• 제목/요약/키워드: Biological Nutrients Removal(BNR)

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BNR 하수처리시스템에서 효과적 고형물 분리를 위한 DAF 공정의 적용과 처리특성 (Treatment Characteristics and Application of DAF Process for Effective Solid Separation in BNR Municipal Wastewater Treatment System)

  • 곽동희;유대환
    • 상하수도학회지
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    • 제24권3호
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    • pp.267-276
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    • 2010
  • Many plants have been improved to adapt the target of the biological treatment processes changed from organics to nutrients since the water quality criteria of effluent was reinforced and included T-N and T-P for the municipal wastewater treatment plant. To meet the criteria of T-N and T-P, the conventional biological reactor such as aeration tank in activated sludge system is changed to the BNR (biological nutrient removal) processes, which are typically divided into three units as anaerobic, anoxic and oxic tank. Therefore, the solid separation process should be redesigned to fit the BNR processes in case of the application of the DAF (dissolved air flotation) process as an alternatives because the solid-liquid separation characteristics of microbial flocs produced in the BNR processes are also different from that of activated sludge system as well. The results of this study revealed that the microbial floc of the anaerobic tank was the hardest to be separated among the three steps of the unit tanks for the BNR processes. On the contrary, the oxic tank was best for the removal efficiency of nutrients as well as suspended solid. In addition, the removal efficiency of nutrients was much improved under the chemical coagulation treatment though coagulation was not indispensable with a respect to the solid separation. On the other hand, in spited that the separation time for the microbial floc from the BNR processes were similar to the typical particles like clay flocs, over $2.32{\times}10^3$ ppm of air volume concentration was required to keep back the break-up of the bubble-floc agglomerates.

BNR 효율개선을 위한 산 발효조 최적운전 조건에 관한 연구 (A Study on the Optimum Operating Condition of Acid Fermenter for the BNR Performance Improvement)

  • 김효상;박종운;서정원;박철휘
    • 대한환경공학회지
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    • 제22권3호
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    • pp.587-595
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    • 2000
  • 국내 하수처리장에 적용되는 BNR(Biological Nutrients Removal) 공정의 효율저하 원인은 유입원수의 낮은 C/N비와 탄소 (Carbon source) 부족이 가장 큰 것으로 지적되어 왔다. 탄소원의 효율적인 공급을 위해 1차 슬러지 산 발효조(Acid fermenter)를 이용하여 SCFAs(Short-Chain Fatty Acids) 생성을 유도할 수 있다. 본 연구에서는 side-stream의 산 발효조와 조합된 $A_2/O$ 프로세스를 운전하여 영양염류 제거에 미치는 영향을 연구하였다. 그 결과 산 발효조의 최대 SCFAs생성은 중온상의 SRT 4~5일에서 약 3.000mg/L(as COD), 대략 0.10~0.16 mg SCFA(as COD)/mg 1차 슬러지(as COD)로 나타났다. 또한 생성된 SCFAs의 성상비는 Acetic, Propionic, (iso)Butyric 및 (iso)Valeric이 1, 0.7, 0.5 그리고 0.6 순으로 나타났다. BNR공정의 side-stream 산 발효조 적용에 의한 영양염류 제거효율은 크게 증가하는 것으로 나타났다. T-N은 인공하수(R1)의 경우 35% 정도의 낮은 처리효율을 나타냈으나 인공 SCFA 주입(R2) 및 발효산물 투입(R3)의 경우 제거효율 74%, 76%로 크게 향상되는 것으로 나타났다. 또한 Phosphate 는 R1의 경우 45% 의 처리효율을 나타냈으나 R2, R3의 경우 73~74% 정도로 양호한 처리효율을 나타냈다. 이는 발효산물 및 SCFA 주입에 의해 혐기조에서 인의 방출 및 호기조에서 과잉섭취가 잘 이루어졌기 때문으로 R3의 경우 인의 방출율은 $0.34g\;PO_4-P/g$ COD로 기존 연구와 비교해서 유사한 것으로 나타났다.

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2단 간헐 포기조의 포기/비포기 시간비에 따른 영양염류 제거특성 (Nutrients removal on Oxic/Anoxic time ratio in 2-stage-intermittent-aeration reactor)

  • 김홍태;신석우;오상화;권성현
    • 한국환경과학회지
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    • 제13권7호
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    • pp.675-680
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    • 2004
  • This study was conducted to remove organics and nutrients using 2 stage intermittent aeration reactor. First reactor, using suspended microbial growth in intermittent aeration instead of anaerobic reactor in the typical BNR process, used minimum carbon source to release P, and it was possible to reduce ammonia loading going to second reactor. In the second reactor, using moving media intermittent aeration, it was effective to reduce nitrate in non-aeration time by attached microorganisms having long retention time. In aeration time, nitrification and P uptake were taken place simultaneously. From the experiment, two major results were as follows. First, the removal of organics was more than 90%, and optimum aeration/non-aeration time ratio for organic removal was corresponded with aeration/non-aeration time ratio for nitrogen removal. Second, in the first reactor, optimum aeration/non-aeration time ratio was 15/75 (min.) because it was necessary to maintain 75 min. of non-aeration time to suppress of impediment of return nitrate and to lead release of phosphate. In the second reactor, optimum aeration/non-aeration time ratio was 45/90 (min.).

