• 제목/요약/키워드: Organic removal efficiency

검색결과 924건 처리시간 0.023초

격벽에 의한 조분리와 내부반송을 이용한 산화구 시설의 고도처리개선에 관한 연구 (A Study on the Treatment of Nutrients and Organic Carbon in Wastewater through Spatial Separation and Internal Recycling in a Modified Oxidation Ditch)

  • 이영신;오대민
    • 한국환경보건학회지
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    • 제37권1호
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    • pp.64-72
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    • 2011
  • This study was performed to assess the removal efficiency on nitrogen, phosphorus and organic carbon in wastewater by spatial separation and internal recycling in a modified oxidation ditch process (modified OD). The performances of the modified OD were evaluated via laboratory-scale experiments. The process was operated at hydraulic retention times of 6-48 hours and solid retention times of 17-38 days. We found that organic carbon removal efficiency increased after the modified OD operation period. T-N removal efficiency remained stable; average T-N concentration of effluent was 8.02 mg/l after modified OD operation. In contrast, T-P concentration of effluent was over 1 mg/l. Nitrogen and phosphorus removal efficiency of modified OD at HRT 12 hr were 83.1% and 74.1%, respectively. Also, maximum efficiency was found at SRTs from 20 to 30 days. T-N removal efficiency was 83.1% at a C/N ratio from 3.0 to 3.5. However, T-N removal efficiency decreased at C/N ratios over 3.5. Also, T-P removal efficiency increased with HRT at C/P ratios in the same condition. Maximum efficiency was 74.1% at a C/P ratio from 25 to 28. T-N removal efficiency was 79.2% and T-P removal efficiency was 65.3% after M4 mode operation (added to the internal recycle line connected to the anoxic reactor). The modified OD with spatial separation and internal recycling developed in this study is, therefore, believed to be an improvement for solving problems in the nutrient removal technologies.

광화학 반응을 이용한 고도 수처리에 관한 연구 (A Study on Water Advanced Water Treatment by Photochemical Reaction)

  • 김민식;성대동
    • 한국환경과학회지
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    • 제8권6호
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    • pp.699-704
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    • 1999
  • The Photodegradation efficient of total organic compounds in the drinking water has been studied using the methods of photocatalytic reaction and laser beam irradation. The results are summarized as follows; 1. The photodegradation efficiency of total organic compounds shows as $50\%\;to\;80\%$ as within one hour and after this the efficiency is decreased slowly. 2. The photodegradation efficiency of total organic compounds shows as 65 to $90\%$ within 3.3min. when Nd : YAG beam is irradiated to the water layer. 3. An excellent observation of the organic compound removal efficiency gives revealed in that case of the longest wavelength of 532nm is irradiated among the three kinds of laser beam sources of 532nm, 355nm and 266nm. 4. The organic compound removal efficiency shows high in the case of UV beam irradiation in the thin layer of water. However the efficiency is not depended on the thickness of water layer severely. 5. The removal efficiency of the organic compounds in the direct irradiation shows higher than the indirect irradiation in the case of UV beam, but the efficiency is not depended on the direction of irradiation in the case of Nd : YAG beam irradiation.

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생물막 유동층 반응기에 의한 주정공장의 고농도 유기성 폐수처리 (The Treatment of Concentrated Organic Alcoholic Distillery Wastewater by the Fluidized-Bed Biofilm Reactor)

  • 김동석;장희재
    • KSBB Journal
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    • 제6권4호
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    • pp.345-350
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    • 1991
  • 본 연구에서는 생물막 유동층 반응기를 이용하여 주정공장폐수를 처리함에 있어 상향유속과 유기물 부하의 변동에 따른 미생물의 성상과 유기물 처리효율을 조사하고, 미생물 성장과 유기물 처리효율을 조사하고, 미생물 성상에 따른 미생물 농도의 변화를 계산하여 이를 실측한 미생물 농도와 비교하였다. 상향유속에 따라 미생물 농도, 미생물막 두께는 민감한 반응을 보였고, 미생물 농도를 높게 유지하기 위해서는 상향유속을 낮게 유지하는 것이 효과적이나, 이에 따라 미생물막도 증가하나 유기물의 제거율은 상대적으로 증가하지 못하므로 적절한 상향유속을 유지하는 것이 유기물 제거율이 측면에서는 유리한 것으로 고찰되었다. 또한 기존 활성슬러지법에서 주정폐수를 처리할 때는 유기물 부하율 1.5kgCOD/$m^3{\cdot}day$에서 70% 이하의 COD처리효율을 나타내는데 반해, 생물막 유동층 반응기에서는 6kgCOD/$m^2{\cdot}day$ 이상에서도 80%의 COD처리효율을 나타내었다.

