposed in this study, the present method is highly likely to overestimate performance of the bio-retention facility. Finally, a new storm water interception rate formula for bio-retention LID facility is proposed.