• Title/Summary/Keyword: DO농도

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PU-AC 고분자 담체를 이용한 염색폐수처리

  • 김서연;신원식;김영훈;송동익
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2004.05a
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    • pp.312-315
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    • 2004
  • 염색가공 공정에서 배출되는 염색폐수는 염색 가공공정이나 사용하는 염료등에 따라 폐수량과 성상의 변화가 심하기 때문에 처리에 많은 어려움이 있다. 일반적인 염색폐수 처리방법으로는 물리화학절인 응집침전법과 생물학적인 활성슬러지법을 단독 또는 조합하여 주로 사용하여 왔다. 그러나 최근에는 기존시설의 처리 향상을 위한 다각적인 기술개발이 시도되고 있으며 그 일환으로 본 연구에서는 활성탄을 담지한 폴리우레탄 담체를 개발하여 염색폐수를 처리하고자 하였다. 본 연구에서는 담체를 이용한 염색폐수의 생물학적 처리 시 여러 인자들, 즉 COD/N 비, DO 농도, 담체의 충진율 등의 영향을 조사하기 위하여 회분식 실험을 수행하였다. 또한 회분식 실험에서 얻은 최적조건을 이용하여 파일럿 실험도 함께 수행하였다. COD/N 비가 COD 제거에 미치는 영향을 살펴보기 위해 COD/N 비를 조절하지 않은 경우와 COD/N 비를 2-3으로 조절한 경우에 대해서 비교하였다. 실험결과 염색폐수의 초기 COD 농도가 1,000 ppm일 때, 처리 후 COD 농도는 COD/N 비를 조절하지 않았을 경우 860 ppm (제거효율 = 18%), COD/N 비가 2일 경우 550ppm (제거효율 = 52%), COD/N 비가 3의 경우 390 ppm (제거효율 = 57%)으로 각각 나타났다. DO 농도가 COB 제거에 미치는 영향을 알아보고자 DO 농도를 1, 6, 7 mg/L로 변화시켰다. 그 결과 DO의 농도가 1 mg/L일 경우 COD 제거효율은 20% 정도였으나, DO 농도가 6 mg/L이상에서는 모두 80%에 가까운 제거효율을 나타내었다. 담체 충진율의 경우, 10% 충진시 40%, 20% 충진시 50%, 30% 충진시 70%의 제거효울을 각각 나타내었다. 회분식 실험에서 얻은 최적조건으로 파일럿 반응기를 100일 이상 운전한 결과 염색폐수의 COD 농도변화는 1,000ppm에서 380ppm로 평균 60%이상 제거되는 높은 효율을 보였다. 또 담체 첨가의 영향을 살펴보기위해, 담체를 충진하지 않은 조건에서 파일럿 반응기를 운전한 결과 평균 COD 제거율은 50%로 비교적 낮은 효율을 보였다.

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Effect of DO Concentration on Ammonia Oxidizing Bacteria in Aerobic Biofilm Reactor (호기성 생물막 반응기에서 Ammonia Oxidizing Bacteria에 대한 DO 농도의 영향)

  • Yu, Jae-Cheul;Park, Jeung-Jin;Hur, Sung-Ho;Kim, Yu-Jin;Byun, Im-Gyu;Lee, Tae-Ho;Park, Tae-Joo
    • Journal of Korean Society of Environmental Engineers
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    • v.29 no.1
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    • pp.106-112
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    • 2007
  • Ammonia oxidizing bacteria(AOB) oxidize ammonia to nitrite and are important microorganisms which control nitrification. Several environmental factors such as dissolved oxygen(DO), temperature and pH influence the growth of AOB. In this work, to assess the effect of DO concentration on AOB, four aerobic biofilm reactors packed with ceramic media were operated 1, 3, 5 and 7 mgDO/L, respectively. The optimal DO concentration with stable nitrification efficiency in aerobic biofilm reactor was above 5.0 mg/L. To assess the relationship between the DO concentration and the characteristics of AOB in aerobic biofiim reactor, DGGE and cloning based on PCR targeting 16S rRNA and amoA gene were performed. Additionally, INT-DHA activity test was proceeded to estimate the activity of AOB. As the results of DGCE and cloning, the community of AOB and the ratio of Nitrosomonas sp. changed little in spite of different nitrification efficiencies. INT-DHA activity test showed that the activity of AOB decreased as DO concentration decreased. It means that DO concentration does not affect the community of AOB, but the activity of AOB.

