• Title/Summary/Keyword: Non-Point Source Reduction

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Characteristics of Collected Sediments from Road Sweeping and Reduction in the Nonpoint Source Pollutants Loading (도로청소 수거퇴적물의 특성과 비점오염물질 저감효과)

  • Jeong, Kwon;Kang, Hee-Man;Ko, Seok-Oh
    • International Journal of Highway Engineering
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    • v.13 no.2
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    • pp.187-193
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    • 2011
  • The stormwater runoff from road or expressway is known as one of important nonpoint pollution sources. To reduce the pollutants discharge from road or expressway, many best management practices(BMPs) have been applied and planned. Among the BMPs, road sweeping can be effective way to prevent pollutant washoff to environment. This study is performed to evaluate the characteristics of particles collected from the road by sweeping car. Size distribution and pollutant concentration of particles were analyzed. Based on the pollutant concentration and the specification of road such as length, width, and unit for pollutant generation, total amount of pollutant to be removed by road sweeping was estimated. Most of sediments collected by road sweeping was classified into sandy soil and fraction of fine grained soil was low. Although the concentrations of pollutants such as heavy metals in road sediments did not exceed the soil contamination criteria, washout of pollutants during sweeping work by spraying water might cause leaching of pollutants contained in sediments and thus resulted in low pollutant concentrations. Reduced amounts of pollutant by road sweeping showed 31.4% TSS reduction for ${\bigcirc}{\bigcirc}$ region and 7.7% TSS for ${\triangle}{\triangle}$ region. Other pollutants showed low reduction rate, because of their leaching by water spraying. Results from this study indicate that detailed and well-planned investigation for the road sweeping is necessary for the accurate estimation of pollutant reduction from road or expressway.

Study on Runoff Property in Non-point Source Reduction Facility (비점오염 저감시설의 유출특성에 관한 연구)

  • Kwak, Hyun-Gu;Yeon, Ki-Suk;Kim, Jong-Sub;Ryu, Byong-Ro
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1365-1369
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    • 2009
  • 최근 비점오염원 부하의 심각성이 알려지면서 4대강 유역을 중심으로 비점오염원의 조사 및 관리를 위한 대책 마련과 제도관 관리방안이 모색되고 있다. 이중 낙동강 유역은 총 면적 약 $23,384km^2$로 국토 전체 면적의 약 1/4을 차지하고 있지만 연평균 강수량은 1,186mm로 4대강 수계 중 가장 적어 갈수기에 자연 하천유량의 부족 및 유역외 지역에서의 공업용수 사용으로 낙동강하류의 유량감소를 초래하여 수질악화와 생태계 파괴가 심화되고 있는 상황에서 비점오염물질로 인해 그 피해가 가중되고 있다. 이에 본 연구에서는 도시지역, 도로, 농경지, 토양침식물, 축사유출물, 대기강하물 등 광범위한 지역에서 강우 유출수와 함께 배출되는 비점오염물질을 처리하기 위하여 낙동강 수계내 대구 달성 소유역에 시범적으로 설치 운영중인 저감시설(CDS)의 수질 및 유량 모니터링 자료를 이용하여 대상유역의 강우-유출 특성 및 오염부하량 특성을 살펴보고, 전체유역의 유출발생량과 비점오염원 저감시설의 유입량 대비 처리 효율을 분석함으로써 오염부하량 발생 및 저감효율에 관한 연구를 수행하였다. 이를 위해 강우-유출 및 수질 모니터링 자료를 이용하여 모형(XP-SWMM)의 검보정을 실시하여 모델링 매개변수를 조정하였고, 강우-유출해석을 실시하여 대상유역의 년간 유출특성 및 비점 오염원 저감시설의 년간 오염부하량 저감율을 분석하였다.

