• Title/Summary/Keyword: 오염물질 유출

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Evaluation of Spatial and Temporal Variations of Water Quality in Lake Shihwa and Outer Sea by Using Water Quality Index in Korea: A Case Study of Influence of Tidal Power Plant Operation (수질평가지수를 이용한 시화호 내측 및 외측 해역의 시·공간적 수질 변화 평가: 조력발전소 가동에 따른 영향 연구)

  • Ra, Kongtae;Kim, Joung-Keun;Kim, Eun-Soo;Kim, Kyung-Tae;Lee, Jung-Moo;Kim, Sung-Keun;Kim, Eu-Yeol;Lee, Seung-Yong;Park, Eun-Ju
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.16 no.2
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    • pp.102-114
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    • 2013
  • The basin of Lake Shihwa is one of highly industrialized region of Korea and a current environmental issue of study area is the operation of tidal power plant (TPP) to improve water quality. The application of water quality index (WQI) which integrates five physiochemical parameters (transparency, DO, DIN, DIP and chlorophyll-a) of water quality in Lake Shihwa and outer sea during 2011~2012 were performed not only to evaluate the spatial and temporal distribution of the water quality but also to assess the effect of water quality improvement by the operation of tidal power plant. The higher WQI values were observed in monitored sites near the industrial complexes in Lake Shihwa and the outfall of wastewater treatment plants (WWTPs) in outer sea. This indicates that the quality of seawater is influenced by diffuse non-point sources from industrial, municipal and agricultural areas in Lake Shihwa and by point sources from the effluence of municipal and industrial wastewater throughout WWTPs in outer sea. Mean WQI value decreased from 53.0 in 2011 to 42.8 in 2012 of Lake Shihwa. Water quality has improved significantly after TPP operation because enhancement of seawater exchange between Lake Shihwa and outer sea leads to improve a hypoxic condition which is primarily a problem in Lake Shihwa. Mean WQI of outer sea showed similar values between 2011 and 2012. However, the results of hierarchical cluster analysis and the deterioration of water quality in summer season indicate that the operation of tidal power plant was not improved the water quality in the upper most area of Lake Shihwa. To successfully improve overall water quality of Lake Shihwa, it is urgently necessary to manage and reduce of non-point pollution sources of the basin of Lake Shihwa.

Oxidative Degradation of PCE/TCE Using $KMnO_4$ in Aqueous Solutions under Steady Flow Conditions (유동조건에서 $KMnO_4$도입에 따른 수용액중 PCE/TCE의 산화분해)

  • Kim, Heon-Ki;Kim, Tae-Yun
    • Economic and Environmental Geology
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    • v.41 no.6
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    • pp.685-693
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    • 2008
  • The rates of oxidative degradation of perchloroethene (PCE) and trichloroethene (TCE) using $KMnO_4$ solution were evaluated under the flow condition using a bench-scale transport experimental setup. Parameters which are considered to affect the reaction rates tested in this study were the contact time (or retention time), and the concentration of oxidizing agent. A glass column packed with coarse sand was used for simulating the aquifer condition. Contact time between reactants was controlled by changing the flow rate of the solution through the column. The inflow concentrations of PCE and TCE were controlled constant within the range of $0.11{\sim}0.21\;mM$ and $1.3{\sim}1.5\;mM$, respectively. And the contact time was $14{\sim}125$ min for PCE and $15{\sim}36$ min for TCE. The $KMnO_4$ concentration was controlled constant during experiment in the range of $0.6{\sim}2.5\;mM$. It was found that the reduction of PCE and TCE concentrations were inversely proportional to the contact time. The exact reaction order for the PCE and TCE degradation reaction could not be determined under the experimental condition used in this study. However, the estimated reaction rate constants assuming pseudo-1st order reaction agree with those reported based on batch studies. TCE degradation rate was proportional to $KMnO_4$ concentration. This was considered to be the result of using high inflow concentrations of reactant, which might be the case at the vicinity of the source zones in aquifer. The results of this study, performed using a dynamic flow system, are expected to provide useful information for designing and implementing a field scale oxidative removal process for PCE/TCE-contaminated sites.

