• 제목/요약/키워드: Organic Loading Rate

검색결과 280건 처리시간 0.036초

유기물부하가 낮은 하수의 전달탈질공법에 의한 탈질방안 (The Study on denitrification of low organic loading sewage by pre-denitrification process)

  • 이철승;서종환;김진우
    • 한국환경과학회지
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    • 제13권9호
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    • pp.779-878
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    • 2004
  • This study was conducted to analyze the operating conditions of predenitrification process to improve the treatment efficiency in low organic loading sewage plant in use today, and to investigate the treatment efficiency of pilot plant added night soil as well as the nitrogen removal characteristics of pilot plant added carbon sources. In the operation under the condition of $BOD_{5}$ sludge load 0.03-0.28kg $BOD_{5}$/kg VSS/d and oxic ammoniac nitrogen sludge load 0.02-0.24 $kgNH_{4}^{+}$-N/kg MLVSS/d, nitrification efficiency is higher than 95%. In order to achieve 70% nitrogen removal at the T-N sludge loading 0.06kg T-N/kg VSSㆍd and the SRT 6~11 days, optimum operating factors were revealed to $CODc_{r}$/T-N ratio 9, recycle ratio 2.6, and denitrification volume ratio 0.33. At this time, denitrification capacity was approximately 0.09 kg $NO_{3}^{-}$-N/kg $CODc_{r}$; specific nitrification rate was 3.4mg $NH_{4}^{+}$-N/g MLVSS/hr; and specific denitrification rate was 4.8mg $NO_{3}^{-}$-N/g MLVSS/hr.

혐기성 생물반응기에 의한 축산폐수의 처리 (Treating Swine Wastewater by Anaerobic Bioreactors)

  • 이국희;김종수
    • 한국환경농학회지
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    • 제18권1호
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    • pp.54-60
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    • 1999
  • 축산폐수의 효율적 처리와 최적 메탄발생을 위하여 AF 그리고 이단의 ASBF-PR과 ASBF-SP 실험실적 생물반응기를 구성하고 $35^{\circ}C$ 항온조에서 수리학적체류시간 $1{\sim}2$일 그리고 유기물부하 $1.1{\sim}63kg-COD/m^3{\cdot}d$까지 연속 운전하여 처리효율을 비교, 분석하였다. 하수종말처리장의 혐기성 소화조 잉여 슬러지에 의한 혐기성 생물반응기의 식종은 효과적이었으며, 적응 기간은 약 40일 정도가 소요되었다. 생물반응기는 COD 제거율 $66.4{\sim}84.9$% 그리고 바이오 가스 발생량은 제거된 COD 기준 $0.333{\sim}0.796m^3/kg-COD{\cdot}d$. 으로 축산폐수의 처리에 효율적이었으며 유입 COD의 증가와 수리학적체류시간의 감소에 의한 유기물부하 증가의 경우 COD 제거율은 감소하고 바이오가스 발생량은 증가하였다. 높은 유기물부하에서 AF와 ASBF-PR의 처리효율은 비슷하였으며 ASBF-SP보다 우수하였다. 생물반응기에 충진된 미디어의 공극율과 공극의 크기가 비표면적에 비교하여 유기물질 제거능력 향상에 영향을 미치는 것으로 나타났다. 유입수 TKN 농도가 $1,540{\sim}1,870mg/L$ 범위에서 메탄발효 미생물의 활동은 저해영향을 받아 생물반응기의 처리효율과 바이오가스 발생량은 각각 50% 이하로 감소되는 것으로 나타났으므로 혐기성 소화가 축산폐수의 처리에 주 공정으로 응용된다면 전처리에 의한 TKN의 제거는 필수적이다.

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생물막공법에 의한 고농도 유기폐수 처리시 생물막 과부착 제어 (Control of Excessive Biofilm for the Treatment of High Strength Organic Wastewater by Biofilm Process)

