• Title/Summary/Keyword: 하수처리수 방류

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Biological Water Quality Assessments in Wastewater-impacted and Non-impacted Streams (폐수처리 시설의 영향에 따른 영산강 수계의 생물학적 수질 평가)

  • An, Kwang-Guk;Kim, Kang-Il;Kim, Ja-Hyun
    • Korean Journal of Ecology and Environment
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    • v.40 no.1
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    • pp.82-92
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    • 2007
  • In 2003, we evaluated biological water quality at twelve sites of Youngsan River using community analysis, fish compositions, and the Index of Biological Integrity (IBI). Of the twelve, four sites were the controls, which have no point sources in the upstream and the remaining eight sites were the impacted sites, which are influenced by wastewater treatment plant (WTP) and agro-industrial complex. Model values of the IBI, based on 12 sites data, averaged 28 (n=12, range: $18{\sim}44$), indicating fair poor condition according to the criteria of US EP A (1993). In the mean time, mean IBI in the control sites (S3, S5, S6, S11) was 42 (n=4, range: $38{\sim}44$), indicating a good condition, whereas mean IBI in the impacted sites was 21, indicating a poor condition. Mean IBI value in the control, thus, was greater by 2 fold than that in the WTP sites. The spatial pattern of IBI values was similar to the patterns of species diversity index and species richness index, except for Site 11, which was 1st order stream. Similarity analysis indicated that three groups were divided at the similarity level of 80%. One group was the streams influenced by wastewater and the other two groups were the pristine streams as the control, indicating that the stream health conditions are directly influenced by presence or absence of the point sources. Also, Pearson's correlation analysis showed that IBI values had negative correlation (r=0.899, p<0.001) with relative abundance of tolerance species, and had positive relation (r=0.890, p<0.001) with sensitive species. Overall, outcomes suggest that the point sources of the WTP might impact the species composition and ecological health, resulting in degradation of biological water quality.

A Study on Process Optimization for CSOs Application of Horizontal Flow Filtration Technology (수평흐름식 여과기술의 CSOs 적용을 위한 공정 최적화 연구)

  • Kim, Jae-Hak;Yang, Jeong-Ha;Lee, Young-Shin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.2
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    • pp.56-63
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    • 2018
  • The management of Combined Sewer Overflows(CSOs) and Separated Sewer Overflows(SSOs) discharge directly to the effluent system in an untreated state, which occurs when the facility capacity is exceeded due to heavy rain, has become an important issue in recent years as the heavy rain becomes a regular phenomenon. Despite the continuous development of filtration technology, targeting densely populated urban areas, CSOs are rarely applied. Therefore, this study was carried out to optimize the process to apply CSOs in a pilot-scale horizontal flow filtration system with a rope-type synthetic fiber. The research was carried out in two steps: a preliminary study using artificial samples and a field study using sewage. In the preliminary study using an artificial sample, head loss of the filter media itself was analyzed to be approximately 1.1cm, and the head loss was increased by approximately 0.1cm as the linear velocity was increased by 10m/hr. In addition, the SS removal efficiency was stable at 81.4%, the filtration duration was maintained for more than 6 hours, and the average recovery rate of 98% was obtained by air backwashing only. In the on-site evaluation using sewage, the filtration duration was approximately 2 hours and the average removal efficiency of 83.9% was obtained when belt screen (over 450 mesh) was applied as a pre-treatment process to prevent the premature clogging of filter media. To apply the filtration process to CSOs and SSOs, it was concluded that the combination with the pre-treatment process was important to reinforce the hydraulic dimension for the stable maintain of operation period, rather than efficiency. Compared to the dry season, the quality of incoming sewage was lower in the rainy season, which was attributed to the characteristics of the drainage area with higher sanitary sewerage. In addition, the difference in removal efficiency according to the influent quality of the wet season and dry season was small.

Thermal Effluent Effects of Domestic Sewage and Industrial Wastewater on the Water Quality of Three Small Streams (Eung, Chiljang and Buso) during the Winter Season, Korea (동계 저온기의 소하천 수질에 미치는 하·폐수의 온배수 영향)

