• 제목/요약/키워드: N removal

검색결과 2,203건 처리시간 0.029초

Expanded Polystylene(EPS) 여재를 이용한 BNR(Biological Nutrient Removal) 공정 개발 (Development of BNR(Biological Nutrient Removal) Process Using Expanded Polystylene(EPS) Media)

  • 류홍덕;민경국;이정훈;최경영;임헌은;김철환;이상일
    • 대한환경공학회지
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    • 제28권1호
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    • pp.1-6
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    • 2006
  • 본 연구에서 수행한 입상형의 발포 폴리스티렌을 이용한 고도처리 공정은 기존의 상용화되거나 개발중인 영양염류 처리공정에 비해 수리학적 체류시간을 상당히 줄일 수 있고 동절기에도 온도의 영향을 크게 받지 않는 장점을 가지고 있다. 도시하수를 이용하여 bench-scale 연구를 수행한 결과 T-N 제거효율의 경우 HRT 6 hr 및 4 hr에서 각각 약 55% 및 51%로서 HRT가 짧아졌을때 단지 약 4%의 처리효율 감소가 관찰되었다. 온도 영향에 있어서 여름철과 겨울철의 T-N 제거효율을 비교해본 결과 T-N 제거 효율이 각각 약 65% 및 54%로 관찰되어 여름철이 겨울철에 비해 약 11% 더 높은 효율이 관찰되었으며 겨울철 효율저하는 주로 암모니아성 질소의 질산화가 원활이 이루어지지 않았기 때문인 것으로 관찰되었다. 유입부하 및 C/N 비에 관한 연구에서는 유량 및 농도의 변화가 심한 하 폐수 처리에 있어서도 안정된 처리수질을 확보할 수 있었으며, C/N 비가 감소에 따른 처리효율 저하가 크지 않음을 관찰 할 수 있었다. 따라서 본 개발 시스템을 기존의 중 소규모 하수처리장에 적용할 경우 유입수내의 유기물을 최대한 활용하여 영양염류를 처리할 수 있을 것이라 기대된다.

Ferrate(VI)를 이용한 발전소 탈황폐수 처리에 관한 연구 (A study on the desulfurization wastewater treatment using Ferrate(VI))

  • 조은영;박찬규
    • 상하수도학회지
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    • 제31권4호
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    • pp.297-301
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    • 2017
  • Wastewater treatment using ferrate (VI) solution is becoming a promising technology for several years, because it is high efficient and harmless technology. In this study, the ferrate (VI) solution was tested to treatment of desulfurization wastewater. The effluent from desulfurization wastewater treatment process of power plant was used as raw water, and the COD and T-N removal efficiency of ferrate(VI) solution were investigated. In the test, as the injection rate increased from 0.1 to 1.0%, the removal efficiency of COD also slightly increased, about 80% of COD were removed in 1.0% of injection rate. In the case of T-N, about 50% of T-N was removed in the condition of 1.0% of injection rate. The removal efficiency of COD and T-N also affected by reaction time, maximum removal efficiency was shown in 30 min of treatment. From these results, the wastewater treatment with ferrate(VI) solution can be great solutions for treatment of non-biodegradable pollutants in wastewater, especially for the 3rd treatment of wastewater.

지렁이 분변토를 접종한 세라믹 바이오필터의 암모니아 제거에 미치는 온도의 영향 (Effect of Temperature on Removal of Ammonia in the Ceramic Biofilter Inoculated with Earthworm Casts)