  • 임재명;권재혁;한동준
    • 환경위생공학
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    • 제10권3호
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    • pp.67-77
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    • 1995
  • This study was performed for minimization of excessive biofilm effects at the high strength organic wastewater treatment. As a results of biofilm attachment experiment using piggery wastewater, aggravation of water quality due to excessive biofilm showed after 15 days of operating times.4 excessive biofilm phase, the equivalent biofilm thickness and VSS contents per unit aura were observed in the range of 1,100 to $1,200{\mu}m$ and 2.5 to 3.0mg $VSS/cm^{2}$, respectively. In the aerobic fixed biofilm reactor/anoxic fixed biofilm reactor(AFBR/ANFBR) process with endogenous respiration phase, the BOD removal efficiency was obtained more than 90 percentage at the surface loading rate and volumetric loading rate of the AFBR maintained less than 17 g $BOD/m^{2}{\cdot}$day and 1.7kg $BOD/m^{3}{\cdot}$day, respectively. The removal efficiency of TKN and $NH_{3}$-N at the loading rates below 5.60g $NH_{3}-N/m^{2}{\cdot}day$ and 0.56kg $NH_{3}-N/m^{3}{\cdot}$day were above 76 percentage and 82 percentage, respectively. In order to reduced sludge production rate and aggravation of water quality, endogenous respiration phase was accepted at first AFBR reactor. As a results of this operating condition, sludge production was minimized and removal efficiency was maintained stability.

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경안천 유역의 강우 시, 비 강우 시 난분해성 유기물질 유출 특성 (Runoff Characteristics of Refractory Organic Matters from Kyongan River Watershed during Rainfall Event and Dry Season)

  • 김태원;길경익
    • 한국물환경학회지
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    • 제27권4호
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    • pp.397-404
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    • 2011
  • This research investigates the runoff characteristics of refractory organic matters from Kyongan river watershed. Samples were taken 27 times during dry season, 4 times during rain events and analyzed into flow rate, Dissolved Organic Carbon (DOC), Particulate Organic Carbon (POC), Refractory Dissolved Organic Carbon (R-DOC), Refractory Particulate Organic Carbon (R-POC). R-DOC during dry season was the lowest in winter and showed a rising tendency in spring and R-POC changes less than R-DOC. The mass loading of Refractory Total Organic Carbon (R-TOC) in summer takes approximately 80% of 1 year mass loading. During rainy season, EMC of R-DOC was similar to R-DOC in dry season. But maximum EMC of R-POC was 12 times higher than that of R-POC in dry season. Results of the survey show that enhanced management of R-DOC in dry season and R-POC in rainy season is needed.

독성산업폐수의 생물학적 처리 (Biological Treatability of Toxic Industrial Wastewater)

  • 원성연;박승국;정근욱
    • 환경위생공학
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    • 제14권4호
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    • pp.172-179
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    • 1999
  • In this research, biological treatability test was conduced using seawater flocculated tannery wastewater by fixed biofilm reactor. During one cycle, the removal efficiency of organic corbon obtained with fixed biofilm process for treating tannery wastewater was considerably greater than that with activated sludge process. As the hydraulic retention time increased form 0.5day to 4day, removal efficiency of organic carbon was increased from 72% to 87.3%. Attached biomass in media increased with influent organic loading up to 29g MLSS/L, that could reduce the specific organic loading rate. The continual measurement of attached biomass was possible for the operation of the biofilm reactor. Equal and low nitrication rates were observed in both suspended growth activated sludge process and fixed biofilm process, despite commercial nitrifier was seeded. Through the process of treating the tannery wastewater, EC50 values which is measured by the use of Ceriopdaphnia dubia, were decreased to the extent of 50% after treatment of seawater flocculation and of 83% after biological treatment, respectively, compared to those of the untreated wastewater.

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The Effect of Sample Handling on the Rheological Measurement of Regenerated Silk Fibroin Formic Acid Solution using Parallel Plate Geometry

  • Cho, Hee-Jung;Um, In-Chul
    • International Journal of Industrial Entomology and Biomaterials
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    • 제22권1호
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    • pp.5-10
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    • 2011
  • The effect of sample handling condition on the rheological measurement of regenerated silk fibroin formic acid solution using parallel plate geometry was investigated. In case of loading method, the loading by pouring sample solution resulted in the best reproducibility of rheological measurement. Loading with spoon showed a high variance of viscosity value at low shear rate region ($0.01{\sim}1sec^{-1}$) while loading with syringe exhibited a low reproducibility of viscosity at high shear region ($1{\sim}100sec^{-1}$) with a disappearance of shear thinning phenomenon. It was revealed that the sample loading with small extra amount lead to the most reproducible result. The sample loading with the exact amount for the measuring plate resulted in a lack of reproducibility of high shear viscosity, while the loading with large extra volume produced a limited consistency of low shear viscosity. It was turned out that 3 min. of waiting time before measurement was the optimum condition for reliable result. When the waiting time was less than 1 min., the low shear viscosity was obtained with a lack of consistency. On the other hand, the sample solution started drying when the waiting time increased up to 5 min.