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산업폐수처리를 위한 호기성 생물막 유동층 반응기의 연구(II) -유기물 충격 부하가 미생물 성장에 미치는 영향- (A Study on an Aerobic Fluidized-Bed Biofilm Reactor for Treating Industrial Wastewaters(II) -Effect of Organic Shock Loading Rate on Biomass Characteristics-)

  • 안갑환;박영식;최윤찬;김동석;송승구
    • 한국환경과학회지
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    • 제2권4호
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    • pp.325-330
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    • 1993
  • A number of experiments were conducted in order to investigate the organic removal efficiency and biomass characteristics according to the organic shock loading rate in a fluidized bed biofilm reactor. At the operation conditions of HRT, 8.44 hour, superficial upflow velocity, 0.9 cm/sec and temperature, 22$\pm$$1^{\circ}C$, the removal efficiency of SCOD was founded to be 96.5, 92 and 90 % with the organic shock loading rate of 3.5, 10.8 and 33 kgCOD/m$^3$ㆍday, respectively. Within the F/M ratio ranged 0.4 to 2.0 kgCOD/kgVSSㆍday, the SCOD removal efficiency was shown as 90% at F/M ratio of 2.0 kgCOD/kgVSSㆍday, but the TCOD removal efficiency was 72 % at F/M ratio of 1.8 kgCOD/kgVSSㆍday. The average biomass concentrations were 7800, 14950 and 27532 mg/l on the organic shock loading rate of 3.5, 10.8 and 33 kgCOD/$\textrm{m}^3$ㆍday, respectively. This result was agreed with the fact that more biomass could be produced at high concentration of substrate, but some biomass was detached at the onset of shock and easily acclimated at the shock condition.

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$MIEX^{(R)}$+응집공정을 이용한 한외여과 공정의 최적화 : 다양한 전처리 공정의 적용에 따른 막 오염 현상 규명 (Optimization of Ultrafiltration Process using $MIEX^{(R)}$+Coagulation Process)

  • 손희종;황영도;노재순;정철우;강임석
    • 대한환경공학회지
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    • 제27권7호
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    • pp.753-761
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    • 2005
  • 전처리 공정에 따른 투과 flux 변화를 살펴보면 $MIEX^{(R)}$+UF 공정의 경우 응집+UF 공정에 비하여 높은 유기물 제거율을 나타내었으나 투과 flux 감소는 크게 나타났다. 따라서, 막 오염을 자세하게 규명하기 위하여 sequential filtration 실험결과 막 오염물질은 고분자 유기물질로 나타났으며, DOC 0.5 mg/L 이하의 유기물질이 막 오염 유발물질로 작용하고 있었다. 10 kDa 이하의 저분자 유기물질들은 $MIEX^{(R)}$ 처리에 의해 제거가 용이하여 막 표면에서 유기물 부하를 감소시켜 이로 인해 응집+UF공정에 비하여 투과 flux 감소율이 낮게 나타났다. $MIEX^{(R)}$+UF공정은 입자상 물질의 존재 유무에 관계없이 flux 감소율은 거의 유사한 경향을 보였으나 응집+UF공정은 용존성 유기물질만이 존재하는 시수에 비하여 입자상 물질이 존재하는 경우에 투과 flux 감소가 더 낮게 나타났다.

다중 유기물 특성 지표를 활용한 용존 유기물질 응집/침전 제거효율 예측 (Prediction of Coagulation/Flocculation Treatment Efficiency of Dissolved Organic Matter (DOM) Using Multiple DOM Characteristics)

  • 김보영;정가영;허진
    • 한국물환경학회지
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    • 제39권6호
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    • pp.465-474
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    • 2023
  • The chemical composition and molecular weight characteristics of dissolved organic matter (DOM) exert a profound influence on the efficiency of organic matter removal in water treatment systems, acting as efficiency predictive indicators. This research evaluated the primary chemical and molecular weight properties of DOM derived from diverse sources, including rivers, lakes, and biomasses, and assessed their relationship with the efficiency of coagulation/flocculation treatments. Dissolved organic carbon (DOC) removal efficiency through coagulation/flocculation exhibited significant correlations with DOM's hydrophobic distribution, the ratio of humic-like to protein-like fluorescence, and the molecular weight associated with humic substances (HS). These findings suggest that the DOC removal rate in coagulation/flocculation processes is enhanced by a higher presence of HS in DOM, an increased influence of externally sourced DOM, and more presence of high molecular weight compounds. The results of this study further posit that the efficacy of water treatment processes can be more accurately predicted when considering multiple DOM characteristics rather than relying on a singular trait. Based on major results from this study, a predictive model for DOC removal efficiency by coagulation/flocculation was formulated as: 24.3 - 7.83 × (fluorescence index) + 0.089 × (hydrophilic distribution) + 0.102 × (HS molecular weight). This proposed model, coupled with supplementary monitoring of influent organic matter, has the potential to enhance the design and predictive accuracy for coagulation/flocculation treatments targeting DOC removal in future applications.