  • 조경숙
    • 환경영향평가
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    • 제9권1호
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    • pp.39-46
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    • 2000
  • Removal of ammonia using the porous ceramic biofilter inoculated with earthworm casts was characterized. By assuming a plug air flow in the biofilter and applying the Michaelis-Menten equation, the maximum removal rate of $NH_3$ was $280.7g-N{\cdot}m^{-3}{\cdot}h^{-1}$($18.0g-N{\cdot}kg^{-1}{\cdot}d^{-1}$) at $30^{\circ}C$. $NH_3$ removal rate was increased as temperature increases from $15^{\circ}C$ to $35^{\circ}C$. The maximum removal rate was $285.8g-N{\cdot}m^{-3}{\cdot}h^{-1}$($18.8g-N{\cdot}kg^{-1}{\cdot}d^{-1}$) at $35^{\circ}C$. At $15^{\circ}C$, the $NH_3$ removal rate was $122.8g-N{\cdot}m^{-3}{\cdot}h^{-1}$($8.1g-N{\cdot}kg^{-1}{\cdot}d^{-1}$). When 210 ppm $NH_3$ was supplied to the biofilter at space velocity of $220h^{-1}$, the removal efficiency of $NH_3$ at 15, 25, 30 and $35^{\circ}C$ was 80, 90, 95, and 96%, respectively. The removal rate of the ceramic biofilter was 3 to 15 times higher than other biofilters comparing the removal efficiency of $NH_3$ per unit volume of carrier. This result indicates that earthworm casts and porous ceramics are very good inoculum source and carrier, respectively, for the $NH_3$-degrading biofilter.

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전기투석을 이용한 지하수 중의 질산성질소 제거 (The removal of Nitrate-nitrogen from ground water by electrodialysis)

  • 민지희;김한승
    • 상하수도학회지
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    • 제22권3호
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    • pp.307-314
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    • 2008
  • In this study, the effects of applied voltage, solution pH and coexistence of other ions such as sulfate ion (${SO_4}^{2-}$) and chloride ion ($Cl^-$) were investigated on the removal of nitrate-nitrogen ($NO_3{^-}-N$) from ground water by electrodialysis. The examined operating conditions were evaluated for optimizing the removal efficiency of $NO_3{^-}-N$. Real ground water samples taken from a rural area of Yongin city and artificial ones with components similar to the real ground water were tested for the study, which contained $NO_3{^-}-N$ concentration of 17mg/L that exceeds current drinking water quality standard of 10 mg/L. The increase in the removal rate of $NO_3{^-}-N$ was observed as the applied voltage increased from 5V to 30V, while no significant increase in the removal rate appeared at the applied voltage beyond 20V during a given operating time. The removal rate appeared to get lower at both acidic and basic condition, compared to neutral pH. Coexistence of of ${SO_4}^{2-}$and $Cl^-$ demanded much longer operating time to achieve a given removal rate or to meet a certain level of treated water concentration. When nitrate ion was combined with ${SO_4}^{2-}$and $Cl^-$, the removal rate was reduced by 4.29% and 10.83%, respectively.

N, P 농도에 따른 Chlorella vulgaris의 성장 및 하수고도처리능 평가 (Advanced wastewater treatment capacity and growth of Chlorella vulgaris by nitrogen and phosphorus concentrations)

  • 한수현;이윤희;황선진
    • 상하수도학회지
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    • 제27권1호
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    • pp.77-82
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    • 2013
  • The growth and removal capacity of nitrogen and phosphorus of Chlorella vulgaris were evaluated in artificial wastewater with different nitrogen and phosphorus concentrations as element growing components for microalgae growth. The nitrogen concentration was varied in 9, 15, 30 and 60 mg-N/L with fixed phosphorus concentration of 3 mg-P/L. The growth and phosphorus removal capacity of C. vulgaris were high at initial nitrogen concentration of 15 and 30 mg-N/L, and the corresponding N/P ratios calculated were 5 and 10. In the case of varying in 1.5, 3, 6 and 10 mg-P/L of phosphorus concentration with fixed nitrogen concentration of 30 mg-N/L, the growth and removal capacity of nitrogen and phosphorus were excellent with phosphorus concentration of 3 and 6 mg-P/L. The corresponding N/P ratios were shown as 10 and 5. Therefore, the appropriate N/P ratio was concluded between 5 and 10 for wastewater treatment using C. vulgaris.

