• 제목/요약/키워드: $COD/NO_3-N$ Ratio

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Hybrid type 반응조에서의 혐기성 슬러지의 탈질(II): 기질이 글루코스인 경우 (Denitrification of Anaerobic Sludge in Hybrid Type Anaerobic Reactor(II): Glucose as Substrate)

  • 신항식;김구용;이채영
    • 상하수도학회지
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    • 제14권2호
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    • pp.196-206
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    • 2000
  • Methanogenesis and denitrification in an upflow sludge baffled filter (UBF) reactor were studied using glucose as a fermentative substrate. Experiments were carried out to investigate how to reduce ammonification by changing alkalinity and $COD/NO_3-N$ ratio. Characteristics of granular sludges were examined by specifics methanogenic activity(SMA) and specific denitrification rate(SDR) tests. Microstructures of granules were examined using a scanning electron microscopy(SEM). It was found that COD was removed efficiently owing to the diverse microorganisms. In nitrate conversion, not only $COD/NO_3-N$ ratio but also influent alkalinity played important role in the ratio of denitrification and ammonification of nitrate. This reactor achieved over 95% COD and 99% nitrate removal efficiencies when influent contained 4000 mgCOD/L and $700mgNO_3-N/L$ at the hydraulic retention time of 24 hours. As $COD/NO_3-N$ ratio decreased, granular methanogenic activities using acetate and butyrate as substrates increased while activities using propionate and glucose decreased. There were three types in granules according to the surface color; gray, yellowish gray, and black. Gray or yellowish gray-colored granules were composed two layers, which were composed of black inner side and gray or yellowish gray surface substances. SEM illustrated that both were rod-type and cocci-type microorganisms resembling Methanothrix sp. and Methanococci sp. This study showed that by controlling the influent alkalinity and $COD/NO_3-N$ ratio, ammonification and denitrification could be manipulated.

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USB 반응조에서 ${NO_3}^--N/COD$ 비해 따른 탈질과 메탄화 동시반응 (Simultaneous Denitrification and Methanogenesis at Various ${NO_3}^--N/COD$ Ratios in an USB Reactor)

  • 박상민;전항배;박노백;오규환
    • 대한환경공학회지
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    • 제27권11호
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    • pp.1174-1179
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    • 2005
  • 상향류식 슬러지 블랭킷(USB) 반응조에서 탈질 및 메탄생성 동시반응에 N/C(${NO_3}^--N/COD$)비가 미치는 영향을 관찰하였다. 질산염을 첨가하지 않은 반응조에서 84%의 유입 COD가 메탄가스로 전환되었다. N/C 비가 증가함에 따라, 질소가스의 발생량은 증가하였으나, 메탄가스 발생은 감소하여 N/C 비 0.20 이상에서 중지되었다. 유입된 질산염은 완전히 질소가스로 탈질 되었으나 N/C비가 0.40에서는 유기탄소원의 부족으로 인해 질산염 제거효율이 40% 미만으로 감소하였다. N/C 비가 증가함에 따라 탈질반응에 의해 소비된 COD 양은 증가하였다. 메탄생성 반응은 N/C 비 0.05 이상에서 영향을 받기 시작하였는데, 이는 질산염과 이들의 탈질과정에서 발생된 중간생성물의 저해영향보다는 탈질과 메탄생성에 관여하는 미생물간의 유기탄소원에 대한 기질경쟁으로 설명될 수 있다. 동시 탈질과 메탄생성반응이 발생할 수 있는 임계 N/C 비는 0.20이었으며, 이 범위에서 유입된 COD는 탈질, 메탄생성 및 세포합성을 포함하는 기타 생화학적 반응들에 의해 92% 이상 제거되었다.

