• 제목/요약/키워드: Aeration speed

검색결과 93건 처리시간 0.024초

A Study on Bubbly Lubrication of High-Speed proceeding Bearing Considering Live Surface Tension

  • Chun, S.-M.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.111-112
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    • 2002
  • The influence of aerated oil on a high-speed proceeding bearing is examined by using the classical thermohydrodynamic lubrication theory coupled with analytical models for viscosity and density of air-oil mixture in fluid-film bearing including the live surface tension of aerated oil. Convection to the walls and mixing with supply oil and re-circulating oil are considered. The considered parameters for the study of bubbly lubrication are oil aeration level, air bubble size and shaft speed. The results show that, if the live surface tension is considered, the effect of air bubbles on the bearing load capacity is reduced due to temperature engagement comparing with that under the condition of a constant surface tension.

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하수처리 활성오니공정의 에너지 절감을 위한 퍼지 제어 방법에 관한 연구 (A Study on Fuzzy Control Method of Energy Saving for Activated Sludge Process in Sewage Treatment Plant)

  • 남의석
    • 전기학회논문지
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    • 제67권11호
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    • pp.1477-1485
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    • 2018
  • There are two major issues for activated sludge process in sewage treatment plant. One is how to make sewage be more clean and the other is the energy saving in sewage treatment process. The major monitoring sewage qualities are chemical oxygen demand, phosphorus, nitrogen, suspended solid in effluent. These are transmitted to the national TMS(Telemetry Monitoring System) at every hour. If these exceed the environmental standard, the environmental charges imposed. So, these water qualities are to be controlled below the environmental standard in operation of sewage treatment plant. And recently, the energy saving is also important in process operation. Over 50% energy is consumed in blowers and motors for injection oxygen into aeration tank. So, with the water qualities to be controlled below the environmental standard, the energy saving also is to be accomplished for efficient plant management. Almost researches are aimed to control water quality without considering energy saving. AI techniques have been used for control water quality. AI modeling simulator provided the optimal control inputs(blower speed, waste sludge, return sludge) for control water quality. Blower speed is the main control input for activated sludge process. To make sewage be more clean, the excessive blower speed is supplied, but water quality is not better than the previous. In results, non necessary energy is consumed. In this paper we propose a new method that the energy saving also is to be accomplished with the water qualities to be controlled below the environmental standard for efficient plant management. Water qualities in only aeration tank are used the inputs of fuzzy models. Outputs of these models are chemical oxygen demand, phosphorus, nitrogen, suspended solid in effluent and have the environmental standards. In test, we found this method could save 10% energy than the previous methods.

Control of Both Foam and Dissolved Oxygen in the Presence of a Surfactant for Production of $\beta$-Carotene in Blakeslea trispora

  • Kim, Seon-Won;Lee, In-Young;Jeong, Jae-Cheol;Lee, Jung-Heon;Park, Young-Hoon
    • Journal of Microbiology and Biotechnology
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    • 제9권5호
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    • pp.548-553
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    • 1999
  • A production of $\beta-Carotene$was attempted in a fed-batch culture of Blakeslea trispora by controlling both foam and dissolved oxygen in the presence of surfactant, Span 20. Results obtained from the shake flask cultures indicated that a high concentration of dissolved oxygen was needed for both cell growth and $\beta-Carotene$ synthesis, and the optimal concentration of glucose was found to be in the range of 50-100 g/l. In order to maintain the dissolved oxygen concentration level at higher than 50% of air saturation, pure oxygen was automatically sparged into the medium with air. Foam was controlled by bypassing air from the submerged aeration to the headspace in response to the foam that was caused by Span 20. High agitation speed was found to be detrimental to the cell growth due to shear damage, even though it provided sufficient dissolved oxygen. On the other hand, a low aeration speed caused stagnant regions in the fermentor because of improper mixing. Thus, for the fed-batch operation, agitation speed was increased gradually from 300 to 700 rpm to prevent cell damage at the initial stage of fermentation and to give efficient mixing for a viscous culture broth as the culture proceeded. By controlling dissolved oxygen and foam, a high concentration of $\beta-Carotene$otene (1,190 mg/l) was obtained in 6 days of the fed-batch culture of B. trispora with 2.5% of the dry cell weight, which was approximately 5 times higher than that of the batch cultures.

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Aureobasidium pullulans HP-2001 균주를 사용한 풀루란의 대량 생산을 위한 파이롯트 규모에서 용존산소와 관련된 조건의 최적화 (Pilot-scale Optimization of Parameters Related to Dissolved Oxygen for Mass Production of Pullulan by Aureobasidium pullulans HP-2001)

