• 제목/요약/키워드: Nitrification and Denitrification

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다공성 담체를 이용한 생물막 반응조의 질소화합물 분해에 관한 연구 (A Study on Degradation of Nitrogen Compounds by Biofilm Reactor Packed with Porous Media)

  • 조혜미;김소연;윤지현;한기봉
    • 한국물환경학회지
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    • 제23권5호
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    • pp.776-780
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    • 2007
  • A biofilm reactor packed with porous media was investigated for nitrogen removal of synthetic wastewater. The effect of different loading rates on the nitrification was sustained to be steady state with stable efficiency of 50~60% in the range of $0.0083{\sim}0.017gNH_4-N/gMLVSS{\cdot}day$ of F/MN ratio and $1{\sim}2kgNH_4-N/m^3{\cdot}day$ of media volumetric loading rate. However, nitrification efficiency was rapidly decreased to 25~30% as F/MN ratio and media volumetric loading rate were increased to the range of $0.025{\sim}0.034gNH_4-N/gMLVSS{\cdot}day$ and $3{\sim}4kgNH_4-N/m^3{\cdot}day$, respectively. Also the consumption rate of alkalinity was higher under 8 hours of HRT than unter 6 hours of HRT. Accordingly the influent loading rate variation by detention time with influent flow influenced more on the nitrification efficiency than the influent loading rate variation by the influent concentration did. The temperature effect on the nitrification showed 25% higher in summer than in winter as the results reported by other researchers who reported that the nitrification efficiency in biofilm showed 20% increase from 55% to 75% when the temperature was raised from $20^{\circ}C$ to $25^{\circ}C$. Denitrification with sulfur-media showed 90% removal efficiency under steady-state with no effect from the increase of influent concentration and empty bed contact time (EBCT) change such as EBCT was decreased from 8.4 hr to 4.3 hr and $NO_3-N$ loading rate was changed within the range of $0.1{\sim}0.4kgNO^3-N/m^3{\cdot}day$. Accordingly Denitrification with sulfur-media is feasible for post denitrification at the concentration less than $80mgNO^3-N/L$.

SBR을 이용한 하수와 우사폐수로 구성된 혼합폐수의 영양소 제거 (The Nutrient Removal of Mixed Wastewater composed of Sewage and Stable Wastewater using SBR)

  • 김홍태
    • 한국환경과학회지
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    • 제8권5호
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    • pp.617-623
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    • 1999
  • This study was carried out to obtain the optimal operating parameter on organic matters and nutrient removal of mixed wastewater which was composed of sewage and stable wastewater using SBR. A laboratory scale SBR was operated with An/Ae(Anaerobic/Aerobic) ratio of 3/3, 2/4 and 4/2(3.5/2.5) at organic loading rate of 0.14 to 0.27 kgBOD/$m^3$/d. TCOD/SCOD ratio of mixed wastewater was 3, so the important operating factor depended upon the resolving the particulate parts of wastewater. Conclusions of this study were as follows: 1) For mixed wastewater, BOD and COD removal efficiencies were 93-96% and 85-89%, respectively. It was not related to each organic loading rate, whereas depended on An/Ae ratio. During Anarobic period, the amount of SCOD consumption was very little, because ICOD in influent was converted to SCOD by hydrolysis of insoluble matter. 2) T-N removal efficiencies of mixed wastewater were 55-62% for Exp. 1, 66-76% for Exp. 2, and 67-81% for Exp. 3, respectively. It was found that nitrification rate was increased according to organic concentration in influent increased. Therefore, the nitrification rate seemed to be achieved by heterotrophs. During anoxic period, denitrification rate depended on SCOD concentration in aerobic period and thus, was not resulted by endogenous denitrification. However, the amount of denitrification during anaerobic period were 3.5-14.1 mg/cycle, and that of BOD consumed were 10-40 mg/cycle. 3) For P removal of mixed wastewater, EBPR appeared only Mode 3($3^*$). It was found that the time in which ICOD was converted to VFA should be sufficient. For mode 3 in each Exp., P removal efficiencies were 74, 87, and 81%, respectively. But for 45-48 of COD/TP ratio in influent, P concentration in effluent was over 1 mg/L. It was caused to a large amount of ICOD in influent. However, as P concnetration in influent was increased, the amounts of P release and uptake were increased linearly.

