• 제목/요약/키워드: Sequencing Batch Reactor (SBR)

검색결과 157건 처리시간 0.027초

Denitrifying Phosphate Accumulating Organisms (dPAOs)을 이용한 영양소제거 및 반응조내 미생물 분포 조사 (Nutrient Removal using the Denitrifying Phosphate Accumulating Organisms (dPAOs) and Microbial Community Analysis in Anaerobic-Anoxic Sequencing Batch Reactor)

  • 박용근;이진우;이한웅;이수연;최의소
    • 미생물학회지
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    • 제38권2호
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    • pp.113-118
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    • 2002
  • 혐기-무산소조건으로 구성된 회분식 반응조에서 질산염을 이용하여 인(P)도 동시에 제거될 수 있는 가능성을 알아보기 위해서 인의 제거 양상을 혐기-호기조건의 반응조와 비교하여 조사하였고, 질산염과 인을 동시에 제거하는 미생물분포를 분석하였다. 그 결과 비교적 낮은 농도의 유기물이 적용되었을 때(평균 CODcr=130mg/ι)두 반응조 모두 인이 효과적으로 제거되었으며 반응조내의 최종 인의 농도를 1 mg P/L. 이하로 유지하였다. 특히, 질산염을 전자수용체로 이용한 혐기-무산소조건의 반응조는 기존의 영양소제거 시스템과 비교하여 5-7 mg (P+N)/ι의 영양소를 추가적으로 제거하여 유기물의 효과적 인 이용이 가능한 것으로 판명되었다. 혐기-무산조 조건의 방응조내 미생물 분포를 조사 한 결과 질소원을 제거하는 미생물군(denitrifying bacteria)과 인을 제거하는 미생물군(polyphosphate accumulating bacteria)이 함께 존재하고 있음이 밝혀졌고, 이들 중 $\beta$-proteobacteria에 속하는 Zoogloea ramigera와 Rhodocyclus에 포함되는Alcaligenes defragrans 등은 탈질능력 이 있으면서 anoxic상태에서 인을 동시에 축적할 수 있는 탈질-탈인균주(denitrifying phosphate accumulating organisms; dPAO)로 조사되었다.

호기성 그래뉼 슬러지를 이용한 하수고도처리기술(AGS-SBR) (Advanced Wastewater Treatment Process Using Aerobic Granular Sludge (AGS-SBR))

  • 최한나;모우종
    • 한국물환경학회지
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    • 제37권1호
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    • pp.47-54
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    • 2021
  • Aerobic granular sludge (AGS) can be classified as a type of self-immobilized microbial aggregates measuring more than 0.2 mm. It offers the option to simultaneously remove COD, N, and P that occur in different zones inside a granule. Also, AGS is characterized by high precipitability, treatability with high organic loading, and high tolerance to low temperature. In this study, a sequencing batch reactor inoculated with AGS (AGS-SBR) is a new advanced wastewater treatment process that was proven to grow AGS with integrated nutrient removal and low C/N ratio. A pilot plant, AGS-SBR with a capacity of 225 ㎥/d was installed at an S sewage treatment plant in Gyeonggi-do. The results of the operation showed that the water quality of the effluent indicated that the value of BOD5 was 1.5 mg/L, CODMn was 11.4 mg/L, SS was 6.2 mg/L, T-N was 13.2 mg/L, and T-P was 0.197 mg/L, and all of these values reliably satisfied an effluent standard (I Area). In winter, the T-N treatment efficiency at a lower temperature of less than 11℃ also showed reliability to meet the effluent standard of the I Area (20 mg/L or less). Analysis of microbial community in AGS showed a higher preponderance of beneficial microorganisms involved in denitrification and phosphorus accumulation compared with activated sludge. The power consumption and sludge disposal cost were reduced by 34.7% and 54.9%, respectively, compared to the domestic SBR type sewage treatment plant with a processing capacity of 1,000 ㎥/d or less.

연속 회분식 반응조 (SBR) 공정을 이용한 폐절삭유의 생물학적 처리능 평가 (Evaluation of biological treatment of cutting-oil wastes using sequencing batch reactor (SBR) process)