질산화 반응조에서 유기물 부하에 따른 암모니아 제거 특성 (Characteristics of $NH_3$-N removal in nitrification reactor according to organic loading rate)

  • 강민구;김금용;김승하;류홍덕;이상일
    • 환경위생공학
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    • 제24권3호
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    • pp.7-15
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    • 2009
  • 본 연구에서는 DEPHANOX공정을 변형한 두 개의 질산화 반응조를 둔 M-DEPHANOX 공정과 기존 변형된 질산화 반응조를 RBC로 대체한 형태로 단일 질산화 반응조로 운전된 M-DEPHANOX 공정을 운전하였다. 그리고 두 공정의 제거율을 비교하기 위하여 질소, 인 및 유기물 제거율과 질산화 반응조의 유기물 부하에 따른 $NH_3$-N 제거율을 조사하였다. 연구결과 $NH_3$-N 제거율은 M-DEPHANOX공정이 91.8%, M-eBNR 공정은 96.9%로서 두 공정 모두 높게 나타났다. TCOD와 SCOD 제거율은 M-DEPHANOX공정은 84.1와 78.2%, M-eBNR공정은 83.4%와 75.6%이었다. 또한 유기물이 $NH_3$-N 제거율에 미치는 영향은 M-eBNR 공정의 질산화 반응조에서는 1차 침전조에서 거의 나타나지 않았다. M-eBNR 공정의 $NH_3$-N 제거율은 도시하수의 유입성상이 달라지더라도 안정적으로 유지되었다.

TiO2를 이용한 저농도 유기오염물질 제거에 관한 연구 (A Study on Low Concentrations of Organic Pollutants Removal using TiO2)

  • 이용훈;강선홍
    • 상하수도학회지
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    • 제27권1호
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    • pp.83-89
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    • 2013
  • Microbiological treatment, chlorination, and ozonation are usually used for water treatment. However, there is weakness that these methods can't decompose and eliminate recalcitrant organic pollutants perfectly. It is possible to eliminate recalcitrant organic pollutants when photocatalysis of $TiO_2$ is used. In this study, the removal efficiencies of organic pollutants by using photocatalyst of $TiO_2$ in the slightly polluted golf club water hazard and a river were investigated. The amount of $TiO_2$ was divided into three categories of 1 g/L, 2 g/L and 4 g/L in order to investigate the adequate amount of $TiO_2$ and the removal efficiency. UV light was used as a light source for the reaction of photocatalyst. As a conclusion in this study, the efficiency of turbidity removal was increased in proportion to the amount of $TiO_2$ until 4 hours. After then the turbidity was gradually decreased. Finally, the optimum concentration of $TiO_2$ was 4 g/L. The efficiency of COD removal was increased in proportion to the amount of $TiO_2$ regardless of time.

육상양식장 배출수내 생물학적 질소처리시 수리학적 체류시간의 영향 (Effect of Hydraulic Retention Time on Biological Nitrogen Removal in Land-based Fish Farm Wastewater)

  • 박노백
    • 한국수산과학회지
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    • 제50권3호
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    • pp.250-256
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    • 2017
  • This study investigated the removal efficiency of organic matter and nitrogen from fish farm effluent by hydraulic retention time (HRT) using an upflow biological filter (ANR system) reactor. The recycling time and influent flow in the reactor were controlled to 14.8, 7.4, 5.5 and 3.2 h to evaluate HRT. In addition, each reactor was coupled to a fixed bed upflow filter charged with media. The results showed that removal efficiency was ${\geq}95%%$ with an HRT of 5.5 h, and nitrification efficiency was reduced to 81% with an HRT of 3.2 h, although nitrification efficiency temporarily decreased due to the shock load as HRT decreased. Total nitrogen removal rate was also reduced to about 65% with an HRT of 3.2 h, which was considered a washout effect of nitrifying and denitrifying microorganisms by increasing the shearing force to the filter media, which decreased organic matter and nitrogen removal efficiency.

Effects of Organic Loading Rates on Treatment Performance in a Polyvinylidene Media Based Fixed-Film Bioreactor

  • Ahmed, Zubair;Oh, Sang-Eun;Kim, In S.
    • Environmental Engineering Research
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    • 제14권4호
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    • pp.238-242
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    • 2009
  • This study investigated the effects of organic loading rates on simultaneous carbon and nitrogen removal in an innovative fixed-film aerobic bioreactor. The fixed-film bioreactor (FFB) was composed of a two-compartment aeration tank, in which a synthetic filamentous carrier was submerged as biofilm support media, and a settling tank which polyvinylidene media (Saran) was used as settling aid for suspended solids. Three different organic loading rates, ranging from 0.92-2.02 kg chemical oxygen demand/$m^3$/day were applied by varying hydraulic retention time (HRT). The total soluble organic carbon removal efficiencies were in the range of 90-97%. The removal efficiency of ammonia was found to be in the range of 70-84%. Total nitrogen removal efficiency was found to be in the range of 40-45%, which indicates that denitrification reactions occurred simultaneously in the attached biofilm on the fibrous media in the aeration tank. The settling performance of suspended solids was significantly improved due to the presence of Saran media in the settling compartment, even for a short HRT. The fixed-film aerobic bioreactor used in this study demonstrated efficient treatment efficiency even at higher organic loading rates and at short HRTs.