• 제목/요약/키워드: 비질산화율

검색결과 3건 처리시간 0.018초

하수 고도처리를 위한 유로변경형 MBR공정의 개발 (Development of Influent Controlled Membrane Bioreactor for Biological Nutrient Removal on Municipal Wastewater)

  • 박종부;신경숙;허형우;강호
    • 대한환경공학회지
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    • 제33권7호
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    • pp.485-491
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    • 2011
  • 본 연구는 2개의 간헐혐기조, 막분리호기조 및 슬러지 가용화로 구성된 유로변경형 membrane bioreactor의 운영을 통하여 도시 하수의 영양염류 제거 특성을 규명하였다. 수리학적 체류시간(HRT)과 운영 여과 플럭스의 평균값은 각각 6.5 시간과 $20.4L/m^2{\cdot}hr$ (LMH)이었으며, 공정을 운전한 결과, $COD_{Cr}$, SS, TN 및 TP의 평균 제거율은 각각 94.0%, 99.3%, 99.9%, 69.9%와 66.9%이었다. 슬러지 생산계수, SDNR, SNR, SPPR 및 SPUR은 각각 0.34 kg VSS/kg BOD d, $0.067mg\;NO_3-N/mg\;VSS{\cdot}d$, $0.028mg\;NH_4-N/mg\;VSS{\cdot}d$, 16.0 mg P/g VSS d 및 2.1 mg P/g VSS d였다. 또한, 생산된 슬러지의 평균 질소 및 인 함량은 각각 8.9%와 3.5%였다.

도시 하수의 생물학적 고도처리를 위한 분리막 공정의 개발 및 동역학적 계수 산정 연구 (Estimation of Kinetic Coefficient in Submerged Membrane Bioreactor for Biological Nutrient Removal)

  • 박종부;박승국;허형우;강호
    • 대한환경공학회지
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    • 제31권2호
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    • pp.109-113
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    • 2009
  • 본 연구는 혐기조, 안정화조, 무산소조, 막분리호기조로 구성된 membrane bioreactor의 운영을 통하여 도시 하수의 영양염류 제거 특성을 규명하였다. 수리학적 체류시간(HRT)과 슬러지 체류시간(SRT) 및 운영 여과 플럭스의 평균값은 각각 6.2시간, 34.1일과 19.6 L/$m^2$/hr (LMH)이었으며, 공정을 운전한 결과, $COD_{Cr}$, SS, TN 및 TP의 평균 제거율은 각각 94.3%, 99.9%, 69.4% 및 74.6%이었다. 슬러지 생산계수, SDNR, SNR, SPPR 및 SPUR은 각각 0.653 kgVSS/kgBOD/d, 0.044 $mgNO_3$-N/mgVSS/d, 0.035 $mgNH_4$-N/mgVSS/d, 51.0 mgP/gVSS/d 및 5.4 mgP/gVSS/d였다. 또한, 생산된 슬러지의 평균 질소 및 인 함량은 각각 8.86%와 3.5%였다.

상업용 질산화 박테리아의 성장특성과 활성슬러지 공정에서의 적용 방법에 따른 연구 (A Study on the Growth Characteristics of Commercially Developed Nitrifying Bacteria and its Application to Activated Sludge Process)

  • 황규대;이봉희
    • 상하수도학회지
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    • 제20권4호
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    • pp.595-604
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    • 2006
  • The growth characteristics of Commercially Developed Nitrifying Bacteria (CDNB) were studied in laboratoryscale. CDNB, a pure, artificially isolated bacterium, was cultivated to produce Cultivated Nitrifying Bacterium Group (CNBG). The average ammonia removal rate of CDNB was 0.0234g $NH_4^+-N/g$ MLSS/hr. CNBG was produced in the batch reactor and Specific Nitrification Rate (SNR) was determined at 0.0107g $NH_4^+-N/g$ MLSS/hr. The SNR of CNBG was lower than the SNR of CDNB because the diverse and multi-cultured microbial growth took place during cultivation. The effect of the temperatures and the mixing ratios of sewage and culture solution on the SNR of CNBG was studied. The SNR of CNBG, 0.0107g $NH_4^+-N/g$ MLSS/hr at $27^{\circ}C$, decreased to 0.0048g $NH_4^+-N/g$ MLSS/hr at $15^{\circ}C$, and temperature coefficient (${\Theta}$) was calculated to be 1.07. With the varied sewage mixing ratios, the SNR of CNBG remained unchanged. Activated sludge reactors maintaining an MLSS of 2,000mg/L at HRT of 4 h were operated under conditions in which dosage of Concentrated CNBG Solution (CCNBGS, 10,000mg MLSS/L) and application method of CNBG were varied. The reactor with 20mL of CCNBGS took shorter time to oxidize $NH_4^+-N$ reaching 1mg/L than the reactor with 5mL of CCNBGS showing that higher dosages were associated with greater mass removal of $NH_4^+-N$. However, the total removal was not great. In terms of different methods of CNBG application, reactor seeded with 20mL of CCNBGS took 3days to reach 1mg/L of effluent ammonia concentration while reactor dosed with 20% (v/v) CNBG implanted media took 2days. Both the control reactor and the reactor dosed with 20% (v/v) media only did not reach 1mg $NH_4^+-N/L$ after operating 18days. The reactor with CNBG implanted media had the highest $NH_4^+-N$ removal rate because of maintaining high concentration of Nitrifying Oxidizing Bacteria (NOM), and is regarded as an appropriate method for the activated sludge process.