• Title/Summary/Keyword: 하수처리방류수

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Effect of major pollution sources on algal blooms in the Seungchon weir and Juksan weir in the Yeongsan River using EFDC (EFDC를 이용한 영산강 주요 오염 부하 저감에 따른 승촌보 및 죽산보 녹조 현상 개선 효과 분석)

  • Kim, Jinsoo;Kim, Jaeyoung;Seo, Dongil
    • Journal of Korea Water Resources Association
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    • v.53 no.5
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    • pp.369-381
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    • 2020
  • In this paper, observed water quality, algal blooms and flow rates in the Yeongsan River and its boundaries including 8 tributaries and 2 wastewater treatment plants for two years of 2018-2019 were analyzed. It seems effects of non-point source load inputs from basin areas to the river may be significant though the field data availability was limited. The EFDC model was calibrated against data collected from 6 water level monitoring stations and 6 water quality monitoring stations, respectively, in the study area. Water quality improvement scenarios were developed assuming 50% and 75% reductions of major pollution sources including treatment plants and tributaries. The developed scenarios were applied to the EFDC model to estimate effects on algal bloom occurrences in the Seungchon weir and Juksan weir. Improvement of the effluent of Gwangju 1 WWTP by 75% did not show any effect on algal blooms for two weir locations. The major tributary affecting algal blooms in the Seungchon weir was the Hwangryong River. The Jisuk stream was found as the most important tributary for the Juksan weir followed by the effect of the Hwangryong River. Though it seems other scattered small nonpoint source load input to the Yeongsan river also seem to be important, it was not possible to reflect their effects appropriately due to field data availability.

Characteristics of TOC in effluent discharge from public sewage treatment works in korea (우리나라 공공하수처리시설의 TOC 배출특성 및 관리방안 연구)

  • Jeong, Dong-Hwan;Choi, In-Cheol;Cho, Yangseok;Ahn, Kyunghee;Chung, Hyen-Mi;Kwon, Ohsang;Park, Hoowon;Shin, Hyunsang;Hur, Jin
    • Journal of Korean Society of Water and Wastewater
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    • v.28 no.6
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    • pp.657-668
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    • 2014
  • Under Korea's Enforcement Decree of the Framework Act on Environmental Policy amended in 2013, total organic carbon (TOC) is newly added as water quality parameter to assess organic pollution in water and aquatic ecosystem. To meet the TOC requirement and improve quality of effluent discharged into public watershed, it is also necessary to develop standards for TOC in effluent from public sewage treatment works (PSTWs). In this study, we reviewed the characteristics and removal efficiency of TOC in influent and effluent of PSTWs. The study found that phosphorus treatment process removed not only soluble phosphorus but also a portion of TOC remaining after the secondary treatment process. TOC concentration in effluent from PSTWs operated in tandem with industrial wastewater treatment work was higher due to influx of insoluble substances from the industrial wastewater treatment work. In order to lay a foundation for the management of TOC from PSTWs, it is necessary to carry out research on TOC from different perspectives. For example, studies on the generation mechanism of TOC and the impact of TOC on drinking water resources, assessment of effluent qualities through monitoring, and development of measures to control TOC for the preservation of aquatic ecosystem are needed.

Types of Extended-Spectrum β-Lactamase Produced in Enteric Bacteria Isolated from Sewage Plant Drain Water (하수처리수에서 분리된 장내세균의 광범위 베타락탐분해효소의 유형)

  • Kim, Gun-Do;Lee, Hun-Ku
    • Journal of Life Science
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    • v.20 no.5
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    • pp.676-682
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    • 2010
  • This study focused on typing of the extended-spectrum $\beta$-lactamase (ESBL) produced in organisms isolated from a natural environment, rather than a clinical setting. Samples were collected from drain water issuing from a sewage plant in Kwanganri (Busan, Korea). Following double disk synergy testing, 29 strains were selected as potential ESBL positive strains. Of these, 15 strains were transconjugants of the sodium azide resistant recipient strain Escherichia coli J53 and analyzed biochemically including indole, methyl-red, Voges-Proskauer, Simmon's citrate, decarboxylase-dihydrolase and sugar-fermentation tests. The tests classified the 15 strains as Klebsiella pneumoniae (n=13) and Escherichia coli (n=2). The type of ESBL from each strain was deduced by isoelectric focusing point analysis and DNA sequencing. The results indicated that the types of ESBL were SHV-12 (n=4) and SHV-12/TEM-1 (n=9) from K. pneumoniae and TEM-1 (n=2) from E. coli strains.

