• 제목/요약/키워드: primary wastewater treatment

검색결과 109건 처리시간 0.027초

하수처리장 에너지자립화사업에서 혐기성소화공정으로부터 용출되는 용존성질소($NH_3-N$)의 처리 필요성 연구 (The Study of the Need to Remove Soluble nitrogen ($NH_3-N$) Generated from Anaerobic digestor Retrofitted in Municipal Wastewater Treatment Plants)

  • 안세영
    • 유기물자원화
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    • 제22권3호
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    • pp.68-75
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    • 2014
  • 하수슬러지를 혐기성 소화하는 과정에서 용출되는 용존성질소는 다시 수처리시설로 반송되어 질산화 효율이 떨어지는 동절기 법적 방류수 질소 수질기준에 영향을 준다. 컴퓨터 시뮬레이션 소프트웨어(GPS-X)를 이용하여 A하수처리시설을 대상으로 소화조에서 발생하는 용존성질소의 영향을 조사한 결과, 소화조가 있는 처리시설에서의 총 반송수와 1차침전지 유입수 용존성질소 농도는 소화조가 없는 시설에서의 농도보다 각각 214.1 mg/L, 6.2 mg/L 높게 산출되었다. 슬러지 처리시설에서의 반송수를 처리하는 반송수처리시설(부상분리조)을 설치하는 경우 총반송수 용존성질소 농도는 반송수처리시설이 없는 경우보다 6.0 mg/L 높게 나타났으며 1차침전지 유입수 용존성질소 농도를 0.7 mg/L 낮게 산정되었다. 시뮬레이션 결과, 하수슬러지를 혐기성소화하여 에너지자립화율을 향상시키는 사업에서 슬러지 처리시설에서 발생하는 여액과 상등액의 용존성질소($NH_3-N$)를 처리할 수 있는 시설이 필요한 것으로 나타났다.

DNR 시스템에 의한 하수(下水)의 고도처리(高度處理)에 관한 연구(硏究) (A Study on Advanced Municipal Wastewater Treatement by Daewoo Nutrients Removal (DNR) System)

  • 박명균;장윤석;박철휘;박칠림
    • 상하수도학회지
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    • 제9권4호
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    • pp.115-123
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    • 1995
  • The purpose of this study is to investigate the characteristics and performance of nitrogen and phosphorus removal system, Daewoo Nutrients Removal(DNR) system, and to find out the operating parameter for the system. During the study, $10m^3$ pilot plant was operated for the demonstration experiment and the primary effluent was taken from K domestic sewage treatment plant. The TN in the influent had been removed to approximately 70% through the nitrfication in the oxic tank and the denitrfication in the anoxic tank and the $PO_4-P$ and TP in the influent had been removed to 85% and 83% through anaerobic reaction and oxic reaction. The BOD and SS removal rate were 85 to 95% through the system. As the results, the values of effluent BOD, SS and slouble phosphorus were lower than A/O and $A^2/O$ processes. The SPRR (specific phosphorus release rate) at the anaerobic state of DNR system was ranged from 2.2 to 2.6mg SP/g VSS/h. The nutrient removal efficieny of the DNR system in view of the characteristics of the domestic sewage was higher than the pre-established A/O and $A^2/O$ processes. Finally, we believe that the DNR system was superior to the processes deveolped recently.

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CFD에 의한 Axial Reactor Type 자외선 유수살균장치의 출구 위치에 따른 UV Dose 예측 (UV Dose Predictions for Ultra Violet Flowing Water Purification of Axial Reactor Type based on the location of the exit by CFD)

  • 최종웅;김성수;박노석;이영주;채선하
    • 상하수도학회지
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    • 제26권4호
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    • pp.521-533
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    • 2012
  • Interest in application of ultraviolet light technology for primary disinfection that used for the treatment of water for consumption and wastewater has increased significantly in recent years. Analysis of these systems has been carried out using Computational Fluid Dynamics (CFD) procedure. It offers advantages over other techniques in specific circumstances. CFD has emerged as a powerful tool to aid design of a UV reactor by providing the UV dose delivered by the proposed reactor design and allowing engineers to evaluate alternative designs in much less time and at a reasonable cost. In this study, five different configurations of the apparatus depending on the location of the exit are evaluated in terms of maximum dose, minimum dose, flow patterns, particle tracks and transient dose. The configuration 3 results have higher minimum UV dose value and uniform particle distribution of the UV dose on the outlet than other's.

하수처리시설 단위공정별 잔류의약물질 거동 및 물질수지 분석 (Fate and mass balance of pharmaceuticals of unit processes in a sewage treatment plant)

  • 박준원;김창수;이원석;이수형;정현미;정동환
    • 상하수도학회지
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    • 제33권5호
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    • pp.367-377
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    • 2019
  • In this study, the fate and removal of 15 pharmaceuticals (including stimulants, non-steroidal anti-inflammatory drugs, antibiotics, etc.) in unit processes of a sewage treatment plant (STP) were investigated. Mass loads of pharmaceuticals were 2,598 g/d in the influent, 2,745 g/d in the primary effluent, 143 g/d in the secondary effluent, and 134 g/d in the effluent. The mass loads were reduced by 95% in the biological treatment process, but total phosphorous treatment did not show a significant effect on the removal of most pharmaceuticals. Also, mass balance analysis was performed to evaluate removal characteristics of pharmaceuticals in the biological treatment process. Acetaminophen, caffeine, acetylsalicylic acid, cefradine, and naproxen were efficiently removed in the biological treatment process mainly due to biodegradation. Removal efficiencies of gemfibrozil, ofloxacin, and ciprofloxacin were not high, but their removal was related to sorption onto sludge. This study provides useful information on understanding removal characteristics of pharmaceuticals in unit processes in the STP.

