• 제목/요약/키워드: Wastewater Treatment System

검색결과 999건 처리시간 0.022초

지진발생 대응을 위한 상하수도시설 관리 및 기술 현황에 대한 고찰 (A review on recent advances in water and wastewater treatment facilities management for earthquake disaster response)

  • 박정수;최준석;김극태;윤영한;박재형
    • 상하수도학회지
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    • 제34권1호
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    • pp.9-21
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    • 2020
  • The proper operation and safety management of water and wastewater treatment systems are essential for providing stable water service to the public. However, various natural disasters including floods, large storms, volcano eruptions and earthquakes threaten public water services by causing serious damage to water and wastewater treatment plants and pipeline systems. Korea is known as a country that is relatively safe from earthquakes, but the recent increase in the frequency of earthquakes has increased the need for a proper earthquake management system. Interest in research and the establishment of legal regulations has increased, especially since the large earthquake in Gyeongju in 2016. Currently, earthquakes in Korea are managed by legal regulations and guidelines integrated with other disasters such as floods and large storms. The legal system has long been controlled and relatively well managed, but technical research has made limited progress since it was considered in the past that Korea is safe from earthquake damage. Various technologies, including seismic design and earthquake forecasting, are required to minimize possible damages from earthquakes, so proper research is essential. This paper reviews the current state of technology development and legal management systems to prevent damages and restore water and wastewater treatment systems after earthquakes in Korea and other countries. High technologies such as unmanned aerial vehicles, wireless networks and real-time monitoring systems are already being applied to water and wastewater treatment processes, and to further establish the optimal system for earthquake response in water and wastewater treatment facilities, continuous research in connection with the Fourth Industrial Revolution, including information and communications technologies, is essential.

하구환경의 생태적 설계 (Ecological Design of Estuarine Environment)

  • 양홍모
    • 한국조경학회지
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    • 제23권2호
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    • pp.167-181
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    • 1995
  • An Ecocomplex is proposed for ecological design of the estuarine environment of Han River, which is designed upon an alternative mamagement concept of estuarine environment. The concept reveals interrelationships among estuary, delta region and urban inland with inputs/outputs and feedbacks among them. The Ecocomplex emphasizes an integration of wastewater treatment with aquaculture, agriculture and recreation, and carries out ecological treatment, recycling, and harvest processes. A module of wastewater treatment pond system is employed in the Ecocomplex, which treats a flow of 3,786 ㎥/day and is composed of a four-facultative-pond series. Treatment ponds stabilize wastewater discharged from the urban area, and concurrently produce algae for commercial or recreational fish farming. Effluent from treatment and fish ponds is reused for agricultural production. Through the waste-algae-fish-vegetable-recreation processes, wastewater from the urban settlement is recycled back to the urban ecosystem. This resource-conserving design approach can maintain a sustainable urban ecosystem, managing an estuarine environment more naturally, healthly, and economically.

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다양한 고도폐수처리공정에서의 생물반응조 세균수와 처리효율과의 비교 (Comparison of Bacterial Numbers and Treatment Efficiencies in Bioreactors of Various Advanced Wastewater Treatment Processes)

  • 성기문;조연제;김성균;박은원;유기환;이상현;이동근;박성주
    • 한국물환경학회지
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    • 제25권2호
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    • pp.329-334
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    • 2009
  • Bacterial numbers, such as endospore-formers, and treatment efficiencies were investigated for Rotating Activated Bacillus Contactors (RABC) and other advanced wastewater treatment processes including anaerobic-anoxic-oxic (A2O), sequencing batch reactor (SBR) and biological aerated filter (BAF). Endospore-forming bacterial numbers in the RABC showed 129-fold higher levels than those of the existing advanced systems. RABC process demonstrated the highest bacterial numbers in its bioreactors (paired t-test, p<0.01). RBC biofilms and aeration tanks of the RABC system showed 131- and 476-fold higher than other existing advanced processes, respectively. Mean treatment efficiencies of the existing systems were 83.5% for chemical oxygen demand (COD), 59.1% for total nitrogen (TN) and 76.8% for total phosphorus (TP). However, RABC process removed 96.9% for COD, 96.9% for TN and 91.9% for TP for highly concentrated food wastewater (COD>1,500 mg/L, TN>150 mg/L, TP>50 mg/L). Treatment efficiency was significantly reduced when the numbers of Bacillus genus in the bioreactors decreased below $10^6CFU/mL$. The automated RABC (A-RABC), in which dissolved oxygen concentrations are automatically controlled, showed higher treatment efficiencies compared to the RABC process. The RABC system maintained sufficient bacterial numbers for the effective treatment of highly concentrated food wastewater. Moreover, final effluent was in agreement to water quality standards.