Nitrogen and Phosphorus Removal in Membrane Bio-Reactor (MBR) Using Simultaneous Nitrification and Denitrification (SND) (동시 질산화-탈질(SND) 반응을 적용한 MBR 반응조에서 질소 및 인 제거 특성)

  • Tian, Dong-Jie;Lim, Hyun-Suk;An, Chan-Hyun;Lee, Bong-Gyu;Jun, Hang-Bae;Park, Chan-Il
    • Journal of Korean Society of Environmental Engineers
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    • v.35 no.10
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    • pp.724-729
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    • 2013
  • Simultaneous nitrification and denitrification (SND) occurs concurrently in the same reactor under micro dissolved oxygen (DO) conditions. Anaerobic zone was applied for phosphorus release prior to an aerated membrane bio-reactor (MBR), and anoxic zone was installed by placing a baffle in the MBR for enhancing denitrification even in high DO concentration in the MBR. Phosphorus removal was tested by alum coagulation in the anaerobic reactor preceding to MBR. DO concentration were 2.0, 1.5, 1.0, 0.75 mg/L in the MBR at different operating stages for finding optimum DO concentration in MBR for nitrogen removal by SND. pH was maintained at 7.0~8.0 without addition of alkaline solution even with alum addition due to high alkalinity in the raw sewage. Both TCODcr and $NH_4^+$-N removal efficiency were over 90% at all DO concentration. TN removal efficiencies were 50, 51, 54, 66% at DO concentration of 2.0, 1.5, 1.0, 0.75 mg/L, respectively. At DO concentration of 0.75 mg/L with addition of alum, TN removal efficiency decreased to 54%. TP removal efficiency increased from 29% to 95% by adding alum to anaerobic reactor. The period of chemical backwashing of the membrane module increased from 15~20 days to 40~50 days after addition of alum.

Changes of Microbial Community Depending on Different Dissolved Oxygen in Biological Nitrogen Removal Process (생물학적 질소제거 공정에서 용존산소변화에 따른 미생물의 군집변화)

  • Park, Jong-Il;Lee, Tae-Jin
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.9
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    • pp.939-947
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    • 2008
  • PCR-DGGE method was applied to analyze changes of microbial community in simultaneous nitrification and denitrification (SND) bioreactor with various DO concentrations. In the analysis of eubacterial community, band profiles of DGGE were similar with 2 or 1 mg/L DO concentrations in the reactor. Experimental results led to 16 different bacteria being identified, including 5 dominant strains(3 strains of Uncultured Bacterium, 1 strains of Bacillus, 1 strains of Uncultured Bacteroidetes). DGGE results at 0.5 mg/L DO concentration led to 12 strains being identified, including 7 dominant strains(5 strains of Uncultured Bacterium, 2 strains of Zoogloea sp.). DGGE results at 0.1 mg/L DO concentration led to 11 strains being identified, including 3 dominant strains(1 strains of Uncultured Bacterium, 2 strains of Zoogloea sp.). In DGGE band profiles of $\beta$-AOB($\beta$-Ammonia Oxidizing Bacteria), only one band was observed. This band had 97% similarity with Nitrosomonas sp. done DNB Y20. This band was clearly observed at the 2, 1 and 0.5 mg/L DO concentrations, while the brightness of the band at 0.1 mg/L DO concentration was mostly dimmed. In DGGE band profiles of denitrification process, 5 bands(3 strains of Uncultured organism containing nirS, 2 strains of Uncultured organism containing nirK) were observed. Among those bands, the brightness of one band was gradually increased at the lower DO concentrations. This band has 86% identity with Uncultured organism clone eS1 cd1 nirS gene, partial cds. Based on this result, it could be concluded that Uncultured organism clone eS1 cd1 nirS gene, partial cds is a predominant microorganism in the denitrification process.

Microcomputer-aided Fermentation System for High Density Fed-Batch Cultivation (마이크로컴퓨터를 이용한 고농도 유가배양시스템)

  • 이형준;이계호허윤행
    • KSBB Journal
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    • v.5 no.3
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    • pp.307-313
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    • 1990
  • A microcomputer-aided fermentation system was constructed for high density fed-batch culture using dissolved oxygen(DO) as a substrate feeding indicator. DO signal was processed prior to aquisition to computer. Agitation speed and oxygen flow rate was changed stepwisely to maintain DO value at a constant level. Agitation speed was controlled by the output signal of D/A converter. Oxygen flow rate was controlled by a flow rate control valve connected to a stepping motor. Substrate was fed with a feeding pump operated by the abrupt increase of DO signal. Methylobacillus sp. SK1 was cultivated to test the system and 16.53g/l of cell density was obtained after 10 hr.