SOB(Sulfur Oxidizing Bacteria) Media가 정화조의 수중황화수소 제거에 미치는 영향에 관한 연구 (A study on the Effect of SOB(Sulfur-Oxidizing Bacteria) Media on the Removal of Hydrogen Sulfide in Water of Septic Tank)

  • 송호면;조정일;김택수;권수철;유형식
    • 상하수도학회지
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    • 제27권1호
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    • pp.59-67
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    • 2013
  • The odor occurring in the sewage system induces the displeasure, the disgust such as the headache, the vomit, etc. and increases the spiritual stress and disturbs the pleasant life of residents. These odors occur mainly in the area of combined sewage system treatment, being created in the personal sewage treatment plant such as septic tank and are incoming to sewage pipes and emitted to the outside through the manhole and the receiver, etc.; and this causes odors to the people. The Hydrogen Sulfide, the Methyl Mercaptan, the Ammonia, etc. are materials causing the odor, the more serious issue of odor is occurring since the septic tank of degradation process is being applied. The primary cause of odor is the decomposition of human feces in the septic tanks and sewage disposal facilities. The purpose of this study is reduction of hydrogen sulfide using air supplying and SOB(Sulfur-Oxidizing Bacteria). As a result of this study of the air supply system and the SOB media equipment by air supply, in case the air is injected to SOB media compared to the injection of air only, the removal efficiency the hydrogen sulfide was average 3.4 times higher.

하수처리수를 이용한 소수력발전소 설계 및 성능예측 (Design and Performance Prediction of Small Hydropower Plant Using Treated Effluent in Wastewater Treatment Plant)

  • 이철형;박완순;김원경;김정연;채규정
    • 한국태양에너지학회 논문집
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    • 제33권2호
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    • pp.78-83
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    • 2013
  • A methodology to predict the output performance of small hydro power plant using treated effluent in waste water treatment plant has been studied. Existing waste water treatment plant located in Kyunggi-Do were selected and the output performance characteristics for these plants were analyzed. .Based on the models developed in this study, the hydrologic performance characteristics for SHP sites have been analyzed. The results show that the flow duration characteristics of small hydropower plant for waste water treatment plant have quite differences compared with small hydropower plant for the river. As a result, it was found that the developed model in this study can be used to analyze the output characteristics for small hydro power in waste water treatment plant. Additionally, primary design specifications such as design flowrate, capacity, operational rate and annual electricity production were estimated and discussed. It was found that the models developed in this study can be used to decide the design performance of small hydropower plant for waste water treatment plant effectively.

질산화균 활성화조를 이용한 하수처리 공정에서의 유기물 및 질소, 인 제거에 관한 연구 (A Study on Removal of Organism and Nitrogen, Phosphorus in Wastewater Treatment Process Using Nitrifier Activated Reactor)

  • 동영탁;서동환;배유진;박주석
    • 상하수도학회지
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    • 제21권6호
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    • pp.727-735
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    • 2007
  • The use of water by cities is increasing owing to industrialization, the concentration of population, and the enhancement of the standard of living. Accordingly, the amount of waste water is also increasing, and the degree of pollution of the water system is rising. In order to solve this problem, it is necessary to remove organisms and suspended particles as well as the products of eutrophication such as nitrates and phosphates. This study developed a high-end treatment engineering solution with maximum efficiency and lower costs by researching and developing a advanced treatment engineering solution with the use of Biosorption. As a result, the study conducted a test with a $50m^3/day$ Pilot Scale Plant by developing treatment engineering so that only the secondary treatment satisfies the standard of water quality and which provided optimal treatment efficiency along with convenient maintenance and management. The removal of organisms, which has to be pursued first for realizing nitrification during the test period, was made in such a way that there would be no oxidation by microorganisms in the reactor while preparing oxygen as an inhibitor for the growth of microorganism in the course of moving toward the primary settling pond. The study introduced microorganisms in the endogeneous respiration stage to perform adhesion, absorption, and filtering by bringing them into contact with the inflowing water with the use of a sludge returning from the secondary settling pond. Also a test was conducted to determine how effective the microorganisms are as an inner source of carbon. The HRT(Hydraulic Retention Time) in the nitrification tank (aerobic tank) could be reduced to two hours or below, and the stable treatment efficiency of the process using the organisms absorbed in the NAR reactor as a source of carbon could be proven. Also, given that the anaerobic condition of the pre-treatment tank becomes basic in the area of phosphate discharge, it was found that there was excellent efficiency for the removal of phosphate when the pre-treatment tank induced the discharge of phosphate and the polishing reactor induced the uptake of phosphate. The removal efficiency was shown to be about 94.4% for $BOD_5$. 90.7% for $COD_{Cr}$ 84.3% for $COD_{Mn}$, 96.0% for SS, 77.3% for TN, and 96.0% for TP.