  • 백병도;김창섭;김준영;장인성
    • 한국산학기술학회논문지
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    • 제10권7호
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    • pp.1654-1660
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    • 2009
  • 본 연구에서는 연속회분식반응조 (Sequencing Batch Reactor, SBR)를 이용하여 친환경성 절삭유라는 이름으로 시판되는 절삭유 2종 (H사, B사)의 생물학적 처리능을 평가하였다. H사의 절삭유를 응집/응결 전처리 ($H_1$)하여 0.04-0.08kgCOD/kgMLSS d의 F/M비로 SBR로 유입한 경우, $BOD_5$$COD_{Cr}$의 평균 제거율은 각각 97%, 91%이상을 나타내었으며, T-N, T-P의 평균 제거율은 각각 76%, 81%이상을 나타내었다. B사의 절삭유를 희석한 후 ($B_1$) 0.01-0.02kgCOD/kgMLSS d의 F/M비에 맞추어 SBR로 유입한 경우, $COD_{Cr}$의 평균 제거율은 77% 이상을 나타내었다. 응집/응결 처리된 절삭유 (B2)를 0.01-0.04kgCOD/kgMLSS d의 F/M비에 맞추어 유입한 경우, $COD_{Cr}$의 평균 제거율은 85%이상을 나타내었다. 이후 실제 처리장에서 폐절삭유를 처리할 때 오수와 합병하여 처리하는 상황을 반영하기 위하여 $B_2$와 합성폐수를 혼합하여 ($B_3$) 0.09-0.11kgCOD/kgMLSS d의 F/M비에 맞추어 유입하였을 때, $BOD_5$$COD_{Cr}$의 평균 제거율은 각각 97%, 98%이상을 나타내었고 T-N, T-P의 평균 제거율은 각각 79%, 76%이상을 나타내었다. 그리고 생물학적 처리를 거친 $H_1$$B_3$에 대한 각각의 유출수의 ($COD_{Cr}$-$BOD_5$)/$COD_{Cr}$비는 각각 85%와 61%정도로 난분해성 유기물이 잔존하고 있는 것을 확인할 수 있었다.

메탄올 기반 탈질 공정의 고속화 및 탄소 섭취 특성 (High-rate Denitrifying Process Based on Methanol and Characteristics of Organic Carbon Uptake)

  • 박수인;전준범;배효관
    • 한국물환경학회지
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    • 제36권6호
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    • pp.581-591
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    • 2020
  • In this study, two types of reactors were operated to examine the properties of methanol uptake under the high-rate denitrification process. In a sequencing batch reactor, the denitrifying activity was enriched up to 0.80 g-N/g-VSS-day for 72 days. Then, the enriched denitrifying sludge was transferred to a completely stirred tank reactor (CSTR). At the final phase on Day 46-50, the nitrogen removal efficiency was around 100% and the total nitrogen removal rate reached 0.097±0.003 kg-N/㎥-day. During the continuous process, the sludge settling index (SVI30) was stabilized as 118.3 mL/g with the biomass concentration of 1,607 mg/L. The continuous denitrifying process was accelerated by using a sequencing batch reactor (SBR) with a total nitrogen removal rate of 0.403±0.029 kg-N/㎥-day with a high biomass concentration of 8,433 mg-VSS/L. Because the reactor was open to ambient air with the dissolved oxygen range of 0.2-0.5 mg-O2/L, an increased organic carbon requirement of 5.58±0.70 COD/NO3--N was shown for the SBR in comparison to the value of 4.13±0.94 for the test of the same biomass in a completely anaerobic batch reactor. The molecular analysis based on the 16S rRNA gene showed that Methyloversatilis discipulorum and Hyphomicrobium zavarzinii were the responsible denitrifiers with the sole organic carbon source of methanol.

연속회분식 처리시스템에서 인공하수를 이용한 Polyhydroxyalkanoates (PHAs)의 생산 (Production of Polyhydroxyalkanoates (PHAs) from Sequencing Batch Reactor Using Synthetic Wastewater)

  • 손재협;차상협;박준모;박흥석
    • 대한환경공학회지
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    • 제37권6호
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    • pp.363-370
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    • 2015
  • 인공폐수로 연속회분식 하수처리시스템에서 바이오플라스틱인 PHAs의 생산에 대하여 연구하였다. 실험은 하수처리장에서 식종슬러지를 채취하고, 실험실 내에서 제작된 인공하수를 이용하여 4 L 규모의 2조의 연속회분식반응기로 수행하였다. 인공하수의 영양조건(C/N/P)은 42:10:1로 운전되었으며, 연속회분식반응기는 호기상태에서 Feast/Famine 조건을 부여하는 ADF (aerobic dynamic feeding)의 SBR 1과 혐기/호기조건에서 Feast/Famine 조건을 부여하는 AODF (anaerobic/oxic dynamic feeding)의 SBR 2로 운전하였다. PHAs의 생산은 AODF가 ADF 보다 우수하였으며, ADOF 에서 바이오매스 대비 최대 40.0%(w/w)로 높게 생산되었으며, 구조적 및 열적 물성도 우수한 것으로 나타났다.

연속회분식 반응 공정에서 동역학적 계수 및 미생물합성에 사용된 영양물질 산정 (Estimation of Kinetic Coefficient and Assimilated Nutrients Mass in SBR Process)