고농도 오존을 적용한 DOF와 PO2 시스템의 축산폐수처리 (Livestock Wastewater Treatment Using the DOF and PO2 System with High Concentration of Ozone)

  • 이병호;김성혁
    • 대한환경공학회지
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    • 제27권11호
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    • pp.1162-1167
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    • 2005
  • 축산폐수는 고농도의 난분해성 유기물질을 많이 함유하고 있기 때문에 처리하기가 매우 어려운 것으로 알려져 있다. 따라서 본 연구에서는 현장에 건설된 오존을 이용한 시스템인 DOF(Dissolved Ozone Flotation)와 PO2(Pressurized Ozone Oxidation)에 의한 축산폐수의 처리특성을 조사하였다. DOF-PO2의 유입수내에 존재하는 SS의 제거율은 94%를 상회하여 약 400 mg/L의 농도를 22 mg/L까지 낮출 수 있었다. $COD_{Mn}$의 제거율도 90%정도로 620 mg/L로 유입되어 63 mg/L로 유출되었다. $SCOD_{Cr}$은 890 mg/L 정도가 유입되었으며 82%가 제거되어 160 mg/L 정도로 유출되었다. UV-254흡광도는 96%제거 되었다. 특히 TP의 제거율은 98%가 넘었고 27 mg/L가 유입되어 0.35 mg/L만이 유출되었다. TN도 SS의 제거와 함께 68%정도 제거되었으나 오존에 의한 제거효과는 없었다. DOF-PO2시스템에 의한 고농도 오존산화공정을 미생물처리공정과 같이 적용할 경우 축산폐수처리공정의 방류수 수질기준을 맞출 수 있었다.

지속가능한 도시기반시설 건설을 위한 잠재적 환경영향 발생 특성 평가 - 하수처리시설, 하수관거, 방수로를 중심으로 - (The Environmental Impact Assessment for Sustainable Urban Infrastructure Construction - A Case Study on Wastewater Treatment Plant, Sewerage System and Tailrace -)

  • 박광호;김창희;황용우
    • 상하수도학회지
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    • 제20권6호
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    • pp.919-926
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    • 2006
  • In this study, environmental impact assessments of wastewater treatment plant (WWTP), sewerage system, and tailrace were performed using LCA methodology. The life cycle stages were divided into 3 categories; construction stage, maintenance stage and demolition & disposal stage. As a tool of impact assessment, Ecoindicator99 containing fate analysis, exposure & effect analysis and damage analysis, was used. As tile results of WWTP LCA, more than 80% of environmental impact was produced from maintenance stage. On the other hand, most of environmental impact was produced from construction stage in the case of tailrace and sewerage system construction.

침지형 분리막 여과공정에서 운전조건에 따른 임계플럭스에 대한 연구 (Effects of Operation Parameters on Critical Flux During Submerged-Type Membrane Filtration System)

  • 김준성;안규홍
    • 상하수도학회지
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    • 제16권6호
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    • pp.717-725
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    • 2002
  • A bench-scale submerged-type membrane filtration system (SMFS) was constructed to study a feasibility of membrane filtration for solid-liquid separation in water and wastewater treatment processes. In the case of applying the SMFS to a biological wastewater treatment process, so-called membrane bioreactor, aeration underneath membrane modules is usually employed in order to provide oxygen demand for microbial growth as well as to control membrane fouling. A study was investigated the effects of operation parameters by aeration intensity, feed concentration, foulant type and airlift pore size on critical flux. Critical flux tends to increase with aeration rate. Optimal aeration flow rate was found to be 10 L/min/module. Feed concentration and foulant type has a significant effect on membrane fouling and filtration performance. But downward position and pore size of airlift has no a significant effects on membrane fouling and filtration performance.

가정하수를 cosubstrate로서 사용한 하수-염색폐수-공장폐수의 합병 고도처리 pilot plant 연구 (Pilot Study on the Advanced Treatment of Combined Wastewater with Sewage as a Cosubstrate)

