• 제목/요약/키워드: Aerobic Granulation

검색결과 11건 처리시간 0.023초

SBR에서 호기성 입상슬러지의 형성 (Shape and Formation of Aerobic Granulation in SBR)

  • 윤주환;장희란;한종훈;한혜정
    • 한국물환경학회지
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    • 제20권5호
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    • pp.534-538
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    • 2004
  • Granulation characteristics have been studied with an aerobic sequencing batch reactor(SBR). Organic loading of 2.46kg COD/$m^3$/day followed by 4.14kg COD/$m^3$/day had been applied to the lab-scale SBR with a very short settling time during the operating cycle. The granulation proceeded to the diameter range of 3 to 5 mm with MLSS concentration of 12,000mg/L at 45th days of operation while COD removal efficiency remained almost consistent after the granule formation. It has been noticed that aerobic granulation under the higher loading with a very short settling time seemed to be due to the microbial selection of better flocculating species.

생물학적 회분식 인 제거 공정에서 pH의 영향과 그래뉼 생성 (Influence of Different Operational pH Conditions and Granulation on Enhanced Biological Sequencing Batch Phosphorus Removal)

  • 안조환
    • 한국물환경학회지
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    • 제27권6호
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    • pp.754-759
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    • 2011
  • A sequencing batch reactor (SBR) was operated under different pH conditions to better understand the influence of pH to granulation in enhanced biological phosphorus removal systems. Granules from the SBR were also investigated using scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX). Considerable decreases in the amount of phosphorus released per substrate provided under anaerobic conditions and the content of biomass polyphosphate under aerobic conditions were observed when pH was changed from 7.5 to 7.0, followed by 6.5. Aerobic granulation was also observed at pH 7.0. A number of bacteria with the typical morphological traits of tetrad-forming organisms (TFOs) were observed at pH 7.0, including large members of cluster. Filamentous bacteria were also there in large numbers. The occurrence and growth of granules were further enhanced at pH 6.5. A SEM analysis showed that the aerobic granules had a compact microbial structure with shaperical shape and morphologically consisted of aggregates of small coccoid bacteria and filamentous bacteria encapsulated by extracellular polymeric substance. The main material ions identified by EDX moreover revealed that the structural materials for polyphosphate in the granules include phosphorus, potassium and calcium. Therefore, these results strongly suggested that PAOs are a dominant population in the microbial community of the aerobic granules.

Utilization of aerobic granulation to mitigate membrane fouling in MBRs

  • Iorhemen, Oliver T.;Hamza, Rania A.;Tay, Joo Hwa
    • Membrane and Water Treatment
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    • 제8권5호
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    • pp.395-409
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    • 2017
  • Membrane bioreactor (MBR) is a compact and efficient wastewater treatment and reclamation technology; but, it is limited by membrane fouling. The control of membrane fouling significantly increases operational and maintenance costs. Bacteria and their byproducts - extracellular polymeric substances (EPS) - are major contributors to membrane fouling in MBRs. A recent attempt at fouling mitigation is the development of aerobic granular sludge membrane bioreactor (AGMBR) through the integration of a novel biotechnology - aerobic granulation - and MBR. This paper provides an overview on the development of AGMBR to mitigate membrane fouling caused by bacteria and EPS. In AGMBR, EPS are used up in granule formation; and, the rigid structure of granules provides a surface for bacteria to attach to rather than the membrane surface. Preliminary research on AGMBR using synthetic wastewater show remarkable membrane fouling reduction compared to conventional MBR, thus improved membrane filtration. Enhanced performance in AGMBR using actual municipal wastewater at pilot-scale has also been reported. Therefore, further research is needed to determine AGMBR optimal operational conditions to enhance granule stability in long-term operations and in full-scale applications.

SHARON/ANAMMOX 결합공정에서 슬러지의 입상화와 특성 (Granulation and Characteristics of Sludges in the Combined SHARON/ANAMMOX Processes)