고정생물막 공법을 이용한 질소제거에 있어서 제한요인에 관한 연구 (A Study on the Limiting Factors in Nitrogen Removal with Fixed Biofilm Process)

  • 지용희
    • 환경위생공학
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    • 제11권3호
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    • pp.63-68
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    • 1996
  • This study was to discuss limiting factors influenced on the removal efficiencies of nitrogenous compounds investigated using the polypropyrene media which was to attach microorganism in order to apply the fixed-biofilm process. The main limiting factors are the hydraulic retention time (HRT), C/N ratio, $COD/NO_{3}-N$ ratio and temperature. The hydraulic retention time HRT were 6, 8, 10, 12 hrs and the C/N ratio range was 2.5-9.5. The $COD/NO_{3}-N$ ratio range was 3.2-21.9 and the temperature were 15, 20, 25, 30, $35^{\circ}C$, respectively. The results of this study are summerized as follows. 1. Hydraulic retention time (HRT) to obtain removal efficiencies of T-N higher than 85% had to be 10 hrs above. 2. The removal efficiencies of T-N decreased at C/N ratio from 6.2 to 4.8 in this anoxic-contact aeration system. 3. Denitrification rate decreased at $COD/NO$_{3}$-N$ ratio from 8.0 to 5.0 4. As temperature increased, removal efficiencies of T-N increased.

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회전원판(回轉圓板) 생물막(生物膜) 공법(工法)을 이용한 하(下)·폐수(廢水)의 고도처리(高度處理) 공정(工程) 개발(開發) (Development of a Rotating Biological Contactor(RBC) Process for the Advanced Wastewater Treatment)

  • 김응호;박재로;윤정로
    • 상하수도학회지
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    • 제8권2호
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    • pp.1-11
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    • 1994
  • This study was conducted to develop a new RBC process available for the effective removal of organic matters and nitrogen in sewage. The RBC process for the oxidation organic compounds and nitrification was designed to occur at the 1st-stage and next-stage RBC respectively. Then nitrified water was recycled to the denitrifying RBC located at the lower part of the 1st-stage RBC. Some results were summarized as follows. 1. The loading limitation was represented as $60g{\cdot}COD/gm^2/day$ in experiment of simultaneous removal of organic matter and nitrogen. The maxmum COD % removal was 85% at the load $35g{\cdot}COD/m^2/day$. 2. The $NO_3-N$ % removal was approximately 80% at the load $60g{\cdot}COD/m^2/day$ and the maximum $NO_3-N$ remaval rate was $3.9g{\cdot}COD/m^2/day$ and the overall C/N ratio of 11.0 as required to achive 80% of $NO_3-N$% removal. 3.$NO_3-N$ removal rate was rapidly decreased above the load $7g{\cdot}NH_4{^+}-N/m^2/day$ and the maximum $NO_3-N$ removal rate was $3.7g{\cdot}NO_3-N/m^2/day$. 4. Irrespective of the recycle ratio, the COD % removal at the system of 2-stage RBC unit was nearly constant as 89% while the maximum one in the 1st-stage unit was 77% in the case of 50% recycle. 5. The maximum COD % removal in the 3-stage RBC system was 93% while 1st-stage one being 80%, under the $NH_4{^+}-N$ load of $7.4g/m^2{\cdot}d$. Also maximum percentage of nitrification and denitrification was 69% and 41% respectively, under the same $NH_4{^+}-N$ load.

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COD/Nitrate-N비가 혐기성 슬러지에서 탈질과 메탄화에 미치는 영향 (Influence of COD/Nitrate-N Ratio on Denitrification and Methanogenesis in Anaerobic Sludge)

  • 박상민;전항배;최창옥;이준상
    • 대한환경공학회지
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    • 제27권7호
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    • pp.739-745
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    • 2005
  • 포도당을 사용하여 적응된 전형적인 혐기성 소화 슬러지와 포도당과 질산성 질소를 동시에 사용하여 적응된 혐기성 소화 슬러지, 두 가지를 이용하여 다양한 C/N 비에서의 탈질반응 및 메탄반응의 동시연구가 수행되었다. 세 가지 다른 serum bottle에 잘 적응된 혐기성 소화 슬러지를 넣어 잘 혼합한 후, 탄소 기질로는 포도당을 사용하여 1,000 mg/L로 고정하였다. 질산칼륨을 이용하여 질산염을 주입하여 C/N 비를 30, 20, 및 10으로 변화시키면서 시간에 따른 가스 발생량, 가스 조성 및 유기물질 제거를 관찰하였다. C/N 비가 높을수록 메탄생성반응에 의한 유기물질제거가 우세한 반면, C/N 비가 낮을수록 메탄생성 반응보다는 탈질에 의한 유기물질제거가 주를 이룸을 알 수 있었다. 10 이하의 낮은 C/N 비에 적응된 슬러지에서 다른 종류의 탄소기질을 이용한 SMA실험 결과, 순수 혐기성 슬러지에서 아세테이트를 사용하였을 경우에 가장 높은 0.76 g COD/g VSS day을 보여주었고, SDNR실험 결과, 낮은 C/N 비 5에서 적응된 슬러지에서 아세테이트를 탄소기질로 사용하였을 경우에 가장 높은 SDNR 값 1.38 g ${NO_3}^--N/g$ VSS day를 나타내었다.