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Exploring the temporal and spatial variability with DEEP-South observations: reduction pipeline and application of multi-aperture photometry

  • Shin, Min-Su;Chang, Seo-Won;Byun, Yong-Ik;Yi, Hahn;Kim, Myung-Jin;Moon, Hong-Kyu;Choi, Young-Jun;Cha, Sang-Mok;Lee, Yongseok
    • The Bulletin of The Korean Astronomical Society
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    • v.43 no.1
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    • pp.70.1-70.1
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    • 2018
  • The DEEP-South photometric census of small Solar System bodies is producing massive time-series data of variable, transient or moving objects as a by-product. To fully investigate unexplored variable phenomena, we present an application of multi-aperture photometry and FastBit indexing techniques to a portion of the DEEP-South year-one data. Our new pipeline is designed to do automated point source detection, robust high-precision photometry and calibration of non-crowded fields overlapped with area previously surveyed. We also adopt an efficient data indexing algorithm for faster access to the DEEP-South database. In this paper, we show some application examples of catalog-based variability searches to find new variable stars and to recover targeted asteroids. We discovered 21 new periodic variables including two eclipsing binary systems and one white dwarf/M dwarf pair candidate. We also successfully recovered astrometry and photometry of two near-earth asteroids, 2006 DZ169 and 1996 SK, along with the updated properties of their rotational signals (e.g., period and amplitude).

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Effect Analysis and Development of Filter Box for Reduction of Non-point Source (비점오염 저감을 위한 Filter Box 개발 및 효과분석)

  • Moon, Young-Il;Kang, Dong-Ho;Yoon, Sun-Kwon;Park, Gu-Soon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.305-305
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    • 2011
  • 비점오염물질은 강우시 유출되기 때문에 일 또는 계절간 배출량의 변화가 커서 예측의 정량화가 어려워 인위적 조절이 어려운 실정이다. 특히 도시유역의 경우 인구증가와 도시개발에 따른 불투수면적의 증가로 우기시에 오염물질이 빗물과 더불어 하천으로 유입되기 때문에 비점오염원에 대한 하천 수생태계 보호에 대한 노력이 필요하다. 따라서 본 연구에서는 초기우수와 더불어 발생하는 비점오염물질저감을 위하여 도로 집수구에 차집된 우수를 여러 개의 사층을 통과시켜 여과, 흡착 하는 방법으로 침투 배출시키는 Filter Box를 개발하였고 초기강우와 지속강우에 대한 여과실험을 통하여 배수에 따른 여과 처리 및 비점오염 처리효율을 분석하였다. Filter Box에 의한 비점오염물질 저감 효과 분석결과 BOD, T-N, T-P, 중금속 등이 약 70~90% 제거되는 것으로 나타났으며 초기우수 발생유량 7mm 기준 30분 이내에 여과 처리가 가능한 것으로 분석되었다. 따라서 Filter Box 시공에 따른 하천으로 유입되는 비점 오염물질의 제거와 더불어 도심지역 지하수위 증가 등의 효과가 있을 것으로 사료된다.

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A Study of Non-point Source Reduction Efficiency by Constructed Wetland installed in Flood Pumping Station (빗물펌프장에 설치된 인공습지의 비점오염원 저감효율 연구)

  • Chun, Suk-Young;Kim, Ji-Tae;Lee, Il-Kook;Chang, Soon-Woong
    • Journal of Environmental Impact Assessment
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    • v.23 no.1
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    • pp.67-74
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    • 2014
  • The aim of this study was evaluated the effects of total rainfall, rainfall intensity and antecedent dry days and identify the correlation analysis with the EMC removal efficiency, in order to provide an understanding of the operation and maintenance factors of constructed wetland in flood pumping station. This study was conducted total of 20 monitoring in a catchment(326.2 ha) of constructed wetland in Ga-un flood pumping station located at the downstream of the Wang-suk stream. The determined EMC removal efficiencies were $36.04{\pm}9.45%$ for BOD, $38.50{\pm}13.50%$ for $COD_{Mn}$, $34.34{\pm}13.05%$ for TN and $34.22{\pm}14.27%$ for TP, respectively. These results showed that the pollutants concentration and EMC were reduced while passing through the constructed wetland. In the correlation analysis, the highly correlations with EMC removal efficiency of BOD and $COD_{Mn}$ were observed for total rainfall and rainfall intensity (P<0.05). However, the correlations were not found with TN and TP for rainfall variables.