Monitoring of Micro Noxious Chemicals Caused by Fiber and Chemistry Industrial Wastewater on the Nakdong River Water System (낙동강 수계의 섬유 및 화학 산업폐수로부터 발생하는 미량유해화학물질의 모니터링)

  • Kim Man-Il;Kang Mee-A
    • The Journal of Engineering Geology
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    • v.16 no.2 s.48
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    • pp.145-152
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    • 2006
  • Industry development caused numerical and quantitative increase of noxious chemical substances that contain risk assessment in water resources. For use of efficient water resources a pre-treatment of contaminant source which is flowed in water resources is recognized in essential process. Therefore, the discharged water quality from discharged company began to control contaminant by total amount of pollutant in domestic. However, to estimate closely chemical substances it is not proved up to now, monitoring is very important. This study achieved a monitoring of micro noxious chemical substance by fiber and chemistry industrial wastewater inflow to examine risk assessment of the water system of Nakdong river. Chloroform was measured highest among volatile organic compounds (VOCs) that the results of water quality of influent and effluent are detected from 7 companies of study area. The other side, because measured value of detected chloroform is indefinite detection level in the same company, it is difficulty in management of water quality. However it may not be much effects of the water system of Nakdong river because these company's effluent is high treatment efficiency of chloroform (more than 88%) in sewage treatment plant. On the other hand, in the investigated results for the European Union specified priority substance that is detected to relationship influent and effluent from fiber/chemistry associated industries, these substances were not detected and domestic data was hardly referred. Therefore, data construction of continuous monitoring about this water quality may have to be achieved certainly to utilize as country policy.

Effect of Hydrogen Peroxide on UV Treatment of Color in Secondary Effluent for Reclamation (물 재이용을 위한 하수처리장 방류수 색도의 자외선처리에 미치는 과산화수소의 영향)

  • Park, Ki-Young;Maeng, Sung-Kyu;Kim, Ki-Pal;Lee, Seock-Heon;Kweon, Ji-Hyang;Ahn, Kyu-Hong
    • Journal of Korean Society of Water and Wastewater
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    • v.18 no.3
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    • pp.377-384
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    • 2004
  • In the present study, a feasibility of an advanced oxidation process using UV/Hydrogen peroxide($H_2O_2$) system equipped with a medium pressure lamp for secondary effluent reclamation was investigated. Initial concentration of $H_2O_2$ and pH were changed to determine the optimum operation condition for the system. The removal efficiency of color was than 80% with 14.3mg/L of initial $H_2O_2$ and 5 minute of contact time in the UV/$H_2O_2$ system. The color removal was analyzed using first-order reaction equation. The dependence of rate constant (k) on initial $H_2O_2$ represented the rational relationship with maximum value. Residual $H_2O_2$ caused increase of effluent COD, since analyzing agent, dichromate, reacted with $H_2O_2$ in the sample. Therefore, excess initial concentration of $H_2O_2$ would significantly affect effluent COD measurement. At pH variation experiment, both residual $H_2O_2$ and color showed peak in the neutral pH range with the same pattern. Effect of $H_2O_2$ dose also enhanced color removal but raised residual $H_2O_2$ problem in the continuous operation UV system. In conclusion, these results indicated that medium pressure UV/$H_2O_2$ system could be used to control color in the secondary effluent for reclamation and reuse.