복합생물막 반응기를 이용한 하수처리시 탈질화 특성 (Characteristics of Denitrification from Municipal Wastewater Treatment using a Combined Fixed Film Reactor (CFFR) Process)

  • 이종현;남해욱;김영규;박태주
    • 한국환경과학회지
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    • 제8권1호
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    • pp.107-113
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    • 1999
  • A new biological nutrient removal system combining $A^2/O$ process with fixed film was developed in this work and the characteristics of denitrification were especially investigated in the combined fixed film reactor(CFFR). Media was added in the anaerobic, anoxic and aerobic reactors, respectively. Tests were made to establish the effluent level of $NO_x-N$, COD, DO and nitrite effects on $NO_x-N$ removal in the CFFR by decreasing hydraulic retention time (HRT) from 10.0 to 3.5 hours and by increasing internal recycle ratio form 0% to 200%. The influent was synthesized to levels similar to the average influent of municipal wastewater treatment plants in Korea. SARAN media with a porosity of 96.3% was packed 40% / 130% / 25% based on its reactor volume, respectively. It was found that COD rarely limited dentrification in the anoxic reactor because of high $C/NO_x/-N$ ratio in the anoxic reactor, while DO concentration in the anoxic reactor and $NO_2-N/NO_x/-N$ from the aerobic effluent inhibited denitrification in the anoxic reactor. It was proved that the critical points of DO concentration in the anoxic reactor and $NO_2-N/NO_x/-N$ from the aerobic effluent were 0.15mg/L and 10%, respectively. As the internal recycle ratio increased, DO concentration in the anoxic reactor and $NO_2-N/NO_x/-N$ from the aerobic effluent increased. Especially, at the condition of internal recycle ratio, 200%, DO concentration in the anoxic reactor and $NO_2-N/NO_x/-N$ from the aerobic effluent exceeded the critical points of 0.15mg/L and 10%, respectively. Then, denitrification efficiency considerably decreased. Consequently, it was represented that the control of DO concentration in the anoxic reactor and $NO_2-N/NO_x/-N$ from the aerobic effluent can assure effective denitrification.

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연속 회분식 반응조의 최적 운전시스템에 관한 연구 (Study on the optimum operation system of Sequencing Batch Reactor)

  • 엄태규;고은주
    • 상하수도학회지
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    • 제13권4호
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    • pp.54-61
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    • 1999
  • SBR process used to evaluate the removal of organics, nitrogen and phosphorus on the basis of a report of research on a precedence at various operation cycle and condition change. Effluent concentration of COD were 50mg/l, 50mg/l, 90mg/l respectively, The removal rates of COD were nearly over 95% at Run 1, 2 and 4. But at Run 3, Effluent concentration of COD was 255.0mg/l, The removal rate of COD was 87% at Run 3. As Oxic/Anoxic rate was fixed and operating cycle of Oxic/Anoxic was changed, the removal rates of T-N were 74.7%, 46.9%, 28.5%, 63.3% respectively at Run 1~4. The case of Run 1 was best result. The removal rates of T-P was appeared in proportion to T-N removal rates and rest of $NO_2-N$. The removal rates of T-P were 51.2%, 35.5%, 41.5%, 51.9% respectively. The removal rates of COD, T-N, T-P were influenced on the change of SBR operation cycle. As organic loading rate was $1.43kgCOD/m^3day$ and C/N ratio was 3.0, operation cycle of Run 1 was best condition of T-N removal rates and T-P removal.