Evaluation of Filtration and Backwash Efficiency of Non-point Source Pollution Reduction Facility (장치형 비점오염원 저감시설의 여과 및 역세 효율 평가)

  • Yun, Sangleen;Lee, Yong-Jae;Ahn, Jae-Hwan;Choi, Won-Suk;Lee, Jungwoo;Oh, Hye-Cheol;Kim, Seog-Ku
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.12
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    • pp.664-671
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    • 2017
  • Non-point source pollution is the emission source that unspecifically releases pollutants to water system from unspecific places such as cities, agricultural lands, mountains, and construction sites and its discharge path is not easily identified. Also, it is difficult to design and manage the reduction facilities for the emission quantity is primarily affected from weather conditions like rainfall. Since 2006, the significance of non-point source pollution reduction has been grown in Republic of Korea and this reinforces needs for the installation of reduction facilities. However, because the standards for the installation details and reduction efficiency are not clarified by law, people are preferring technologies that do not require particular maintenance and high expenses. The purpose of this study is to examine and maintain the efficiency of non-point source pollutants reduction facility which uses expended polypropylene as a media. The higher the depth of the media, the less range of variations in the reduction efficiency was observed and the final efficiency was also increased. When the media depth was 60 cm, the average reduction efficiency was 94% and 90% where linear velocities were 10 m/hr and 20 m/hr respectively. The results from 180 minutes operation in 10 m/hr and 20 m/hr of linear velocities were slightly different in head loss changes which were caused by media depth variations. The backwash experiments which were conducted in triplicate showed the reduction efficiency decreased as the time went on because of the media clogging. However, it was found that after the backwashing the reduction efficiency was increased as effective as the efficiency of the initial filtration.

The Performances of Sediment Trap for Reducing Water Pollutants and Soil Loss from Rainfall Runoff in Cropland (농경지 토양유실 및 수질오염물질 유출에 대한 침사구 조성 효과)

  • Park, Se-In;Park, Hyun-Jin;Kim, Han-Yong
    • Korean Journal of Environmental Agriculture
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    • v.38 no.4
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    • pp.307-313
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    • 2019
  • BACKGROUND: An intensive farming system may be of the most important source for agricultural non-point source (NPS) pollution, which is a major concern for agricultural water management in South Korea. Various management practices have therefore been applied to reduce NPS loads from upland fields. This study presents performances of sediment trap for reducing NPS and soil loss from rainfall runoff in cropland. METHODS AND RESULTS: In 2018 and 2019, three sediment traps (L1.5 m × W1.0 m × D0.5 m = 0.75 ㎥) and their controls were established in the end of sloped (ca. 3%) upland field planted with maize crops. Over the seasons, runoff water was monitored, collected, and analyzed at every runoff. Soils deposited in sediment traps were collected and weighed at the season end. Sediment traps reduced runoff amount (p<0.05) and NPS concentrations, though the decreased NPS concentrations were not always statistically significant. In addition, sediment traps had a significant prevention effect on soil loss from rainfall runoff in a sloped cropland. CONCLUSION: The results suggest that the sediment trap could be a powerful and the best management practice to reduce NPS pollution and soil loss in a sloped upland field.

Characterization of Runoff Properties of Non-point Pollutant at a Small Rural Area considering Landuse Types (토지이용 특성을 고려한 소규모 농촌유역의 비점오염물질 유출특성 해석)