Anaerobic Baffled Reactor 공정을 이용한 1차 슬러지 산발효에 대한 연구 (Application of anaerobic baffled reactor to produce volatile fatty acids by acidification of primary sludge)

  • 권세영;강민선;김세운;신정훈;최한나;장훈;조진우
    • 상하수도학회지
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    • 제28권1호
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    • pp.13-23
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    • 2014
  • A lab-scale Anaerobic Baffled Reactor (ABR) was applied to treat a primary sludge taken from a municipal wastewater treatment plant. In this experiment, acidogenic reaction was promoted by operating the ABR with short hydraulic retention time (HRT) to produce sufficient volatile fatty acids (VFA) instead of production of methane. The performance of ABR on the VFA production and total solids reduction was observed with different operating conditions with 2, 4, 6, and 8 days of HRT. Corresponding organic loading rates were 6.7, 3.4, 2.2, and $1.6kgCOD_{cr}/m^3{\cdot}day$. As HRT increased the removal rate of TCOD was also increased (82.5, 84.2, 96.9, and 95.9 % in average for HRT of 2, 4, 6, and 8 days, respectively) because the settlement of solids was enhanced in the baffle by the decrease of upflow velocity. At HRT of 2 days the average concentration of VFA in the effluent was measured at $1,306{\pm}552$ mgCOD/L corresponding to 107 % increment as compared to the VFA concentration in the influent. However, as HRT increased VFA concentraiotn was decreased to $143{\pm}552$ mgCOD/L at HRT of 8 days. The reduction rates of total solids were 12.2, 26.5, 24.8, and 43.0 % for HRT of 2, 4, 6, and 8 days. As HRT increased the hydrolysis of organic particulate matters in the reactor was enhanced due to the increasing of solids retention time in the baffle zone with low upflow velocity in long HRT condition. Consequently, we found that a primary sludge became a good source of VFA production by the application of ABR process with HRT less than 4 days and the 12-26 % of total solids reduction was expected at these conditions.

위생용지 생산 제지공장 폐수슬러지의 처리 현황 (Sludge Disposal Analysis of Sanitary Paper Manufacturing Wastewater Treatment Plant)

  • 정용준;이홍태
    • 한국습지학회지
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    • 제15권4호
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    • pp.471-476
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    • 2013
  • 위생용지 제조 폐수처리장에서 발생하는 슬러지를 3년간의 일일 운전일지를 토대로 분석하였다. 발생 폐기물은 79% 슬러지, 14% 재, 5%의 합성폐기물 및 기타 2%로 구성되었다. 일일 최대 슬러지 생산량은 233톤, 평균 슬러지 생산량은 113톤으로 분석되었는데, 일차 슬러지가 85% 및 이차슬러지는 15%를 차지하였다. 슬러지 탈수용 응집제의 농도는 과량 주입되고 있어 적정 응집제 주입을 위해 주기적으로 쟈테스트와 같은 부가적인 실험에 의한 주입농도의 설정이 필요한 것으로 나타났다. 현재 발생되는 폐슬러지의 일부는 위탁처리되고 있고, 일부는 자체 처리되고 있지만, 장기적으로는 대부분의 폐슬러지가 제철소 슬러거의 진정재로 재활용될 계획이다.

우리나라 적합 하수도시설 및 관리방안 (Appropriate Sewerage Systems for Korea)

  • 이상은
    • 환경위생공학
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    • 제7권2호
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    • pp.37-52
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    • 1992
  • Since the first sewage treatment plant was constructed in 1976, the sewerage systems of Korea have been rapidly expanded. As of the end of 1991, 22 sewage treatment plants with total capacity of 5.4 million tons/day are in operation which is equivalent of 3395 total daily sewage generation. Total extension of sewer 39.534 km in 1990 which is 55% of the target extension for the year 2001. However, the most sewage treatment plants employ activated sludge process which may not be suitable for medium and/or small scale plants. The poor existing sewer systems do not effectively collect and transport sewage to adversely affect the function of sewage treatment plant. To select the appropriate treatment system, the cities are classified into 3 categories such as large and medium size inland cities, small size cities and coastal cities. Considering the criteria suggested during this study, appropriate treatment processes were selected for each category. Conventional activated sludge process and step aeration process were found to be the most appropriate for big inland cities while biological nutrient removal processes should be considered for the cities discharge the effluent to lakes or reservoirs. RBC or Oxidation Ditch process might be appropriate for the medium size cities while several processes which do not require skilled operation and maintenance were suggested for the small cities. Ocean discharge after primary treatment can be considered for some east coast cities, Appropriate methodology to rehabilitate the existing sewers and strategy to convert combined sewer system to separate sewer system were proposed. This paper also include the appropriate management system for industrial wastewater, sludge and nightsoil.

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