Evaluation of Korean Water Quality Standards in Winter by Characteristics and Statistical Analyses of the Effluent Water Quality at the Sewage Treatment Plants in Korea (우리나라 공공하수처리시설의 방류수 수질현황 분석을 통한 겨울철 방류수수질기준의 적정성 평가)

  • Um, Chul Yong;Chu, Kyoung Hoon;Yun, Zu Whan;Choi, Ik Hoon;Park, Jae Young;Lee, Han Saem;Ko, Kwang Baik
    • Journal of Korean Society on Water Environment
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    • v.27 no.4
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    • pp.523-532
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    • 2011
  • In this study, from 2004 to 2008 influents and discharging effluents from 241 municipal public sewage treatment plants were surveyed. Statistics including average, Coefficient of Variation (CV) and Coefficient of Reliability (COR) for each season, time series analysis for removal efficiency and water quality of effluents, and a comparison of the effluent standards in Korea and other countries were presented. The average concentrations of TN and TP in influents. during winter season were 32.6 and 3.78 mg/L and during other season were 30.8 and 3.61 mg/L in 2008, respectively. The average TN concentration on the basis of the maximum monthly concentrations in the effluents during winter season ranged from 14.2~17.4 mg/L and during other season ranged from 12.2~14.8 mg/L. The TP concentration in the effluents depending on the each season was no big difference. TN removal efficiency decreased from Jan. to Feb. and TP removal efficiency decreased in Jan., Jun and July. Maximum COR during winter season were 0.61 but the COR for TN and TP during other season ranged from 0.96~1.48 and 1.09~1.81, respectively, due to big difference in the standard for TN and TP in effluents depending on the season. TN and TP standards for effluent of sewage treatment during winter season in Korea was much higher than those in other countries. Therefore the lower effluent standards during winter season is essential for the water quality improvement.

Hybrid artificial recharge for securing safe water resources (안전한 수자원 확보를 위한 Hybrid 인공함양 기법의 적용)

  • Bang, Woo-Hyuck;Yeom, Hyun;Maeng, Sung Kyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.286-286
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    • 2020
  • 인공함양은 대수층함양관리 중 하나의 기법이며 하수처리장 방류수의 영향을 직·간접적으로 받은 물을 지하대수층에 함양하여 수질의 향상을 기대할 수 있다. 그러나 방류수의 영향으로 인해 다수의 미량유해물질들이 대수층으로 유입됨에 따라 함양 후 회수할 때 이들의 검출이 빈번해졌다. 이에 따라 이 미량유해물질의 제거를 위해 인공함양의 후속 공정으로 나노막 여과를 고려하여 인공함양과 나노막 공정을 통하여 미량유해물질의 거동을 파악하고자 하였다. 본 연구에서는 인공함양 지하저수지 모사 컬럼을 설계하여 실험하였다. 서울특별시 탄천 하류에서 샘플링한 물을 원수로 사용하였으며 인공함양에 앞서 염소, 과망간산염, 오존의 3종류 산화 전처리를 통하여 그 영향을 확인하고자 하였다. 함양기간은 2.5일이었으며 함양 후 나노막 장치를 통하여 최종 유출수를 획득하였다. 인공함양 결과 용존유기물은 45%~63% 수준에서 제거가 되어 인공함양시 용존유기물의 제거가 가능함을 확인하였다. 산화 전처리에 따른 동화가능유기탄소의 증가로 인하여 생분해가 주요 기작인 인공함양 처리를 통하여 동화가능유기탄소의 제거율이 유기용존탄소의 제거율에 직접적으로 영향을 주었음을 알 수 있었다. 미량유해물질로 알려진 과불화화합물의 경우 산화 전처리에 따른 제거는 관찰되지 않았으며 잔류의약물질의 경우 대상 물질의 물리·화학적 특성에 따라 산화시 제거가 가능함을 확인하였다. Iopromide와 같은 조영제의 경우 오존 산화를 통하여 98% 이상 제거되어 산화를 통한 제거가 가능함을 확인하였다. 인공함양시 과불화화합물은 분자량이 큰 PFNA, PFDA, PFOS 등이 제거되었으며 그 제거율은 각각 최대 >99%까지 도달하였다. 분자량이 작은 과불화화합물의 경우 인공함양을 통과하는 경향을 보였다. 잔류의약물질의 경우 생분해가 용이한 물질은 제거가 됨을 확인하였으며 carbamazepine 등 제거가 안 되는 물질은 제거율이 18% 미만으로 확인하였다. 나노막 여과 결과 과불화화합물이 최대 >99%까지 제거됨을 확인하였으며 미량유해물질의 경우에도 대부분의 물질이 제거됨을 확인하였다.