  • Bae, Sang-ho;Kim, Weon-jae;Yoon, Young H.;Lim, Hyun-man;Kim, Eun-ju;Park, Jae-roh
    • Journal of Korean Society on Water Environment
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    • v.26 no.4
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    • pp.654-663
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    • 2010
  • Attention has increasingly focused on the pollutant load discharged from rural area since the enforcement of total maximum daily loads (TMDLs) in korea. As one of the methods to control the inflow of pollutant load during wet weather events, local governments are attempting to apply non-point source control facility. To design those facilities appropriately, it is essential to understand the runoff characteristics of pollutants such as TSS, $BOD_5$, $COD_{Cr}$, TP and TN. In the paper, the quantitative analyses for pollutant runoff characteristics were examined in a small rural watershed with the area of about 53 hectares. For a dry weather day and wet weather events, variation patterns of dry weather flow and runoff characteristics of wet weather flows were monitored and investigated. The runoff model using XP-SWMM reflecting the landuse types of the watershed in detail was simulated to perform the sensitivity analyses for several factors influencing on their hydrograph and pollutographs. As a result, for the case of medium and small rainfall events (i. e. total rainfall of 35.8 and 17.5 mm), the impervious area including green house, roof and road which covers relatively low portion of total area (i. e. 16%) caused substantial first flush and the majority of total runoff load. Therefore, it has been concluded that the runoff characteristics of each pollutant and distribution of impervious area should be considered for the establishment of the control strategy of non-point pollutant runoff at a rural area.

Runoff Characteristics of NPS in Agricultural Area (포도재배지의 비점오염물질 유출특성)

  • Yi, Youn-Jeong;Lee, Jae-Woon;Kwon, Hun-Gak;Yoon, Young-Sam;Lee, Jae-Kwan
    • Journal of Environmental Science International
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    • v.20 no.10
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    • pp.1285-1295
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    • 2011
  • In this study, occurrence status of nonpoint pollutants and characteristics of discharge by each nonpoint pollutants were examined through monitoring on nonpoint pollutants caused when raining in vineyard belonging to the agricultural area of various land use patterns. Also, the first flush analysis limited to studies on the existing non-percolation area was applied to percolation area to ascertain availability and criteria of study. Various water quality and sluice of nonpoint pollutants were analyzed, based on which discharge of nonpoint pollutants in agricultural area was ascertained to be influenced greatly by artificial factors such as period, cultivation, management, etc. Meanwhile, the first flush phenomenon at agricultural area was ascertained to occur, and the first flush was quantified through calculation of the first flush ratio. If MFF30 is based, discharge load by each nonpoint pollutants caused when raining was investigated to include 40.8% on the basis of total discharge. In case of SS in pollutants showed the highest first flush phenomenon of 64.8%. Through such a result, calculation possibility of the initial rain criteria was ascertained, and it was determined that reliability-assured criteria were calculated through further monitoring.

Study to Reduce Sedimentation Deposit in Straight Path Manholes (중간맨홀내의 유사퇴적 저감방안 연구)

  • Song, Ju Il;Kim, Jung Soo;Rim, Chang Soo;Yoon, Sei Eui
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.97-97
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    • 2011
  • 관로 및 맨홀에 퇴적된 유사는 우수관거의 통수능을 감소시키고 전체 우수관거 시스템의 효과를 저하시켜, 저지대 침수 및 맨홀역류의 원인이 되고 있다. 또한 관로의 최소 유속이 유지되지 않으면 오염물이 침전되고, 관로내의 유하시간이 길어져 침전물 부패로 인한 황하물질 및 악취 등이 발생될 수 있다. 따라서 관로의 유사와 관련된 주된 연구는 관로내의 유사거동 특성을 규명하는 것이었다. 그러나 맨홀에서의 유사퇴적 및 배출 등과 관련된 연구는 매우 미흡한 실정이다. 본 연구에서 유입관과 유출관이 일직선상으로 연결된 중간맨홀을 대상으로 수리실험을 실시하고, 맨홀형태(사각형, 원형), 유사유입형태(연속주입, 일정기간주입), 유사유입량 및 맨홀내부 구조변화에 따른 맨홀내 유사퇴적량을 확인하였다. 또한 맨홀내에 퇴적된 유사를 완전히 배출할 수 있는 관거 유속을 측정하였다. 유사퇴적량을 확인한 결과 맨홀내부의 구조변화가 없는 기본형에서는 유사유입형태가 연속주입 또는 일정기간주입인지와는 관계없이 유입유사량이 증가하면 퇴적량 또한 증가하였고, 맨홀형태가 사각형 또는 원형인지와도 관계없이 맨홀내부의 유사퇴적량은 비슷하였다. 기본형과 비교하여 맨홀내부에 벤칭을 설치하였을 경우 유사퇴적량을 50 % 이상 저감시킬 수 있었다. 이러한 결과는 사각형과 원형맨홀에서 동일하였으며 유사유입형태가 연속적으로 유입되는지 또는 일정기간동안만 순간적으로 유입되는지와도 관계없이 동일하였다. 그러나 벤칭이 설치된 사각형 맨홀의 경우 맨홀내부에 퇴적된 유사를 완전히 배출시킬 수 있는 유입관거유속이 기본형과 비교하여 30 % 증가하는 것으로 나타났다. 그러나 원형맨홀에서는 벤칭을 설치함으로써 유사 완전배출을 위한 관거유속 또한 저감시킬 수 있었다. 본 연구에서 제안한 개선안의 경우 사각형, 원형, 연속주입, 일정기간주입 등의 조건과 관계없이 퇴적량을 50 % 이상 저감시킬 수 있었고, 유사 완전배출을 위한 관거유속 또한 기본형과 벤칭이 설치된 맨홀과 비교하여 50 % 이상 저감시킬 수 있음을 실험적으로 확인하였다. 원형 맨홀의 경우 완전배출 관거유속은 벤칭설치 시와 같았지만 완전배출까지의 소요시간은 본 연구의 개선안이 현저히 짧았다. 따라서 본 연구를 통해 제시안 맨홀내부 구조변화 개선안이 흐름개선과 함께 맨홀내부에 퇴적되는 유사량을 저감시킬 수 있는데 효과가 있다고 판단된다.