  • 김미경;서상준;류덕희;정동일
    • 한국물환경학회지
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    • 제25권2호
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    • pp.227-234
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    • 2009
  • In this research, a retrofitting process, which consists of a pretreatment system (coagulation) for dye wastewater combined with a biological nutrient system (MLE process using media), for a sewage treatment plant that has to treat dye wastewater efficiently with domestic wastewater were developed and a pilot plant was operated for verifying adoptability and performance of the developed advanced process for dye wastewater. From the results of the pilot plant operation, BOD 52.9%, $COD_{Cr}$ 55.9%, and color 71.3% were removed in pretreatment of coagulation process and the biodegradability of dye wastewater was improved to $0.32{\sim}0.59BOD/COD_{Cr}$ of the coagulated wastewater from $0.29{\sim}0.43BOD/COD_{Cr}$ of the raw dye wastewater. The final effluent concentrations were BOD of 8 mg/L, $COD_{Cr}$ of 43 mg/L, $COD_{Mn}$ of 18 mg/L, T-N of 8 mg/L, and T-P of 1.3 mg/L, respectively. Color was removed from 1655 to 468 unit by coagulation and then to 123 unit by MLE process. The HPLC analysis of aromatic amines in wastewater showed that decolorization was achieved by cometabolism while aromatic amines were produced by cleavage of azo bonds under anaerobic conditions and these products were removed in an aerobic tank subsequently. Nitrification rates of attached and suspended microorganisms were evaluated comparatively and the acclimating conditions of bacteria on media were validated by the scanning electron microscope.

DOF(Dissolved Ozone Flotation)를 이용한 부유물질과 총인의 제거와 소득의 동시효과에 관한 연구 (Disinfection and Removal of SS and T-P Using DOF (Dissolved Ozone Flotation))

  • 이병호;김성혁;이상배;김미정
    • 상하수도학회지
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    • 제18권2호
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    • pp.215-221
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    • 2004
  • Effluent of wastewater treatment plant is to be disinfected to protect drinking water sources. DOF (Dissolved Ozone Flotation) was developed to meet this purpose. DOF was developed by combining DAF system with ozone. DAF system has good floating power with numerous microbubbles, and ozone has strong oxidation capability. And DOF system has good floating power and strong oxidation capability simultaneously. When DOF was applied to secondary wastewater effluent, color of 11CU in raw water which was secondary effluent was reduced to 1CU by the DOF system. Removal rate of other water quality parameters treated by DOF were also higher than that by DAF, which were proved the strength of oxidation capability of ozone. When ozone concentration of 3.3mg/l were applied in DOF system, general aerobic bacteria were reduced to 5CFU/ml from TNTC (Too many Numbers To Count). With the same ozone concentration, total coliform were not detected at all. These figures are under the numbers of drinking water regulation. These microbes were the target parameters of DOF. It was proved that DOF was very effective in disinfection of wastewater treatment plant effluent as well as in removal of color, turbidity, and T-P.

고도처리공법이 적용된 하수처리시설에서의 공법적용의 적정성 평가 (Validity evaluation of wastewater treatment system applying advanced treatment processes)

  • 안준수;박태술;조정호
    • 한국산학기술학회논문지
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    • 제11권10호
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    • pp.4055-4068
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    • 2010
  • 본 연구는 고도처리공법을 적용하여 수년간 가동 중인 하수처리시설에 대한 운전현황을 측정 분석하여, 고도처리공법 적용의 적정성을 평가하고자 하였다. 단위공정별 처리효율은, BOD의 경우 1차침전지 35, 생물반응조 87, 최종방류수 48 %, T-N의 경우 1차침전지 18, 생물반응조 40, 최종방류수 25 %, T-P의 경우 1차침전지 23,, 생물반응조 38, 최종방류수25 % 등으로, 각 단위공정별로 양호한 처리효율을 나타내었다. 생물반응조 내의 미생물 관측 결과, 다양한 종류의 세균과 원생동물 및 후생동물이 관측되었고, 담체의 세균 부착기능이 안정적으로 유지되고 있음을 알 수 있었다. 최종방류수질은 BOD 5.5, COD 9.9, SS 4.6, T-N 11.8, T-P 0.99 mg/L으로 방류수 수질기준보다 낮은 양호한 수질상태를 나타내었다.

시계열모델을 이용한 하수처리장 유입수 성상 예측 (Forecast of Influent Characteristics in Wastewater Treatment Plant with Time Series Model)

  • 김병군;문용택;김홍석;김종락
    • 상하수도학회지
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    • 제21권6호
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    • pp.701-707
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    • 2007
  • The information on the incoming load to wastewater treatment plants is not often available to apply to evaluate effects of control actions on the field plant. In this study, a time series model was developed to forecast influent flow rate, BOD, COD, SS, TN and TP concentrations using field operating data. The developed time series model could predict 1 day ahead forecasting results accurately. The coefficient of determination between measured data and 1 day ahead forecasting results has a range from 0.8898 to 0.9971. So, the corelation is relatively high. We made forecasting program based on the time series model developed and hope that the program will assist the operators in the stable operation in wastewater treatment plants.