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Hydraulic Impact Scope and Dissolved Oxygen Distribution by the Micro-bubble Aeration in an Artificial Lake (인공호소에서 마이크로 버블 포기에 의한 수리학적 영향반경과 용존산소 분포)

  • Choi, Sunhwa;Park, Hyungseok
    • Ecology and Resilient Infrastructure
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    • v.3 no.4
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    • pp.263-271
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    • 2016
  • This study investigated the hydraulic impact scope and dissolved oxygen (DO) concentration distribution by the micro-bubble aeration in the Juksan Lake located in Asan city in Chungcheongnam-do province. A tracing experiment for hydraulic impact scope was used which constituted a 20% rhodamine solution. A 160 m-guideline was installed in the horizontal direction of the micro-bubble jet flow and the rhodamine concentration, water temperature, and DO concentration were measured at depths of 1 m, 2 m, and 3 m at intervals of 10 m. In the Juksan Lake, the effective range of jet flow discharged by the micro-bubble generator was about 40 m, and after then the jet plume moved up to 80 m to 120 m through the advection and diffusion processes of ambient water. DO concentration in the lake was maintained at 7.4-12.6 mg/L during tracking experiment. The DO of the lake sediments improved from 0.2 mg/L to 8.0 mg/L after applying micro-bubble aeration. In conclusion, the micro-bubble aeration can be an effective technology for the management and improvement of water quality in an agricultural reservoir.

Effect of Dissolved Oxygen on the Production of Epothilone in Bioreactor Cultures Sorangium cellulosum (Sorangium cellulosum의 생물반응기 배양에서 용존산소가 epothilone의 생산에 미치는 영향)

  • Park, Su-Jeong;Han, Se-Jong;Kim, Byung-Woo;Sim, Sang-Jun
    • KSBB Journal
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    • v.24 no.1
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    • pp.65-69
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    • 2009
  • The biological production of a potent anticancer agent, epothilone, by Sorangium cellulosum was carried out using flask and fermentor cultures. Soluble starch was selected as the main carbon source and the concentrations of lactose and yeast extract were optimized at 4 and 0 g/L, respectively, when using the flask cultures. In the fermentor cultures, the cells were cultivated at a high DO level of more than 80% of air saturation in the growth stage and then the DO level was controlled at about 50, 20 or 1-2% when the carbon source was exhausted. The epothilone production increased with decreasing DO level after the exhaustion of the carbon source, and the maximum concentration of epothilone was 5.4 mg/L. It was found that the DO level had significant regulation effects on the epothilone production.

Dynamic Change of the DO Concentration by Continuous Monitoring in Artificial Lake (인공 호소의 연속모니터링을 통한 DO 동적변화 규명)

  • Choi, Sunhwa;Lee, Seungheon;Park, Hyungseok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.494-494
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    • 2017
  • 국내의 호소는 대부분이 농업용수 공급을 목적으로 설치된 인공 호소이다. 최근 이상기후 및 유역 오염원 증가로 호소의 수질오염도가 증가 추이에 있으며, 특히 하절기 외기온도 상승과 함께 녹조 대량발생, 어류 집단폐사 등 수질오염사고가 야기되고 있다. 이러한 수질오염사고는 호소의 지역적 특성으로 인한 여러 가지 원인이 있겠지만 직접적인 원인으로는 호소의 산소 고갈에 기인된다. 본 연구에서는 농업용 호소의 수온, DO, EC 등에 대한 일주기 및 계절적 동적변화를 규명하여 호소의 수질개선대책수립에 활용하고자 하였다. 연구대상 지구는 경기도 시흥시에 소재하고 있는 M 농업용 저수지이며, 2015년 6월 4일부터 9월 22일까지 수온, DO, EC을 측정할 수 있는 연속 자동측정장치를 설치하였고, 측정지점은 저수지 수심을 상(바닥층에서 1.5m 상부), 중(바닥층에서 1.0m 상부), 하(바닥층에서 0.5m 상부)로 구분하여 각각 측정하였다. 호소의 수온은 일주기로 수온성층 형성과 대류혼합이 반복되었으며, 상 하층간의 수온 차이가 평균 $1.4^{\circ}C$, 최대 $5.0^{\circ}C$의 차이를 보였다. 또한 강우가 발생한 이후에는 일시적으로 저수지 상 하 층간 수온 차이가 거의 없는 것으로 나타났는데, 이는 강우에 의한 수체의 수직혼합으로 저수지 전체의 물질순환에 영향을 미친 것으로 판단된다. 호내 DO 농도는 일(day) 주기 동안 농도변화가 크게 나타났으며, 여름철 무강우 기간에는 저수지 바닥층의 평균 DO 농도가 약 0.5mg/L로 거의 무산소 상태가 지속되는 것으로 관측되었다. DO는 기온이 낮아지거나 강수가 발생할 때 대류에 의한 수직혼합에 의해 간헐적으로 회복되다가 다시 고갈되는 현상이 반복되는 것으로 나타났다.