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Application of BMP for Reduction of Runoff and NPS Pollutions (강우유출수와 비점오염물질을 저감하기 위한 최적관리기법의 적용)

  • Won, Chul-Hee;Shin, Min-Hwan;Shin, Hyun-Jun;Lim, Kyoung-Jay;Choi, Joong-Dae
    • Journal of The Korean Society of Agricultural Engineers
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    • v.55 no.5
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    • pp.1-7
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    • 2013
  • The objective of this research was to experimentally test the effect of tillage methods on the reduction of runoff, non-point source (NPS) pollution load, sediment and discharge under a rainfall simulation. We used the runoff plots of $5m{\times}30m$ ($L{\times}W$) in size. Experimental treatments were conventional tillage (CT), CT-rice straw bundle (CT-RSB) and two no-till (NT) plots; slope of 3 % or 8 % ; and rainfall intensity of 30 mm/hr. The rainfall simulation was conducted to three times. The time to initial runoff from NT plots was less than that from CT plots regardless of the slope and it was delayed about 65~90 % compared to that of CT plot. And sediment discharge of 8 % slope reduced to 55 % compared to CT plot. But the sediment discharge was not occurred at 3 % slope. The NT and CT-RSB methods have a great possibility of reducing runoff and NPS pollution loads. Runoff rate of NT plots was significantly lower than those of CT plot. The average NPS pollution loads of the NT plots and CT-RSB plot reduced about 55~80 % and 2.1~40 % compared to those of the CT plots, respectively. It was also shown that runoff and NPS pollution loads reduction by NT method could be very significant and contribute to improve the water quality of streams in agricultural regions. It was concluded that the use of NT method on agricultural fields could reduce soil erosion and muddy runoff significantly and help improve the water quality and aquatic ecosystem.

Characteristics of Non-point Source Pollutants Runoff from Agricultural and Industrial Areas in Lake Sihwa Watershed (강우시 시화호 농촌 및 공단유역의 비점오염물질 유출특성)