Constructed Wetland Design Method to Treat Agricultural Drainage from Tidal Reclaimed Paddy Areas (간척지 논 농업배수 처리에 적합한 인공습지 설계 기법)

  • Jang, Jeong-Ryeol;Shin, Yu-Ri;Jung, Ji-Yeon;Choi, Kang-Won
    • KCID journal
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    • v.18 no.1
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    • pp.4-17
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    • 2011
  • The standard design methodology was suggested to construct wetland system for reducing non-point source pollution from Saemangeum reclaimed paddy land. To set for the design flow and concentrations, runoff and water quality survey were conducted during the irrigation period in 2008 at Gyehwa reclaimed paddy land located at near Saemangeum lake. It is rational that 1ha is the optimum constructed wetland size. To meet this size, the moderate drainage area of reclaimed paddy field was 50ha under the conditions that rainfall is 30mm, average runoff coefficient is 0.83, and runoff capture ratio is 0.6. At these condition, the runoff volume from 50ha was 10,520 $m^3/d$ including base flow during irrigation period. To select the optimum wetland system, several case studies were conducted by focusing on the tidal reclaimed land areas having wetland systems in Seokmun. Pond-Wetland system was selected as the standard model because of showing the highest reduction efficiency. Single variable regression equation were delivered to estimate effluent water concentrations from the designed wetland by using long-term monitoring data from the Seokmun experiment site. The effluent concentration from the designed wetland using these equation were showed moderately range.

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Evaluation of the Development and Reduction Scheme under Implementation Plan of Total Maximum Daily Loads in the Jinwi Watershed (진위천 수계의 수질오염총량제 시행에 따른 지역개발과 삭감계획 평가)

  • Han, Mideok;Ahn, Ki Hong;Ryu, Jichul;Son, Jeeyong;Park, Bae Kyung;Kim, Young Seok
    • Journal of Korean Society of Environmental Engineers
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    • v.36 no.6
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    • pp.451-459
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    • 2014
  • The development and reduction scheme under implementation plan of TMDLs were performed in the Jinwi watershed including 8 cities (Gunpo, Yongin, Suwon, Anseong, Osan, Uiwang, Pyeongtaek and Hwaseong) since 2012. Progress of the annual development schemes was faster than the reduction schemes in most of the cities during the planning period. Main load reduction methods included establishment and enlargement of sewage treatment plants, resources of livestock excretions, and introduction of best management practices of non-point source pollution. Especially, reduction load using recycling and composting of livestock excretions comprised 34.1% of all reduction load. It is necessary to implement methodical development and reduction scheme for making of successful performance of TMDLs and water quality improvement in the Jinwi watershed.

Optimal Operating Condition of Vortex Separator for Combined Sewer Overflows Treatment (합류식 하수관거 월류수 처리를 위한 와류형 분리장치의 최적 운전조건)