  • 황인수;민경석
    • 한국물환경학회지
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    • 제22권2호
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    • pp.300-307
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    • 2006
  • The combined SHARON (Single reactor system for High ammonium Removal Over Nitrite)-ANAMMOX (Anaerobic ammonium oxidation) reactor were operated in mesophilic condition ($35^{\circ}C$). In this study, microbial granulation and characteristics of SHARON and ANAMMOX sludges were investigated using settling test, Scanning Electron Microscopy (SEM) and Fluorescence In Situ Hybridization (FISH). In SHARON reactor, Aerobic granulation with diameter of 1.5~2.5 mm was accomplished but aerobic granulation was weaker than anaerobic granular sludge. Initial seed sludge of ANAMMOX reactor was used as attached media for biofilm growth. ANAMMOX sludge was more compact and rounder rather than seed sludge. Though ANAMMOX sludge has high activity, it has lower settling ability than the seed granule. The color of ANAMMOX sludge was changed from dark to redish brown granular with diameter of 1~2 mm. In FISH of ANAMMOX sludge, high fraction of Candidatus B. stuttgartiensis which paid great role of nitrogen conversion was detected. Also, FISH results reveals that ANAMMOX bacteria inhabit at inner parts near surface, having advantages in utilization of substrates and protection from oxygen inhibition.

호기성 입상화 장치를 이용한 입상슬러지 생성 및 특성 (Formation and Characteristics of Granular Sludge Using Aerobic Granular Reactor)

  • 이봉섭;최성우
    • 대한환경공학회지
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    • 제31권12호
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    • pp.1135-1142
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    • 2009
  • 본 연구는 고분자 응집제를 이용하여 짧은 시간에 입상형태의 슬러지를 제조한 다음, 입상슬러지를 호기성 입상화 장치에 주입하여 입상화를 시도하였다. 각 반응조에서 호기성 입자의 형성에 따른 입자의 크기, 밀도, 입자내 미생물 체외분비 고분자물질 등의 물리.화학적인 특성을 조사하였다. 입상형태의 슬러지를 호기성 입상화 장치에 주입하여 COD 부하량 3, 6, 9 $kg{\cdot}COD/m^3{\cdot}d$로 35일간 운전한 결과 최종 형성된 호기성 입장의 평균 크기는 각각 3.6 mm, 4.3 mm, 3.4 mm 이었고 호기성 입자의 침강속도는 각각 1.5 cm/s, 1.6 cm/s, 1.2 cm/s 이었다. COD 부하량에 따른 미생물 군집체의 비성장속도는 0.12 $d^{-1}$, 0.135 $d^{-1}$, 0.133 $d^{-1}$이었으며 전반적으로 호기성 입상화 장치에서는 COD 부하량이 $6kg{\cdot}COD/m^3{\cdot}d$로 운전된 반응조에서 호기성 입자의 물리 화학적인 특성이 우수하였다.

연속회분식 장치에서 응집제를 이용한 호기성 입상슬러지 생성 및 특성 (Formation and Characteristics of Aerobic Granular Sludge Using Polymer in Sequencing Batch Reactor)

  • 이봉섭;최성우
    • 대한환경공학회지
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    • 제31권12호
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    • pp.1143-1150
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    • 2009
  • 본 연구는 고분자 응집제를 이용하여 단시간에 입상형태의 슬러지를 제조한 후 연속회분식 장치에 주입하여 호기성 입상화를 시도하였다. 연속회분식 반응조에서 호기성 입자의 형성에 따른 입자의 크기, 침강속도, 표면전하, 비산소 소비율 등의 물리 화학적인 특성을 조사하였다. 입상형태의 슬러지를 연속회분식 장치에 주입하여 COD 부하량 $5.4kg{\cdot}COD/m^3{\cdot}d$로 운전한 결과 운전경과 20일만에 2.6 mm 내외의 호기성 입자를 형성하였으며, 최종형성된 호기성 입자의 침강속도, 비산소 소비율, 표면전하, 다당류/단백질비는 각각 1.7 cm/s, $346mg{\cdot}O_2/g{\cdot}MLVSS{\cdot}hr,\;(-)0.26{\cdot}meq/g{\cdot}MLVSS$, 2.06 mg/mg을 나타내었다.

SBR공정에서 전자수용체에 따른 호기성 입상활성슬러지의 공정별 특성 (Characteristics of Aerobic Granular Activated Sludge According to Electron Acceptors in Sequencing Batch Reactor Process)