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Evaluation of Sewage Treatment Plant Efficiency in the Variation of Sewage Inflow and Sludge Interface Height by Rainfall (강우로 인한 유입하수량 증가와 슬러지 계면높이 변화에 따른 하수처리장 효율평가)

  • Park, Hye-Sook;Song, Seok Heon
    • Journal of Korean Society of Environmental Engineers
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    • v.36 no.8
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    • pp.549-553
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    • 2014
  • Variation of sewage sludge interface height and flow rate by rainfall were applied to the actual public sewage treatment plant, and the efficiency of sewage treatment was evaluated by measuring $BOD_5$, $COD_{Mn}$, SS, T-N, and T-P. When both flow and interfacial height are increased, the treatment efficiencies in terms of the five water pollutants are decreased. Among them SS is the most critical pollutant in rainfall. When 0.5 Q inflow was applied, the efficiencies were 74.2% at the sludge interface height of 0.5 m, 76.4% at 1.0 m, 70.2% at 1.5 m, and 60.7% at 2.0 m. When 1.0 Q inflow was applied, the efficiencies were 71.7% at the sludge interface height of 0.5 m, 71.9% at 1.0 m, 46.4% at 1.5 m, and -38.0% at 2.0 m. Operation at 2.0 Q~2.0 m and 3.0 Q~1.0 m above the sludge rising phenomenon occurred causing adverse effects on the public bodies. If the flow rate increases, the processing efficiency is reduced from 74.2% to 17.3%, even though the sludge interface height was maintained at 0.5 m, so that the inflow adjustment was most important during rainfall, and the interface height of 1.0 m should be maintained to minimize the adverse effect on public water system.

The Application of the Sewage, Sanitary Sewage and Wastewater Processing by Soil Purification Theory (토양정화법을 이용한 하.오수 및 폐수 처리의 현장적용성에 관한 연구)

  • Chun, Byungsik;Yoo, Junhee;Kim, Jungyong;Kumar, S;Shin, Sanguok;Shin, Bangwoong
    • Journal of the Korean GEO-environmental Society
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    • v.9 no.4
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    • pp.77-84
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    • 2008
  • Soil purification theory is the method using the soil micro-organism like aerobic and anaerobic for treatment of wastewater. The soil has many kinds of micro-organism and it multiply as change of the environment. Unlikely other methods, the soil purification theory is adaptable to inflow water change; moreover, it can process the T-N, T-P without any special method and management. The top is covered with the improved soil which can remove the bad smell and is used for resting place according to planting the lawn. This study is focused on analysis of the treatment processing of wastewater comparing inflow with outflow water. As a results, removal rate of the processing the BOD, COD and SS is almost 90~100% and it is 60~80% in T-N, T-P.

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Technology to Remove Trace Pollutants in Sewage Treatment Water Using Jellyfish Characteristics (해파리의 특성을 활용한 하수처리장 처리수 내 미량오염물질 제거 기술)

  • Hyeok Jin Park;Eun Jin Kim;Kyung Sil Choo;Joo Eun Shim;Min-Kyeong Yeo
    • Applied Chemistry for Engineering
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    • v.35 no.1
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    • pp.54-60
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    • 2024
  • The present study was aimed to evaluate the removal of the trace pollutants (heavy metals and microplastics) in the sewage treatment plant by using the jellyfish Extract at Immunity reaction (JEI) of Aurelia coerulea. The experiment was conducted on two different scales: the lab scale using a Jar-tester and the Pilot system scale equipped with two newly developed devices in the laboratory, the active tube connection mixed system and the concentration integrated separation device. Compared to anionic polymers currently used in the field, JEI showed similar or higher efficiency to remove the trace pollutants. When JEI was added to the effluent through the Pilot system, the combination of JEI and the trace pollutants was maximized through two mixing processes, and as a result, the removal rate of the trace pollutants was greatly improved. Based on these results, we propose the present technology as an alternative to removing trace pollutants that can reduce ecosystem risk and minimize the generation of inorganic waste, away from the existing method.