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다단 생물반응기에 의한 질소제거 (Nitrogen Removal from Wastewater by a Multi-stage Bio-reactor)

  • 최규철;정일현
    • 환경위생공학
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    • 제13권1호
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    • pp.91-103
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    • 1998
  • Design data for COD and nitrogen removal from wastewater were collected from Pilot's Multi-stage Bio-reactor. Hyraulic conditions and pollutant loadings were varied in order to optimize the biological and operational parameters. Pilot's experimental results summarize as followings. 1. T-N removal efficiency in the organic volumetric loading 0.2 kgCOD/m$^{3}$·d was obtained as maxium of 85% at internal recycle ratio 2.5 and in more ratio than this it was decreased. Organic removal efficiency was about 91% under the overall experimental conditions and not influenced by recycle ratio.. 2. Nitrification reaction was shown as maxium in the SCOD$_{cr}$/NH$^{+}$-N ratio of 6.5 and in more ratio than this it was decreased. Denitrification rate was the maxium as 85% in more than 7.5 of SCOD$_{cr}$/NO$_{x}$-N ratio and in the ratio over this ratio it becomes constant. 3. By utilizing an applied new model of Stover-Kincannon from Monod's kinetic model, concentration of T-N in the effluent according to flow quanity in the influent was estimated as 8.74 and -67.5 respectively. The formula for estimating T-N concentration of effluent was obtained like this: N$_e$=N$_0$(1- $\frac{8.74}{(QN$_0$/A)-67.05}$)

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ORP profile을 이용한 연속 회분식 반응기(Sequencing Batch Reactor)에서 무산소공정 추론 (Inference of Sequencing Batch Reactor Process using Oxidation Reduction Potential)

  • 심문용;부경민;임정훈;우혜진;김창원
    • 한국환경과학회지
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    • 제13권3호
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    • pp.245-250
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    • 2004
  • The SBR(Sequencing Batch Reactor) process is ideally suited to treat high loading wastewater due to its high dilution rate. SBR operates by a cycle of periods consisting of filling, reacting, settling, decanting and idling. The react phases such as aeration or non-aeration, organic oxidation, nitrification, denitrification and other bio-logical reactions can be achieved in a reactor. Although the whole reactions can be achieved in a SBR with time distributing, it is hard to manage the SBR as a normal condition without recognizing a present state. The present state can be observed with nutrient sensors such as ${NH_{4}}^{+}-N$, ${NO_{2}}^{-}-N$, ${NO_{3}}^{-}-N} and ${PO_{4}}^{ 3-}-P.$ However, there is still a disadvantage to use the nutrient sensors because of their high expense and inconvenience to manage. Therefore, it is very useful to use common on-line sensors such as DO, ORP and pH, which are less expensive and more convient. Moreover, the present states and unexpected changes of SBR might be predicted by using of them. This study was conducted to get basic materials for making an inference of SBR process from ORP(oxidation reduction potential) of synthetic wastewater. The profiles of ORP, DO, and pH were under normal nitrification and denitrification were obtained to compare abnormal condition. And also, nitrite and nitrate accumulation were investigated during reaction of SBR. The bending point on ORP profile was not entirely in the low COD/NOx ratio condition. In this case, NOx was not entirely removed, and minimum ORP value was presented over -300mV. Under suitable COD/NOx ratio which complete denitrification was achieved, ORP bending point was observed and minimum ORP value was under -300m V. Under high COD/NOx ratio, ORP bending point was not detected at the first subcycle because of the fast denitrification and minimum ORP value was under -300mV at the time.

각종 수소공여체의 첨가에 의한 $NO_3^--N$ 함유 폐수의 탈질 (Denitrification of the wastewater containing nitrate by various hydrogen donor addition)

  • 김형석;은종극;박승조
    • 한국환경과학회지
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    • 제4권3호
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    • pp.77-77
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    • 1995
  • This study was investigated with denitrification of wastewater containing nitrate using upflow sludge blanket process. Contents of this study were the NO3--N removal efficiency by various hydrogen donor addition, determination of optimum COD/$NO_3^--N$ ratio and characteristics of granular sludge.