  • Han, Jung-kyun;Joo, Jae-young;Lee, Bum-joon;Na, Ji-hun;Park, Chul-hwi
    • Journal of Korean Society of Water and Wastewater
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    • v.23 no.5
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    • pp.557-564
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    • 2009
  • A combined sewer system can quickly drain both storm water and sewage, improve the living environment and resolve flood measures. A combined sewer system is much superior to separate sewer system in reduction of the non-point source pollutant load. However, during rainfall. it is impossible in time, space and economic terms to cope with the entire volume of storm water. A sewage system that exceeds the capacity of the sewer facilities drain into the river mixed with storm-water. In addition, high concentration of CSOs by first-flush increase pollution load and reduce treatment efficiency in sewage treatment plant. The aim of this study was to develope a processing unit for the removal of high CSOs concentrations in relation to water quality during rainfall events in a combined sewer. The most suitable operational design for processing facilities under various conditions was also determined. With a designed discharge of 19.89 m/min, the removal efficiency was good, without excessive overflow, but it was less effective in relation to underflow, and decreased with decreasing particle size and specific gravity. It was necessary to lessen radius of vortex separator for increasing inlet velocity in optimum range for efficient performance, and removal efficiency was considered to high because of rotation increases through enlargement of comparing height of vortex separator in diameter. By distribution of influent particle size, the actual turbulent flow and experimental results was a little different from the theoretical removal efficiency due to turbulent effect in device.

Improvement and Implementation to Enhance the Effectiveness of the Total Pollution Load Control System (수질오염총량관리제 실효성 제고를 위한 제도개선 및 추진 방향)

  • Seok-Gyu Kim;Seung-Young Oh;Su-Young Park;Eun-Hye Na;Yong-Seok Kim
    • Journal of Korean Society on Water Environment
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    • v.39 no.4
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    • pp.343-355
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    • 2023
  • After the implementation of the total pollution load control system, the effect of improving river water quality by expanding investments in basic environmental facilities, inducing operational efficiency, and reducing the load of various pollutants was clear. However, since the implementation of the system, the management of non-point pollutants has been neglected; management focused on specific substances (biochemical oxygen demand (BOD) and total phosphorus (T-P)) and lacked specific cause analysis and action plans, failed to establish a relationship between water quality and pollution load, failed to reflect stakeholder demands for river water quality management, and failed to apply technical conditions. Therefore, to overcome the limitations raised and achieve a practical and efficient advanced total pollution system, the current system was partially improved and will continue to be improved. This study analyzed the performance and limitations of the total pollution system and introduced recent improvements and the contents that are being improved. The main contents included reducing emissions and reduction monitoring, using water quality tele-monitoring system (TMS) data and self-measurement data, adding population-inducing facilities, and adjusting regional development projects from 20 to 30 multi-family housing units, currentizing each pollutant source according to the roadmap. If the system is improved in a developmental direction and responds to various changes, it will be a more practical and effective policy.

Analysis of NPS Pollution reduction from No-till Field (무경운 밭에서의 비점오염물질 저감효과 분석)

  • Lee, Su In;Won, Chul Hee;Shin, Min Hwan;Shin, Jae Young;Jeon, Je Hong;Choi, Joong Dae
    • Journal of The Korean Society of Agricultural Engineers
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    • v.57 no.4
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    • pp.51-59
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    • 2015
  • Various Best Management Practices (BMPs) have been suggested to reduce soil erosion and non point source (NPS) pollutant loads from agricultural fields. However, very little research regarding water quality improvement with No-till (NT) has been performed in Korea. Thus, effects of NT were investigated in this study. The objective of the study was to investigate the effect of NT on the surface runoff and sediment discharge in a field. Eight experimental plots of $5{\times}30m$ in size and 3 % or 8 % in slope prepared on gravelly sandy loam soil were treated with Conventional-till (CT) and NT. Runoff and NPS pollution discharge were monitored and compared the treatments. The amounts of rainfall from 13 monitored events ranged from 28.7 mm to 503.5 mm. The runoff amount was reduced by 17.6~59.2 % in 3 % NT and 29.6~53.2 % in 8 % NT. The average NPS pollution loads of the 3 % NT plots and 8 % NT plot were reduced about 45.1~89.2 % and 47.7~98.0 % compared to those of the CT plots, respectively. This research revealed that NT can reduce the NPS pollution loads substantially as well as increase the crop yield. Runoff and NPS pollution loads reduction by NT method could be contribute to improve the water quality of streams in agricultural regions.