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Effect of Influent C/N Ratio and DO on Denitrification of Nitrate Polluted Groundwater in a Biofilter Process (Biofilter 공정에서 유입 C/N비와 DO가 지하수의 질산성 질소제거에 미치는 영향)

  • Lee, Moo-Jae;Park, Sang-Min;Park, Noh-Back;Jun, Hang-Bae;Kim, Kong-Soo
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.4
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    • pp.355-361
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    • 2006
  • In this study, effects of influent C/N(COD/Nitrate) ratio and dissolved oxygen(DO) concentration on biological nitrate removal from groundwater were investigated in the fixed-type biofilter. Influent nitrate of 30 mg/L was removed completely by biological denitrification at the C/N ratio of 10 and 4.0, while residual nitrate of 5 mg/L occurred at the C/N ratio of 2.0, which resulted from deficiency of organic electron donor. Furthermore, nitrite was accumulated up to about 5 mg/L as the C/N ratio decreased to 2.0. Increase in DO concentration also inhibited denitrification activity at the relatively high C/N ratio of 5.0, which decreased the nitrate removal efficiency. Although the influent DO concentration was reduced as low as 0.3 mg/L using sodium sulfite($Na_2SO_3$), effluent nitrite was up to 3.6 mg/L. On the other hand, nitrate was completely removed without detection of nitrite at the DO concentration of 0.3 mg/L using nitrogen gas($N_2$) sparging. The organic matter for denitrification in biofilter were in the range from 3.0 to $3.5gSCOD/g{NO_3}^--N$, while utilized these values increased at the high DO concentration of 5.5 mg/L. In addition to the high DO concentration and the low influent C/N ratio, DO control by chemical such as sodium sulfite affected on biological denitrification, which resulted in the reduction of nitrate removal efficiency and nitrite build-up in a biofilter.

Effect of Cell Density on Xylitol Fermentation by Candida parapsilosis (Candida parapsilosis에 의한 Xylitol 생산시 균체농도가 미치는 영향)

  • Kim, Sang-Yong;Yoon, Sang-Hyun;Kim, Jung-Min;Oh, Deok-Kun
    • Korean Journal of Food Science and Technology
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    • v.28 no.5
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    • pp.970-973
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    • 1996
  • Effect of cell density on the xylitol production from xylose by Candida parapsilosis KFCC 10875 was investigated. The concentrated cells were obtained by centrifugation of culture broth. The xylitol production rate was maximum at the cell concentration of 20 g/l and the specific xylitol production rate decreased when the cell concentration was increased due to oxygen limitation. Effect of the initial concentration of xylose on the xylitol production was also examined using the concentrated cells of 20 g/l. The xylitol production rate, specific xylitol production rate, and xylitol yield from xylose were maximum at 170 g/l xylose. Above 170 g/l xylose, the xylitol production rate was remarkably decreased. The concentrated cells could also be obtained by adjusting the dissolved oxygen (DO) during fermentation. The rapid accumulation of cells up to 20 g/l was achieved by maintaining an increased level of DO during the exponential growth phase and then, for the efficient xylitol production, the DO was changed to a low level in the range of 0.7-1.5%. A fed-batch fermentation of xylose by adjusting the DO level was carried out in a fermentor and the final xylitol concentration of 140 g/l from xylose of 200 g/l could be obtained for 56 h fermentation.

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