인공습지 실험시설의 5년간 결과 및 고찰(지역환경 \circled3) (Review of 5-year Experimental Data from Treatment Wetland)

  • 김민희;윤춘경
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.649-654
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    • 2000
  • Field experiment was performed from August 1996 to June 2000. The pilot plant was installed in Konkuk University and the effluent from septic tank of school building was used as an influent to the treatment basin. The treatment basin was composed of sand and reed. Average removal rate of BOD, SS was about 75.9%, 73.4%, respectively. T-P removal rate was about 47.3%, and T-N removal rate was 19.6%. The reason for poor T-N removal might be due to high influent concentration and short retention times. As operation period increased, BOD removal rates were increased, and SS and T-P removal rates did not change significantly, but T-N removal rates were decreased.

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ISOLATION, IDENTIFICATION AND CHARACTERIZATION OF AN IMMOBILIZED BACTERIUM PRODUCING N2 FROM NH4+ UNDER AN AEROBIC CONDITION

  • Park, Kyoung-Joo;Cho, Kyoung-Sook;Kim, Jeong-Bo;Lee, Min-Gyu;Lee, Byung-Hun;Hong, Young-Ki;Kim, Joong-Kyun
    • Environmental Engineering Research
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    • 제10권5호
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    • pp.213-226
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    • 2005
  • To treat wastewater efficiently by a one-step process of nitrogen removal, a new bacterial strain producing $N_2$ gas from ${NH_4}^+$ under an aerobic condition was isolated and identified. The cell was motile and a Gram-negative rod, and usually occurred in pairs. By 16S-rDNA analysis, the isolated strain was identified as Enterobacter asburiae with 96% similarity. The isolate showed that the capacity of $N_2$ production under an oxic condition was approximately three times higher than that under an anoxic condition. Thus, the consumption of ${NH_4}^+$ by the isolate was significantly different in the metabolism of $N_2$ production under the two different environmental conditions. The optimal conditions of the immobilized isolate for $N_2$ production were found to be pH 7.0, $30^{\circ}C$ and C/N ratio 5, respectively. Under all the optimum reaction conditions, $N_2$ production by the immobilized isolate resulted in reduction of ORP with both the consumption of DO and the drop of pH. The removal efficiencies of $COD_{Cr}$, and TN were 56.1 and 60.9%, respectively. The removal rates of $COD_{Cr}$, and TN were the highest for the first 2.5 hrs with the removal $COD_{Cr}/TN$ ratios of 32.1, and afterwards the rates decreased as reaction proceeded. For application of the immobilized isolate to a practical process of ammonium removal, a continuous operation was executed with a synthetic medium of a low C/N ratio. The continuous bioreactor system exhibited a satisfactory performance at 12.1 hrs of HRT, in which the effluent concentrations of ${NH_4}^+$-N was measured to be 15.4 mg/L with its removal efficiency of 56.0%. The maximum removal rate of ${NH_4}^+$-N reached 1.6 mg ${NH_4}^+$-N/L/hr at 12.1 hrs of HRT(with N loading rate of $0.08\;Kg-N/m^3$-carrier/d). As a result, the application of the immobilized isolate appears a viable alternative to the nitrification-denitrification processes.

폐수의 감압 암모니아 탈기에 관한 연구 (A Study on the Decompressed Ammonia Stripping from Ammonia Contained Wastewater)