Entrapped Mixed Microbial Cell (EMMC) 공정을 이용한 수산물 가공 폐수처리에서 유기물 및 질소 동시제거 (Simultaneous Removal of Organic and Nitrogen in the Treatment of Fish Processing Wastewater using Entrapped Mixed Microbial Cell (EMMC) Process)

  • 정병철;박권삼;정병곤
    • 한국물환경학회지
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    • 제22권3호
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    • pp.492-497
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    • 2006
  • Feasibility of simultaneous removal of organic materials and nitrogen in the wastewater from fisheries processing plant was evaluated using entrapped mixed microbial cell (EMMC) process. The experiment was performed using activated sludge from municipal sewage treatment plant which was immobilized with gel matrix by cellulose triacetate. It was found the stable operation at the treatment system which is composed of anoxic and oxic tank, was possible when the organic and nitrogen loading rates were increased stepwise. The organic and nitrogen loading rates were conducted from 0.65 to $1.72kgCOD/m^3/d$ and from 0.119 to $0.317kg\;T-N/m^3/d$ with four steps, respectively. The maximum nitrogen loading rate which could satisfy the regulated effluent standard of nitrogen concentration, was $0.3kg\;T-N/m^3/d$. The removal efficiency of total nitrogen was decreased apparently as increasing nitrogen loading rates, whereas the removal efficiency of ammonium nitrogen was effective at the all tested nitrogen loading rates. Therefore, it was concluded that nitrification was efficient at the system. Nitrate was removed efficiently at the anoxic tank. whereas the nitrification efficiency at the oxic tank ranged 94.0% to 96.9% at the tested loading rates. The removal efficiencies of chemical oxygen demand (COD) and those of total nitrogen at the entire system ranged from 94.2% to 96.6% and 73.4% to 83.4%, respectively.

음식물찌꺼기 산발효산물과 하수슬러지의 혼합비 및 유기물부하가 병합처리에 미치는 영향 (Effects of Mixing Ratio and Organic Loading Rate of Acid Fermented Food Wastes and Sewage Sludge on the Anaerobic Digestion Process)

  • 안철우;박진식;장성호
    • 한국환경농학회지
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    • 제25권3호
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    • pp.247-256
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    • 2006
  • 본 연구에서는 실험실 규모의 혐기성 소화 실험을 통하여 고온산발효를 거친 음식물찌꺼기 산발효액과 하수슬러지의 적정 혼합비와 유기물 부하율에 따른 반응조 운전특성을 분석하여 실제 플랜트에 적용가능성을 검토하여 얻은 결론은 다음과 같다. 음식물지꺼기 고온 산발효액과 하수슬러지를 혼합하여 반연속식으로 혐기성 소화실험을 실시한 결과 유기물 부하율 3.3 gVS/L.d(혼합비 1:1)에서 최적인 것으로 평가되었는데, 이때 SCOD 제거효율은 평균 74.2%, VS 제거효율은 73.6%, 주입된 VS당 생성된 가스량은 $0.440{\ell}/g\;Vs_{add}.d$였으며 평균 메탄 함량은 66.5%로 나타났다. 이는 기존에 음식물찌꺼기를 하수처리장의 중온 소화조에서 처리할 때의 유기물 부하보다 높아 효율성, 경제성에서 유리한 것으로 판단되었다.

안정적 유출수질의 연속 하수처리를 위한 혐기성 멤브레인 필터와 통합된 미생물연료전지의 성능 평가 (Performance of Microbial Fuel Cell Integrated with Anaerobic Membrane Filter for Continuous Sewage Treatment with Stable Effluent Quality)

  • 이윤희;어성욱
    • 한국물환경학회지
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    • 제29권6호
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    • pp.808-812
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    • 2013
  • A new type of microbial fuel cell (MFC) with anaerobic membrane filter was designed to produce bioelectricity and to treat domestic sewage at relatively high organic loading rate (OLR) of $6.25kgCOD/m^3/day$ and short hydraulic retention time (HRT) of 1.9 h. A following aeration system was applied to ensure effluent water quality in continuous operation. Glucose was supplemented to increase the influent concentration of domestic sewage. Influent substrate of 95% was removed via the MFC and following aeration system and the corresponding maximum power density was $25.6mW/m^3$. External resistor of $200{\Omega}$ and air-cathode system contributed better MFC performance comparing to $2000{\Omega}$ and dissolved oxygen as a catholyte.

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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