  • Soon-Jin, Hwang;Jeon, Gyeonghye;Eum, Hyun Soo;Kim, Nan-Young;Shin, Jae-Ki
    • Korean Journal of Ecology and Environment
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    • v.50 no.2
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    • pp.238-253
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    • 2017
  • The sewage and wastewater (SAW) are a well-known major source of eutrophication and greentide in freshwaters and also a potential source of thermal pollution; however, there were few approaches to thermal effluent of SAW in Korea. This study was performed to understand the behavioral dynamics of the thermal effluents and their effects on the water quality of the connected streams during winter season, considering domestic sewage, industrial wastewater and hot spring wastewater from December 2015 to February 2016. Sampling stations were selected the upstream, the outlet of SAW, and the downstream in each connected stream, and the water temperature change was monitored toward the downstream from the discharging point of SAW. The temperature effect and its range of SAW on the stream were dependent not only on the effluent temperature and quantity but also on the local air temperature, water temperature and stream discharge. The SAW effects on the stream water temperature were observed with temperature increase by $2.1{\sim}5.8^{\circ}C$ in the range of 1.0 to 5.5 km downstream. Temperature effect was the greatest in the hot spring wastewater despite of small amount of effluent. The SAW was not only related to temperature but also to the increase of organic matter and nutrients in the connected stream. The industrial wastewater effluent was discharged with high concentration of nitrogen, while the hot spring wastewater was high in both phosphorus and nitrogen. The difference between these cases was due to with and without chemical T-P treatment in the industrial and the hot spring wastewater, respectively. The chlorophyll-a content of the attached algae was high at the outlet of SAW and the downstream reach, mostly in eutrophic level. These ecological results were presumably due to the high water temperature and phosphorus concentration in the stream brought by the thermal effluents of SAW. These results suggest that high temperature of the SAW needs to be emphasized when evaluating its effects on the stream water quality (water temperature, fertility) through a systematized spatial and temporal investigation.

Evaluation of the Effect of Agricultural Activity on Stream Water Quality by Watershed Modeling (유역모형을 이용한 농업활동이 수질에 미치는 영향평가)

  • Jung, KwangWook;Jung, Inkyun;Kang, SooMan;Kwon, Jinwook
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.510-510
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    • 2016
  • 농업 비점오염원의 영향을 분석하고 여러 가지 대안(관리정책)이 수계의 수질에 미치는 영향을 평가하기 위해서 유역모형의 적용이 필요하다. 이러한 유역모형에는 모형의 복합성, 계산시간 등에 따라 simple method, mid-range model, detail model로 나눌 수 있다. Simple methods는 요구되는 자료가 작으나 그 결과의 정확성은 떨어진다. 반면에 detail model는 정확한 결과를 획득할 수 있으나 그만큼 방대한 자료와 모니터링을 요구하며, 보정 및 검증에 많은 시간과 노력을 필요로 한다. 특히, 복잡한 유역특성 및 축산오염원을 포함한 복잡한 특성들을 고려해서 모델링하기 위해서는 detail model이 필요하며 본 연구에서는 HSPF모델을 이용해서 그 영향을 분석하고자 하였다. 따라서 본 연구에서는 농업에 미치는 영향을 평가하기 위해서 청미천 유역 및 덕천천 유역을 대상유역으로 선정하여 그 영향을 분석하였다. 농업에 미치는 영향을 평가하기 위해서 유역내 투입된 비료사용량을 통계청 자료를 활용하여 산정후 적용하였으며, 축산 부산물중 자원화되는 축산 액비 및 퇴비량을 산정하여 그 영향에 대해 분석하였다. 또한 기존에 광범위하게 활용되고 있는 수질오염총량관리제도에서 산정되는 배출부하량에 유달율을 고려하여 점오염으로 입력하였으며, 직접방류되는 하수처리장도 함게 고려하여 구축하였다. 청미천 유역의 청미천1 지점의 BOD, T-N, T-P에 대한 보정기간의 평균 관측값은 4.205mg/L, 3.844mg/L, 0.137mg/L이며 검정기간의 관측값은 2.741mg/L, 4.638mg/L, 0.144mg/L로 나타났다. BOD, T-N, T-P에 대한 보정기간의 NSE는 -0.58, -0.20, -0.33이며, 검정기간의 NSE는 -0.26, -1.35, -3.54로 분석되었다. BOD, T-N, T-P에 대한 보정기간의 RMSE는 2.65, 1.63, 0.12이며, 검정기간의 RMSE는 1.36, 1.64, 0.07로 나타났다. 덕천천 유역의 경우 국가관측망이 없어 동진강의 제일 말단 지점인 동진강3 지점의 BOD, T-N, T-P에 대한 보정기간 평균관측값은 2.891mg/L, 3.455mg/L, 0.096mg/L이며, 검정기간의 관측값은 2.293mg/L, 3.223mg/L, 0.104mg/L로 나타났다. BOD, T-N, T-P에 대한 보정기간의 NSE는 -0.20, -0.56, -0.49이며, 검정기간의 NSE는 0.24, -0.06, -0.19으로 분석되었다. BOD, T-N, T-P에 대한 보정기간의 RMSE는 1.53, 2.12, 0.05이며, 검정기간의 RMSE는 1.05, 0.98, 0.06으로 나타났다. 본 연구의 분석결과는 점오염원, 축산계비점오염, 토지계비점오염, 시비량, 배경부하로 구분하여 분석을 실시하였으며 분석결과 청미천 유역의 비점오염 기여율이 약 65%를 차지하고 있는 것으로 평가되었으며, 덕천천 말단에서는 약 37.7%의 비점오염물질이 하천수질에 영향을 미치는 것으로 나타났다. 또한, 기존 수질오염 총량관리제도에서 점오염의 감소에 의한 비점오염비중이 커지는 것으로 평가되었으며, 그 중 축산이 차지하는 비중이 상대적으로 높은 것으로 평가되고 있지만, 본 연구의 결과에서는 그보다 적은 수준이 수계에 영향을 미치는 것으로 분석되었다.