  • 신대윤;오유경
    • 한국환경보건학회지
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    • 제27권1호
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    • pp.93-99
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    • 2001
  • This study aims at finding out pertinent reaction conditions for treating high concentration ammonia contained in N-chemical factory wastewater with decompressed ammonia stripping method that was designed. And it also tries to investigate adsorption capability of removed ammonia to soil. The results from experiments are as follows ; 1. The removal rate of N $H_3$-N of synthetic wastewater was under 85% at pH 10 with decompressed ammonia stripping method. The reaction time in pressure 360 mmHg at pH 11 and 12 was shorter than in 460 mmHg, and the removal rate of N $H_3$-N with decompressed ammonia stripping method at 9$0^{\circ}C$ was 11~15% higher than air stripping 2. The optimum conditions for decompressed ammonia stripping with synthetic sample were shown as pH 12, temperature 9$0^{\circ}C$, internal reaction pressure 460 mmHg and reaction time 50 minutes. These conditions were applied to treat the wastewater containing organic-N 290.5mg/$\ell$, N $H_3$-N 168.9mg/$\ell$, N $O_2$-N 23.2mg/$\ell$, N $O_3$-N 252.4mg/$\ell$, T-N 735mg/$\ell$. Organic-N turned out to be removed 60%, the removal rate of N $H_3$-N IS 94%, T-N is 50%. But N $O_2$-N and N $O_3$-N were increased with 7.8% and 14.9% respectively. 3. The CO $D_{Sr}$ removal rate in decompressed ammonia stripping reaction was 42% and S $O_4$$^{2-}$ was removed 8.2%. It was turned out caused with higher pH and thermolysis. 4. In soil adsorption of ammonia desorbed from the decompressed stripping process of wastewater, the recovery rate was 76% in wet soil.

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무산소-호기공정을 이용한 순환식 생물여과반응기에서 동시 질산화 및 탈질화의 특성 연구

  • 이수철;김동진
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 춘계학술발표대회
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    • pp.343-346
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    • 2000
  • 본 BAF 반응기 연구에서의 C/N비의 증가는 산소의 친화도가 큰 호기성 종속영양 미생물에게 유리한 조건을 형성하여 질산화의 효율을 감소시켰으나 공기양의 증가로 인해 질산화 미생물의 활성도는 다시 증가하였다. 총 질소의 제거율은 동일한 C/N비에서 공기량을 증가하여 많은 양의 암모니아성 질소가 질산성 질소로 산화될 때 증가하였으며 이 결과는 무산소조에서 많은 다공성의 여재에 미생물이 두꺼운 생물막을 형성하여 생물막 안쪽으로 용존산소가 쉽게 전달되지 않아 탈질에 큰 영향을 미치지 않은 결과라고 볼 수 있다.

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교대연속유입식 SBR 공정을 이용한 하수중의 질소 및 인 제거 (Nitrogen and Phosphorus Removal in Domestic Wastewater using SBR Process with Flow Changing Continuous Feed and Cyclic Draw)

  • 서인석;김홍석;김연권;김지연
    • 한국물환경학회지
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    • 제22권2호
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    • pp.203-208
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    • 2006
  • A continuous feed and cyclic draw SBR process was developed to overcome flow rate fluctuation and to maximize organic matters utilization efficiency for nitrogen and phosphorus removal. The developed SBR process was operated with two parallel reactors. Influent was supplied to one reactor which was not obligately aerated. At the same time, the other reactor was just aerated without supplying influent. In addition this mode was changed periodically. Cycle time was 6hr and aeration time ratio($t_{aer}/t_{total}$) was 0.33, respectively. $COD_{cr}$ and SS removal efficiencies of 95% or higher were achieved. Nitrogen removal was so greatly influenced by influent $COD_{cr}/T-N$ ratio. At influent $COD_{cr}/T-N$ ratio of 5.7, removal efficiencies of ammonia-N, T-N and T-P were 96%, 78% and 55%, respectively. Influent $COD_{cr}/T-N$ of 4 or higher ratio was necessary to achieve 60% or higher nitrogen removal. Organic matters of influent was efficiently utilized in denitrification reaction and consumed COD has a good correlation with removed T-N(about 6.5 mgCOD/mgTN). Continuous feed and cyclic draw SBR process could be one of alternative processes for the removal of nutrients in rural area where $COD_{cr}/T-N$ ratio was low and fluctuation of flow rate was severe.