  • 김이태;이희자;배우근
    • 한국물환경학회지
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    • 제20권5호
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    • pp.480-487
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    • 2004
  • This study was conducted to find the effect of electron acceptors on the formation of granular sludge by using four different types of electron acceptors. The phosphorous uptake, denitrification, and sulfate reduction in anoxic modes were simultaneously occured because of the presence of the polyphosphate accumultating organism(PAO) that utilize nitrate and sulfate as an electron acceptor in the anoxic zone. Denitrirying phosphorous removal bacteria(DPB) was enriched under anaerobic/anoxic/aerobic condition with a nitrate as an electron acceptor, and desulfating phosphorous removal bacteria(DSPB) was enriched under anaerobic/anoxic/aerobic condition with a sulfate as an electron acceptor. Polyphosphate accumulating organism(PAO) were enriched in the anaerobic/aerobic SBR. PAO took up acetate faster than DPB and DSPB during the aerobic phase. The sludge with nitrate and sulfate as an electron acceptors grew as a granules which possessed high activity and good settleability. In the anaerobic/aerobic modes, typical floccular growth was observed. In the result of bench-scale experiment, simultaneous reactions of phosphorus uptake, denitrification and sulfate reduction were observed under anoxic condition with nitrate and sulfate as an electron acceptors. These results demonstrated that the anaerobic/anoxic modes with nitrate and sulfate as an electron acceptors played an important role in the formation of the sludge granulation.

호기성 입상화 슬러지를 이용한 SBR 운전의 동력학적 해석 및 설계분석 (Bio-kinetic and Design Analysis of a Sequencing Batch Reactor by Aerobic Granular Sludge)

  • 최성우
    • 대한환경공학회지
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    • 제33권4호
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    • pp.275-280
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    • 2011
  • 고분자 응집제를 이용하여 짧은 시간에 형성된 입상형태의 슬러지를 연속회분식 장치에 주입하여 미생물의 호기성 입상화의 특성을 향상시키고, 제조한 입상화 슬러지를 하수에 적용하여 유기물제거에 대한 운전인자를 도출하였다. 유입하수 COD 63~72 mg/L에 대한 유기물 제거속도 계수 k는 $10.161d^{-1}$로 일반적 활성슬러지 공법의 k값 $5{\sim}8d^{-1}$보다 효과적으로 나타났으며, 산소이용에 대한 a', b' 값은 각각 0.87 mg $O_2/mg$ $COD_r$, 0.11 mg $O_2/mg$ MLVSS d이었다. 슬러지 합성계수와 자산 화계수는 각각 0.45 mg VSS/mg $COD_r$과 0.05 mg VSS/mg MLVSS d로 일반적 활성슬러지 공법에 비해, 자산화 계수는 비교적 적은 값으로 나타나므로 미생물의 사멸율은 낮은 것을 알 수 있었다.

PAO와 dPAO 입상슬러지의 형태학적 특성에 대한 비교 고찰 (A Comparative Study on the Morphological Characteristics of PAO and dPAO Granule)

  • 윤금희;윤주환
    • 한국물환경학회지
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    • 제33권3호
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    • pp.302-310
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    • 2017
  • The morphological characteristics of granules developing in anaerobic-anoxic (An-Ax) and anaerobic-aerobic (An-Ox) sequencing batch reactors (SBRs) were examined. The granules developed in the both SBRs after 200 days of laboratory operation. The average diameters of the granules were $2.2{\pm}1.7mm$ in the An-Ax SBR and $0.4{\pm}0.3mm$ in the An-Ox SBR. To determine the possible factors affecting morphology of granules a comparative analysis of various operating conditions from reference data indicated that the availability and type of electron acceptors is a key factor determining the granulation process and granular morphology.

생물학적 질소.인 동시제거 시스템에서 탈질미생물의 인 제거 가능성 (Possibility of Anoxic Phosphorus Removal by Denitrifier in Denitrifying EBPR System)

  • 이한샘;윤주환
    • 한국물환경학회지
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    • 제29권6호
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    • pp.782-789
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    • 2013
  • Enhanced biological phosphorus removal (EBPR) behavior and microbial characteristics in the anaerobic-aerobic SBR (PAO SBR) and the anaerobic-anoxic SBR (DPAO SBR) were examined in this research. For 392 days of operation, both SBRs have exhibited a good EBPR (or denitrifying EBPR) performance. $P_{release}/P_{influent}$ ratio was highest in both reactors after the stabilization, while the efficiency of phosphorus removal was decreased since the sludge granulation has been visually observed within the reactor. The comparative analysis of Pyrosequencing-based microbial population between PAO and DPAO sludges showed indirectly that Dechloromonas spp. could utilize $O_2$ and $NO_3{^-}-N$ as an electron acceptor and Accumulibacter phosphatis use only $O_2$ in EBPR system. Also, we concluded that Thauera spp. as a denitrifier contribute significantly to the anoxic phosphorus removal in the DPAO system.