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Monitoring of Bisphenol A and Nonylphenol in Waterworks System of Seoul, Korea (상수도 계통에서 비스페놀 A와 노닐페놀의 실태조사)

  • Ham, Young-Kook;Oh, Sea-Jong;Kim, Sung-Whan
    • Analytical Science and Technology
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    • v.17 no.5
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    • pp.423-433
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    • 2004
  • This study was examined occurrence of bisphenol A (BPA) and nonylphenol (NP) in waterworks system of Seoul, Korea from September 2002 to December 2003. The levels of BPA and NP in Han-river and its tributaries were as followed: Paldang-dam, ND(not detected)${\sim}0.033{\mu}g/L$ and $ND{\sim}0.823{\mu}g/L$; Kyungahn-creek, $ND{\sim}0.659{\mu}g/L$ and $ND{\sim}3.827{\mu}g/L$; Whangsuk-creek, $ND{\sim}0.528{\mu}g/L$ and $ND{\sim}12.724{\mu}g/L$, respectively. In water of 6 intake-station, the contents of NP and BPA were detected $0.122{\sim}2.724{\mu}g/L$, and $ND{\sim}0.260{\mu}g/L$, respectively. In the finished- and tap-water of three drinking water treatment plants (DWTPs) around Whangsuk-creek, BPA was not detected in all samples, while NP was in ppt levels in whole. Through the process of DWTP, also, the removal ratio of NP was above 80% in all this. Therefore, this result was suggested that levels of BPA and NP in waterworks system depended on non-point contaminants and swage treatment plants in the Han-river shed.

Physicochemical Composition and Heavy Metal Contents on the Sediment of Kwangyang Bay (광양만의 퇴적물에 대한 이화학적 조성 및 중금속 함량)

  • Park, Jong-Chun;Kim, Jin;Lee, Woo-Bum;Lee, Sung-Woo;Joo, Hyun-Soo
    • Korean Journal of Ecology and Environment
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    • v.33 no.1 s.89
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    • pp.31-37
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    • 2000
  • For the purpose of surveying the physicochemical composition of sediment collected from Kwangyang Bay, the percentage of water loss, COD, $H_2S$, grain size and 10 heavy metals were studied at 17 sites. During the surveying period, the changes of the percentage of water loss were appeared $35.5\;{\sim}\;53.8%$. COD and $H_2S$ were showed $3.8\l{\sim}\;12.9\;mg/g$, and $0.1\;{\sim}11.4\;{\mu}g/g$, respectively, In composition of grain size on the sediment, percentages of grain sizes under $74\;{\mu}m$ were varied from 40.5% to 86.7% and above $74\;{\mu}m$ were varied from 11.5% to 43.0%. From the spatial distribution of heavy metal using contour map, we can suppose some heavy metal discharges which affect sediment of Kwangyang Bay, It was estimated that Shinpung creek, Ssang-bong creek, and draining area of sewange treatment plant were the main discharge among the heavy metal output sources. By comparison between present study and heavy metal guideline of nonpolluted sea sediment that is provided by EPA, US, it was showed that the contents of Pb and Hg were acceptable but contents of Mn, Zn, Cu, Fe, As, and Cr were higher than those of EPA guideline.