토양미생물을 활성화한 영양염류 제거 공정의 특성과 무산소 조건에서의 인 섭취(II) (Characteristics of Nutrients Removal Process Activating Soil Microorganisms and Phosphorus Uptake under Anoxic Condition(II))

  • 신응배;고남호
    • 대한환경공학회지
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    • 제22권10호
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    • pp.1757-1763
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    • 2000
  • 본 연구는 토양미생물을 활성화한 영양염류 제거 공정의 질소, 인 제거 특성을 Denitrifying Phosphorus removing Bacteria(DPB)의 영향에 의한 관점에서 파악하고자 행하였으며, 또한 DPB의 무산소 상태 하에서의 탈질 및 인 섭취 특성에 대해서도 연구가 진행되었다. Batch test 결과, 토양미생물을 이용한 영양염류 제거 공정에서의 질소, 인 제거는 무산소 상태에서 탈질과 동시에 인을 섭취하는 DPB(Denitrifying Phosphorus removing Bacteria)의 영향이 상당한 것으로 나타났으며 무산소 상태에서의 DPB에 의한 인 섭취 속도가 호기상태에서의 약 50%에 달하였고 초기 nitrate 농도가 DPB의 인 섭취 속도에 대한 영향인자임을 알 수 있었다. 그리고 영양염류 제거 공정에서의 DPB의 존재는 전체 공정의 효율을 증대시키는 것으로 판단되었다.

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APID공정 내 동절기 개량형 간헐포기 운전모드 적용 및 개발 (Development and Application of Modified Intermittently Aeration mode for Advanced Phase Isolation Ditch (APID) process at Winter Season)

  • 곽성근;안상우;정무근;박재로;박재우
    • 한국물환경학회지
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    • 제25권6호
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    • pp.872-878
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    • 2009
  • Advanced Phase Isolation Ditch (APID) process was studied to develop economic retrofitting technology, for the plants where retrofitting of common activated sludge process is required. In this study, to develop and apply the modified intermittently aeration mode as process control conditions for treating municipal wastewater, a demonstration plant was installed and operated in the existing sewage treatment plant of P city. During this study, the average effluent $BOD_5$, SS, T-N, and T-P concentrations were 6.3, 4.5, 10.0, and 1.3 mg/L. The modified mode decreased the nitrification capability more than the conventional mode in the application period. Nitrate in the anaerobic condition can have a negative effect on biological phosphorus removal. In the decreasing nitrate levels, the modified mode increased the biological ability of removal phosphorus more than the conventional mode in this study. Therefore, newly developed APID process with modified intermittent aeration mode can be one of the useful processes for stable organic matter and nutrients removal.

소규모 오수처리를 위한 $A_{2}O$ SBR과 $A_{2}O$ SBBR에서 유입 유기물 농도변화에 따른 염양염류 제거 특성 비교 (A Comparison of Nutrients Removal Characteristics by the Variation of Organics in $A_{2}O$ SBR and $A_{2}O$ SBBR for the Small Sewerage System)

  • 박영식;정노성;김동석
    • 한국환경보건학회지
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    • 제32권5호
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    • pp.451-461
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    • 2006
  • Laboratory scale experiments were conducted to study the conversion of sludge from conventional activated sludge to nitrogen-phosphorus removal sludge using two types of sequencing batch reactor (SBR) systems, a conventional SBR and sequencing batch biofilm reactor (SBBR). The nitrogen and phosphorus removal characteristics were similar between SBR and SBBR and the removal efficiencies were very low when the influent TOC concentrations were low. The nitrogen and phosphorus removal efficiencies in SBR were 96% and 77.5%, respectively, which were higher than those in SBBR (88% and 42.5%) at the high influent TOC concentration. In SBBR, the simultaneous nitrification-denitrification was occurred because of the biofilm process. The variations of pH, DO concentration and ORP were changed as the variation of influent TOC concentration both in SBR and SBBR and their periodical characteristics were cleary shown at the high influent TOC concentration. Especially, the pH, DO concentration and ORP inflections, were cleary occurred in SBR compared with SBBR.

2상 혐기성 소화공정에서 탈질반응이 산생성에 미치는 영향 (Effects of Denitrification on Acid Production in a Two-phase Anaerobic Digestion Process)

  • 박상민;박노백;서태경;전항배
    • 대한환경공학회지
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    • 제30권6호
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    • pp.628-636
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    • 2008
  • 축산폐수를 처리하기 위한 2상 혐기성소화(TPAD)공정을 생물학적 질소제거공정(BNR)과 결합하여 운전하였다. 질산화된 유출수를 TPAD 공정의 산생성 반응조로 반송할 경우 탈질반응이 산생성 반응에 미치는 영향과 효율을 관찰하였다. 질산화된 유출수의 반송은 유입된 COD의 VFA로의 전환율을 향상시켰다. 질산화된 유출수에 적응된 산생성 슬러지의 산생성 속도는 적응되지 않은 슬러지보다 6배 빠른 것으로 관찰되었다. 탈질반응은 생성된 VFA를 탄소기질로써 사용하였지만 산생성 활성도를 향상시킬 수 있었다. 탈질속도는 COD/N비에 영향을 받았지만, 질산성 질소에 대한 산생성 슬러지의 적응여부에 더욱 지배적인 영향을 받는 것으로 나타났다. 산생성 슬러지에 의한 탈질반응은 0차 반응을 보였으며 탈질속도는 1.31$\sim$1.90 mg/L$\cdot$h이었다. 반면, 질산화된 유출수에 적응된 산생성 슬러지의 탈질속도는 3.30 mg/L$\cdot$h로 거의 2배가 빠른 것으로 나타났다. COD/N비 10에서 1g의 질산성 질소를 탈질반응에 의해 제거하는데 소비된 COD의 양론비는 5.1$\sim$6.4 범위이었다.