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매립지 침출수 현장 처리를 위한 폴리우레탄과 개질토의 특성 분석 실험에 관한 연구 (Characterization of Polyurethane and Soil Layers for In-situ Treatment of Landfill Leachate)

  • 박찬수;정영욱;박중섭;백원석;신원식;천병식;한우선;박재우
    • 한국물환경학회지
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    • 제23권2호
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    • pp.281-286
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    • 2007
  • A chemical and biological permeable barrier with economic feasibility is suggested to treat landfill leachate in this study. The proposed composite layers consist of bentonite, and polyurethane (PU) foam that is mixed with powdered activated carbon (PAC) and inoculated with microorganisms from local wastewater treatment plant. Each layer is mixed with local sand, and yellow brown soil. Batch tests were conducted to investigate the sorptions of nitrate on the PU foam and PAC, and nitrification/denitrification rate of each layer material. Nitrification occurred in 30 minutes with initial ammonia concentration of 100 mg/L, and the concentration of nitrate attached in the PU foam increased after 270 minutes. Results of denitrification batch tests showed 76.6%, 87.3% and 88% of nitrate removal efficiency at 10%, 20% and 30% of the volume ratio of PU foam, respectively. The pH increased from 7 to 9.42, and alkalinity increased from 980 mg/L to 1720 mg/L during the denitrification batch tests. In the column experiments using the proposed composite layers with 20% of the volume ratio of the PU foam, about 96% of BOD, 63% of COD, 58.1~79.5% of total nitrogen were removed.

MBR 단일 반응조에서 용존산소 농도에 따른 동시 질산화-탈질반응(SND)의 영향 (Effects of DO concentration on Simultaneous Nitrification and Denitrification(SND) in a Membrane Bioreactor(MBR))

  • 박노백;최우영;윤애화;전항배
    • 한국환경농학회지
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    • 제28권4호
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    • pp.371-377
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    • 2009
  • In this study, simultaneous nitrification and denitrification (SND) from synthetic wastewater were performed to evaluate dissolved oxygen(DO) effects on chemical oxygen demand(COD) and nitrogen removal in a single membarne bio-reactor(MBR). DO levels in MBR at Run 1, 2, and 3 were 1.9~2.2, 1.3~1.6, and 0.7~1.0 mg/L, respectively. Experimental results indicated that DO had an important factor to affect COD and total nitrogen(TN) removal. SND were able to be accomplished in the continuous-aeration MBR by controlling ambient DO concentration. It is postulated that, because of the oxygen diffusion limitation, an anoxic micro-zone was formed inside the flocs where the denitrification might occur. From the results of this study, 96% of COD could be removed at DO of 0.7mg/L. At run 2 72.92% of nitrogen was removed by the mechanisms of SND (7.75mg-TN/L in effluent). In this study, SND was successfully occurred in a MBR due to high MLSS that could help to form anoxic zone inside microbial floc at bulk DO concentrations of 1.3~1.6mg/L.

황입자를 이용한 독립영양탈질에서의 아질산성질소 탈질 조건 탐색 (Nitrite Removal by Autotrophic Denitrification Using Sulfur Particles)

  • 강우창;오상은
    • 한국환경농학회지
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    • 제29권3호
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    • pp.221-226
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    • 2010
  • 축산폐수는 고농도의 유기물 및 질소를 함유하고 있으므로 적절한 처리 방법이 요구된다. 본 연구는 황을 이용한 독립영양 탈질 방법으로 질산성 질소에서 질소가스로의 탈질이 아닌 아질산성질소에서의 황산화 탈질을 연구하였으며 탈질 미생물의 최적 성장 조건을 찾고자 하였다. 초기 알칼리도가 충분한 조건에서는 아질산성질소 탈질 저해가 관찰되지 않았으며 실험온도가 $20^{\circ}C$인 경우에도 $30^{\circ}C$와 비교할 때 큰 저해 없이 탈질이 진행되었다. 하지만 초기 아질산성질소의 농도 300 mg/L 이상에서 lag phase가 늘어나 기질저해가 나타났다. 알칼리도가 충분하지 않은 조건에서 질산성질소의 탈질효율은 10%인 반면 아질산성질소의 탈질의 95% 이상이었다. 산소가 존재할 경우 산소를 이용하여 탈질이 이루어지지 않았음에도 불구하고 황산화 미생물이 산소를 이용하여 황산염의 농도가 증가하였다. 아질산성질소 탈질 시 알칼리도의 소모가 관찰되었으나 질산염 탈질시 보다 알칼리도의 소모가 적었으며 황산염 생성 또한 적었다. 황이용 아질산성 질소 탈질은 외부탄소원의 추가적인 주입 없이 저렴한 황입자를 이용하며 질산성질소 황산화 탈질의 단점인 알칼리도 파괴, 황산염이온 생성의 단점을 보완할 수 있는 효과적인 탈질 방법이 될 것으로 기대된다.