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A Study on Long-term Variations of BOD and COD as Indicators of Organic Matter Pollution in the Han River (한강 본류에서 유기물 오염도 지표인 BOD와 COD에 대한 장기변동 특성)

  • Cho, Hyun-Seok;Kim, Kwang-Rae;Lim, Gyu-Chul;Bae, Kyung-Seok;Lee, Min-Hwan
    • Korean Journal of Ecology and Environment
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    • v.45 no.4
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    • pp.474-481
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    • 2012
  • This study was performed to investigate the degree of long-term pollution at the mainstream of the Han River by comparing the concentration of BOD and COD from 1975 to 2011. The long-term annual average BOD and COD concentration at the mainstream of the Han River showed an increasing trend as it flowed downstream from Paldang Dam to Gayang. The concentration of BOD ($r^2$=0.646) and COD ($r^2$=0.260) showed a consistent decreasing trend for 37 years. In the case of Paldang Dam, BOD has maintained a decreasing trend, whereas the COD value showed an increasing trend after the 1990s. Therefore, a control of non-biodegradable materials in areas around Paldang Dam is required. The result of the seasonal variations of BOD and COD is as follows: spring>winter>summer and fall (p<0.001). The time series analysis revealed a strong correlation for every 12-month period. Also, the amount of water discharge at Paldang Dam has to be systematically controlled because the amount of water discharge from the dam influences the water quality at the mainstream of the Han River.

Development of Strategies to Improve Water Quality of the Yeongsan River in Connection with Adaptation to Climate Change (기후변화의 적응과 연계한 영산강 수질개선대책 개발)

  • Yong Woon Lee;Won Mo Yang;Gwang Duck Song;Yong Uk Ryu;Hak Young Lee
    • Korean Journal of Ecology and Environment
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    • v.56 no.3
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    • pp.187-195
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    • 2023
  • Almost all of the water from agricultural dams located to the upper of the Yeongsan river is supplied as irrigation water for farmland and thus is not discharged to the main stream of the river. Also, most of the irrigation water does not return to the river after use, adding to the lack of flow in the main stream. As a result, the water quality and aquatic health of the river have become the poorest among the four major rivers in Korea. Therefore, in this study, several strategies for water quality improvement of the river were developed considering pollution reduction and flow rate increase, and their effect analysis was performed using a water quality model. The results of this study showed that the target water quality of the Yeongsan river could be achieved if flow increase strategies (FISs) are intensively pursued in parallel with pollution reduction. The reason is because the water quality of the river has been steadily improved through pollution reduction but this method is now nearing the limit. In addition, rainfall-related FISs such as dam construction and water distribution adjustment may be less effective or lost if a megadrought continues due to climate change and then rainfall does not occur for a long time. Therefore, in the future, if the application conditions for the FISs are similar, the seawater desalination facility, which is independent of rainfall, should be considered as the priority installation target among the FISs. The reason is that seawater desalination facilities can replace the water supply function of dams, which are difficult to newly build in Korea, and can be useful as a climate change adaptation facility by preventing water-related disasters in the event of a long-term megadrought.

Introduction of Kjeldahl Digestion Method for Nitrogen Stable Isotope Analysis (δ15N-NO3 and δ15NNH4) and Case Study for Tracing Nitrogen Source (Kjeldahl 증류법을 활용한 질산성-질소 및 암모니아성-질소 안정동위원소비 분석 및 질소오염원 추적 사례 연구)

  • Kim, Min-Seob;Park, Tae-Jin;Yoon, Suk-Hee;Lim, Bo-La;Shin, Kyung-Hoon;Kwon, Oh-Sang;Lee, Won-Seok
    • Korean Journal of Ecology and Environment
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    • v.48 no.3
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    • pp.147-152
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    • 2015
  • Nitrogen (N) loading from domestic, agricultural and industrial sources can lead to excessive growth of macrophytes or phytoplankton in aquatic environment. Many studies have used nitrogen stable isotope ratios to identify anthropogenic nitrogen in aquatic systems as a useful method for studying nitrogen cycle. In this study to evaluate the precision and accuracy of Kjeldahl processes, two reference materials (IAEA-NO-3, N-1) were analyzed repeatedly. Measured the ${\delta}^{15}N-NO_3$ and ${\delta}^{15}N-NH_4$ values of IAEA-NO-3 and IAEA-N-1 were $4.7{\pm}0.2$‰ and $0.4{\pm}0.3$‰, respectively, which are within recommended values of analytical uncertainties. Also, we investigated spatial patterns of ${\delta}^{15}N-NO_3$ and ${\delta}^{15}N-NH_4$ in effluent plumes from a waste water treatment plant in Han River, Korea. ${\delta}^{15}N-NO_3$ and ${\delta}^{15}N-NH_4$ values are enriched at downstream areas of water treatment plant suggesting that dissolved nitrogen in effluent plumes should be one of the main N sources in those areas. The current study clarifies the reliability of Kjeldahl analytical method and the usefulness of stable isotopic techniques to trace the contamination source of dissolved nitrogen such as nitrate and ammonia.