  • 지대현;신상우;이광호;이재근
    • 한국물환경학회지
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    • 제23권5호
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    • pp.607-612
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    • 2007
  • In this study, we investigated the variations of the kinetic coefficients and Chemical Oxygen Demand (COD), N and P mass used for assimilation of a sequencing batch reactor (SBR) system with the variation of SRTs; SRTs of 7.5, 10.0, 12.5, 15.0 and 20.0 days were tested in one cycle of SBR operation to determine the optimum conditions for the operation of the SBR and estimate its COD, nitrogen and phosphorus removal efficiencies. The SBR system was operated under the conditions as follows: an operation time of 6 hours per cycle, a hydraulic retention time (HRT) of 12 hours, an influent COD loading of $0.4kg/m^3/day$, and an influent nitrogen loading of $0.068kgT-N/m^3/day$. The yield coefficient (Y) and decay rate coefficient ($k_d$) were estimated to be 0.4198 kgMLVSS/kgCOD and $0.0107day^{-1}$ by calculating the removal rate of substrate according to the variation of SRT. Considering total nitrogen amount removed by sludge waste process, eliminated by denitrification, and in clarified water effluent with reference to 150 mg/cycle of influent nitrogen amount, the percentage of nitrogen mass balance from the ratio of the nitrogen amount in effluent (N output) to that in influent (N input) for Runs 1~5 were 95.5, 97.0, 95.5, 99.5, and 95.5%, respectively, which is well accounted for, with mass balances close to 100%.

연속회분식반응조를 이용한 슬러지 소화에서 고형물과 질소의 제거 (Solids and Nitrogen Removal in the Sludge Digestion using a Sequencing Batch Reactor)

  • 김성홍;이윤희
    • 대한토목학회논문집
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    • 제26권6B호
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    • pp.669-675
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    • 2006
  • SBR반응조를 이용하여 간헐폭기의 슬러지소화 실험을 실시하였다. 폭기비율은 고형물과 질소 제거의 가장 중요한 운전인자 중의 하나였다. 슬러지의 소화에 따라 용출된 유기성질소는 질산성질소로 산화되었고, 생물학적 질소제거율도 높게 나타났는데, 질소제거율은 폭기비율에 따라 달라졌다. 폭기비율 0.25-0.75의 범위에서, 암모니아성 질소의 축적은 보이지 않았으며, pH는 중성에서 유지되었다. 폭기비율을 증가시킴에 따라 고형물 제거율은 증가하지만 용존 질소의 제거율은 감소하는 경향을 보였다. 본 실험에서 SBR 반응조를 이용하고, 평균고형물체류시간 8-32일 정도의 설계조건과 폭기비율 0.25-0.75의 운전 조건에서 VSS 제거율은 17-42% 정도, 용존질소 제거율은 80% 이상이 가능하였다.

동적시간와핑을 이용한 연속회분식 반응기의 장비고장 감지 (Detection of Equipment Faults at Sequencing Batch Reactor Using Dynamic Time Warping)

  • 김예진
    • 한국환경과학회지
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    • 제25권4호
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    • pp.525-534
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    • 2016
  • The biological wastewater treatment plant, which uses microbial community to remove organic matter and nutrients in wastewater, is known as its nonlinear behavior and uncertainty to operate. Therefore, operation of the biological wastewater treatment process much depends on observation and knowledge of operators. The manual inspection of human operators is essential to manage the process properly, however, it is impossible to detect a fault promptly so that the process can be exposed to improper condition not securing safe effluent quality. Among various process faults, equipment malfunction is critical to maintain normal operational state. To detect equipment faults automatically, the dynamic time warping was tested using on-line oxidation-reduction potential (ORP) and dissolved oxygen (DO) profiles in a sequencing batch reactor (SBR), which is a type of wastewater treatment process. After one cycle profiles of ORP and DO were measured and stored, they were warped to the template profiles which were prepared already and the distance result, accumulated distance (D) values were calculated. If the D values were increased significantly, some kinds of faults could be detected and an alarm could be sent to the operator. By this way, it seems to be possible to make an early detecting of process faults.

Kinetics of nitrification and acrylamide biodegradation by Enterobacter aerogenes and mixed culture bacteria in sequencing batch reactor wastewater treatment systems

  • Madmanang, Romsan;Jangkorn, Siriprapha;Charoenpanich, Jittima;Sriwiriyarat, Tongchai
    • Environmental Engineering Research
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    • 제24권2호
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    • pp.309-317
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    • 2019
  • This study evaluated the kinetics of acrylamide (AM) biodegradation by mixed culture bacteria and Enterobacter aerogenes (E. aerogenes) in sequencing batch reactor (SBR) systems with AQUASIM and linear regression. The zero-order, first-order, and Monod kinetic models were used to evaluate the kinetic parameters of both autotrophic and heterotrophic nitrifications and both AM and chemical oxygen demand (COD) removals at different AM concentrations of 100, 200, 300, and 400 mg AM/L. The results revealed that both autotrophic and heterotrophic nitrifications and both AM and COD removals followed the Monod kinetics. High AM loadings resulted in the transformation of Monod kinetics to the first-order reaction for AM and COD removals as the results of the compositions of mixed substrates and the inhibition of the free ammonia nitrogen (FAN). The kinetic parameters indicated that E. aerogenes degraded AM and COD at higher rates than mixed culture bacteria. The FAN from the AM biodegradation increased both heterotrophic and autotrophic nitrification rates at the AM concentrations of 100-300 mg AM/L. At higher AM concentrations, the FAN accumulated in the SBR system inhibited the autotrophic nitrification of mixed culture bacteria. The accumulation of intracellular polyphosphate caused the heterotrophic nitrification of E. aerogenes to follow the first-order approximation.