GPS-X 기반 모델링에 의한 강변사업소 처리효율 분석 및 반류수 처리 공정 설계 (GPS-X Based Modeling on the Process of Gang-byeon Sewage Treatment Plant and Design of Recycle Water Treatment Process)

  • 신춘환
    • 한국환경과학회지
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    • 제25권11호
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    • pp.1493-1498
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    • 2016
  • The efficiencies of Gang-Byeon sewage treatment facilities, which are based on GPS-X modelling, were analysed and used to design recycle water treatment processes. The effluent of an aeration tank contained total kjeldahl nitrogen (TKN) of 1.8 mg/L with both C-1 and C-2 conditions, confirming that most ammonia nitrogen ($NH_3{^+}-N$) was converted to nitrate nitrogen ($NO_3{^-}-N$). The concentrations of $NH_3{^+}-N$ and $NO_3{^-}-N$ were found to be 222.5 and 227.2 mg/L, respectively, with C-1 conditions and 212.2 and 80.4 mg/L with C-2 conditions. Although C-2 conditions with higher organic matter yielded a slightly higher nitrogen removal efficiency, sufficient denitrification was not observed to meet the discharge standards. For the total nitrogen (T-N) removal efficiency, the final effluent concentrations of T-N were 293.8 mg/L with biochemical oxygen demand (BOD) of 2,500 mg/L, being about 1.5 times lower than that (445.3 mg/L) with BOD of 2,000 mg/L. Therefore, an external carbon source to increase the C/N ratio was required to get sufficient denitrification. During the winter period with temperature less than $10^{\circ}C$, the denitrification efficiency was dropped rapidly even with a high TKN concentration (1,500 mg/L). This indicates that unit reactors (anoxic/aerobic tanks) for winter need to be installed to increase the hydraulic retention time. Thus, to enhance nitrification and denitrification efficiencies, flexible operations with seasons are recommended for nitrification/anoxic/denitrification tanks.

생물막 반응키에서의 폐수 처리 및 Fluorescence In Situ Hybridization에 의한 복합 미생물계 구조 해석 (Wastewater Treatment and Microbial Structure Analysis by Fluorescence In Situ Hydridizationin a Biofilm Reactor)

  • 김동진;한동우;이수철;박병곤;권일;성창근;박완철
    • KSBB Journal
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    • 제17권1호
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    • pp.80-87
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    • 2002
  • 유기물 제거뿐만 아니라 안정적으로 질소와 인의 동시 제거를 위한 순환식 생물막 반응기를 제작, 운전하여 최적의 운전 인자를 도출하고, 질소 제거의 텃 번째 단계인 질산화 및 뒤이은 탈질에 관여하는 미생물들의 군집 구조 분석을 수행하였다. 유기물 제거와 질소와 인의 동시 제거를 위한 순환식 생물막 반응기는 143일 동안 운전되었다. 이 결과 $COD_{cr},\;BOD_5$, SS의 경우 각각 88, 88, 97%의 평균 제거효율을 보였다 이 기간 중 질산화율은 약 96% 정도로 유입 ${{NH_4}^{+}}_{-}N$의 대부분이 제거됨을 보였다. 하지만 탈질율은 평균 45% 정도로 나타났다. 반응기로 유입되는 총 인의 경우 약 44%가 제거되었다. 질소제거의 첫 번째 단계인 질산화가 일어나는 호기성 반응조 내 질산화 미생물의 경우 FISH 관찰 결과, 주요 암모니아 산화균 및 아질산 산화균으로는 Nitrosomonas spp.와 Nitrospira sap.가 관찰되었다. 또한 탈질 반응이 일어나는 준혐기성 반응조에서는 Rhodobacter, Rhodovulum, Roseebacter 그리고 Paracoccus 속에 속하는 탈질 미생물들이 전체 미생물의 약 10~20% 정도를 차지하며 분포하였다.