  • Kim, Sea-won;Choi, Kwangsoon;Kim, Dong-sup;Lee, Mikyung
    • Journal of Korean Society on Water Environment
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    • v.25 no.5
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    • pp.768-777
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    • 2009
  • The characteristics of stormwater runoff was examined on distinct types of agricultural and industrial area in Lake Sihwa watershed. During rainfall event, the peak concentrations of SS, $COD_{Mn}$, and TP were observed after 6~11 hours of rainfall in agricultural areas. Whereas, the peak concentrations occurred within the first one hour after rainfall and then the highest concentration of NPS pollutants sharply decreased, showing strong first flush effect in industrial areas. The strong first flush effect of suspended solid was apparent in agricultural areas, while those of organic matters and nutrients were clear in industrial areas. The cumulative load curves for NPS pollutants showed above the $45^{\circ}$ straight line, indicating that first flush effect occurred in industrial areas. The mean SS EMC values of agricultural areas ranged from 60~598 mg/L (Avg. 285 mg/L), it was higher value when compare to other areas. While the mean $COD_{Mn}$, TN, and TP EMCs values of industrial areas were shown the highest values as 67.7 mg/L, 12.1 mg/L and 2.1 mg/L respectively.

Ocean Outfall과 폐수처리 공정의 비용분석을 이용한 수영만의 수질관리

  • Park, Hae-Sik;Park, Cheong-Gil;Lee, Seok-Mo
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 1997.10a
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    • pp.52-53
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    • 1997
  • 수역의 유기오염 개선을 위하여 생활하수, 산업폐수 등의 저하시키는데 주안점을 두어왔으나 공공수역에서의 제거되지 않은 질소와 인의 유입으로 부영양화가 진행되어 하천에는 남조류가 대량발생하고 해역에는 적조가 광역에서 발생하여 큰 사회문제가 되고 있고, 질소와 인의 유입으로 인한 자생 COD가 전체COD의 약 절반을 차지하고 있는 실정이다. 따라서 앞으로의 수질을 개선하기 위해서는 조류증식의 제한인자인 질소와 인의 규제가 필요할 뿐만아니라 하수처리장에 고차처리를 적용하거나, 해양의 회석자용을 이용한 Ocean을 적용하여 연안해역 수질을 관리해야 할 것이다. 따라서 본 연구는 수영만을 대상으로 Ocean Outfall과 폐수처리시절을 적절하게 조합하기 위해서 3차원 생태계모델을 적용하여 유기물질 뿐만 아니라 영양염류인 질소와 인의 농도를 예측하여 환경기준을 만족시키고 비용을 최소화 할 수 있는 폐수처리공법과 해중방류관의 위치를 선정하고자 하였다. 본 연구결과 수영만의 1994년 COD는 II등급, DIN과 DIP는 III등급이었다. 현재의 활성슬러지공법으로 질소와 인을 제거하지 않고 방류할 경우 2001년에 는 하수처리량의 증가로 인해 COD의 경우 1994년 보다 조금 감소하지만 DIN 과 DIP는 1994년과 같은 III등급을 유지하였다. 고도처리공법을 도입할 경우 COD의 농도는 광안리와 해운대해수욕장에서 I등급을 보이고, DIP의 농도도 수영만 전체에서 강등급을 보이지만, DM의 농도는 광안리해수욕장에서 II등급, 해운대해수욕장에서 IH등급을 보였다 하수처리장 유출수를 Ocean Outfall을 이용하여 하수처리장으로부터 4km에 서 방류할 경우의 COD농도는 I등급을 보이고, DE 농도도 광안리와 해운대해 수욕장에서는 I등급을 보이고, DU의 농도는 ll등급을 보여 수질이 개선된 것 을 볼 수 있다. 이상에서와 같이 광안리와 해운대해수욕장의 해역환경기준 ll등급을 만족 하는 하수처리방법은 Ocean Outfall이었다. 수영하수처리장에 인을 처리하기 위한 화학적 침전법의 경우 956억원이 소요되고, 질소를 제거하기 위한 질소제거공정을 추가 건설 할 경우는 2181억원이 전요된다. 그리고 두공정을 같이 건설할 경우에는 3137억원의 비용이 소요된다 수영하수처리장에서 4km 거리와 관경을 2m의 Ocean Outfall 건설비용은 325 억원 정도가 소요되는 것으로 산출되었다. 고차처리시 증가되는 비용으로 건설할 수 있는 Ocean Outfall의 길이는 인 제거공정을 첨가하는 경우에는 18km을 건설할 수 있고, 질소제거공정을 첨가 하는 경우에는 46km를 건설할 수 있는 것으로 산출되었다.

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