Alcaligenes faecalis NS13에 의한 호기성 종속영양 질산화 및 탈질화 (Characterization of heterotrophic nitrification and aerobic denitrification by Alcaligenes faecalis NS13)

  • 정택경;라창식;조기성;송홍규
    • 미생물학회지
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    • 제52권2호
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    • pp.166-174
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    • 2016
  • 호기적 조건에서 질산화와 탈질화를 동시에 진행하는 Alcaligenes faecalis NS13 균주를 분리하여 다양한 특성을 파악하였다. 이 균주는 $15-37^{\circ}C$ 온도에서 생장할 수 있으며 암모니움 산화율이 높고 고농도의 암모니움 환경에서도 생장이 저해되지 않고 초기 암모니움 농도 증가에 따라 제거량이 증가하였다. pH와 염분농도에 대해서도 내성 범위가 넓어 암모니움 산화가 영향을 받지 않았다. 질산화에 이어진 탈질화로 인해 질산염의 축적이 일어나지 않았으며 탈질화의 중간산물인 아산화질소는 미량 검출되었지만 배양 후 모든 질소 화합물을 측정한 결과 약 42.8%가 $N_2$로 전환된 것으로 추정되었다. 탈질화는 PCR 증폭을 통해서 탈질화에 관여하는 유전자 nitrate reductase gene, napA과 nitrous oxide reductase gene, nosZ의 존재로 뒷받침되었다. 또한 배지 내 질소의 46.4%가 NS13 균주로 동화되었기 때문에 폐수처리 시 질산화 및 탈질화 후에 슬러지로 처분한다면 실질적으로 89% 이상의 우수한 암모니움의 제거효과를 거둘 수 있을 것이다.

하수고도처리공법의 유입하수량 변화에 따른 슬러지 질산화/탈질속도 변화 (Change of Sludge Denitrification and Nitrification Rate according to the Operating Conditions in Advanced Wastewater Treatment Processes)

  • 이명은;오정익;박노석;고대곤;장해남;안용태
    • 멤브레인
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    • 제28권1호
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    • pp.31-36
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    • 2018
  • 본 연구에서는 막결합생물반응조(MBR)공법을 비롯한 하수고도처리공법에서 유입하수량의 변화에 따른 슬러지 특성 변화를 파악하고자 하였다. 일 1.5톤을 처리하는 모형실험시설에서 설계유량 대비 유입하수량을 100, 70, 40, 10%로 변화시켜가며 이에 따른 비탈질속도(specific denitrification rate)와 비질산화속도(specific ammonia oxidation rate)의 변화를 측정하였다. 각 공법의 폭기조에서 채취한 슬러지의 비질산화속도는 유입하수량 100% 조건에서 세 가지 공법 모두 유사한 값($0.10gNH_4/gMLVSS/day$)으로 측정되었다. 유입하수량이 70%에서 40%로 감소함에 따라 비질산화속도가 크게 감소하는 경향을 나타냈다. 비탈질속도 역시 유입하수량이 감소함에 따라 최대 50%가량 감소하였다. 유입하수량이 감소할수록 비탈질속도와 비질산화속도가 감소하는 경향을 나타냈으나 원수의 총질소 농도와 반응조 내 미생물 농도를 고려하면 질소제거율에 영향을 미칠 정도는 아니었다. 따라서 유입하수량이 감소하는 경우에도 반응조 내 미생물 농도를 높게 유지할 수 있다면 안정적인 질소 제거가 가능할 것으로 판단된다.

생물학적 영양염류 제거를 위한 돈사폐수의 반응 특성 (Reaction Characteristics of Piggery Wastewater for Biological Nutrient Removal)

  • 한동준;류재근;임연택;임재명
    • 환경위생공학
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    • 제13권1호
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    • pp.44-56
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    • 1998
  • This study was performed to investigate the reaction characteristics of piggery wastewater for biological nutrient removal. The reaction characteristics were discussed the fraction of organics, the behavior of nitrogen, nitrification, denitrification, and the behavior of phosphorus. The fraction of readily biodegradable soluble COD was 11-12 percent. The ammonia nitrogen was removed via stripping, nitrification, autotrophic cell synthesis, and heterotrophic cell synthesis. The removal percents by each step were 12.1%, 68.9%, 15.0%, and 4.0%, respectively. Nitrification inhibition of piggery wastewater was found to occur at an influent volumetric loading rate over 0.2 NH$_{3}$-N kg/m$^{3}$/d. Denitrification rates were the highest in the raw wastewater and the lowest in the anaerobic effluent. The denitritation of piggery wastewater came out to be possible, and the rate of organic carbon consumption decreased about 10 percent. The phosphorus removed was released in the form of ortho-p in the aerobic fixed biofilm reactor, it was caused by autooxidation. The synthesis and release of phosphorus were related to the ORP and the boundary value for the phase change was about 170mV. In the synthesis phase, the phosphorus removal rate per COD removed was 0.023mgP$_{syn}$/mgCOD$_{rem}$. The phosphorus contents of the microorganism were 4.3-6.0% on a dry weight basis.

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