  • 고와;김이준;정정한;이잔홍;이진우
    • 생명과학회지
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    • 제20권10호
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    • pp.1433-1442
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    • 2010
  • Aureobasidium pullulans HP-2001 균주를 사용하여 풀루란을 대량 생산을 위하여 7 l 및 100 l 생물배양기를 사용하여 용존산소와 관련된 조건을 최적화하였다. 풀루란의 생산에 최적인 탄소원과 질소원은 각각 50.0 g/l 포도당 및 2.5 g/l 효모추출물이었으며 플라스크 규모에서의 풀루란 변환율은 37%이었다. 풀루란 생산 균주의 생장에 최적인 배지의 초기 pH 및 배양온도는 7.5 및 30oC이었으나 풀루란의 생산에 최적인 배지의 초기 pH 및 배양 온도는 각각 6.0 및 $25^{\circ}C$이었다. 7 l 생물배양기에서 Aureobasidium pullulans HP-2001 균주의 생육에 최적인 교반속도 및 통기량은 각각 600 rpm 및 2.0 vvm이었으나 풀루란 생산에 최적인 조건은 각각 500 rpm 및 1.0 vvm이었으며 최적 조건에서 풀루란의 생산농도는 18.13 g/l이었다. 100 l 생물배양기에서 풀루란 생산 균주의 생장에 최적인 내압은 0.0 kgf/$cm^2$이었으나, 풀루란 생산에 최적인 내압은 0.4 kgf/$cm^2$이었으며 최적 조건에서 풀루란의 생산 농도는 22.89 g/l이었다. 이는 내압이 없는 상태에 비하여 풀루란의 생산 농도가 1.38배 증가한 것이다.

향류 공기 구동식, 고속 폭기식 및 벤튜리식 포말분리기에 의한 양어장수의 단백질 및 부유 고형물의 제거 특성 (Characteristics of Proteins and Total Suspended Solids Removal by Counter Current Air Driven Type, High Speed Aeration Type and Venturi Type Foam Separator in Aquacultural Water)

  • 서근학;김병진;김성구
    • 한국수산과학회지
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    • 제33권3호
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    • pp.205-212
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    • 2000
  • 공기 구동식, 고속 폭기식 및 벤튜리식 포말분리 장치를 동일한 용량으로 제작하여 양어장 순환수 중의 단백질,총 부유 고형물 및 탁도를 제거하는데 있어 각 포말 분리장치의 운전 특성을 알아보고자 하였다. 공기구동식 포말분리기의 유략감소가 거의 없었으나 벤튜리식 포말분리기는 $66.1{\%}$정도의 유량감소가 발생하였으며 고속 폭기식 포말분리기는 $77.2{\%}$의 유량감소가 발생하였다. 공기 구동식, 고속 폭기식 및 벤튜리식 포말분리 장치의 단백질 제거속도는 수력학적 체류시간이 증가함에 따라 지수적으로 감소 하였다. 0.32 분 이상의 수력학적 체류시간에서는 공기 구동식 포말분리장치의 제거속도와 제거율이 가장 높게 나타났으며 그 이하의 수력학적 체류시간에 대해서는 고속 폭기식 포말분리 장치의 제거속도와 제거율이 가장 높은 것으로 나타났다. 수력학적 체류시간의 변화에 따른 총 부유 고형물과 탁도의 제거속도와 제거율의 변화는 단백질 제거속도 및 제거율의 변화와 거의 비슷하였으며 벤튜리식 포말분리기는 짧은 수력학적 체류시간에서는 총 부유고형물의 제거 효율이 다른 두 포말분리기에 비해 떨어지는 것으로 나타났다. 탁도의 제거는 공기 구동식 포말 분리기가 가장 우수한 것으로 나타났다.

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Bacillus substilits에 의한 치자황색소 부산물로부터 치자청색소의 생산 (Production of Gardenia Blue Color from Gardenia Waste by the Bacillus subtilis)

  • 김희구;이상준
    • 한국식품영양학회지
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    • 제11권6호
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    • pp.606-611
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    • 1998
  • For waste recyle, we were investigated on Gardenia blue color production using Gardenia by-product by Bacillus subtilits. Optimum conditions for producing blue pigment were found to be 30$^{\circ}C$, initial pH 6.5, glucose as a carbon source 3% and yeast extract as a nitrogen source 0.5%, respectively. Optimum conditions for fermentor culture were agitation speed 400rpm, aeration 2 vvm and inoculum 5%. The optimum perculture time for inoculum was 20 hrs for blue pigment production.

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교반형 막 반응기를 이용한 재조합 인간 세포의 무혈청 배지에 의한 $\gamma$-Interferon의 생산 (Economic Production of $\gamma$-Interferon from Recombinant Human Cells in Serum Free Medium by a Moving Aeration Membrane Bioreactor)

  • 박영식;김현규;임서규;박경유;이현용
    • 한국미생물·생명공학회지
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    • 제22권4호
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    • pp.389-394
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    • 1994
  • 8 X 10$^{6}$(viable cells/ml) of maximum cell density and 9000(IU/ml) of $\gamma$-IFN production were obtained at 55(ml/hr) of a perfusion rate by cultivating HSF cells using a moving membrane aeration bioreactor. This system proves to be an efficient culture process by maintaning 90% of viable cells during the whole cultivation periods. The metabolic molar quotient of glucose to lactate was 0.81 for overall ranges of glucose consumed while the evolution of ammonia was not linearly related to the consumption of glutamine. Low molar conversion ratio was observed in low consumptions of glutamine and high molar conversion ratio in high comsumptions. It also shows that the glutamolysis plays important role in the steady state conditions by evolving larger quantities of ammonia than lactate. At the above of 50 rpm, which is the optimum agitation speed for this bioreactor, the cell growth was severely affected while the IFN production was less decrea- sed, maintaing 1.5 X 10$^{-3}$(IU/cell/day) specific IFN production rate. The cumulatvie $\gamma$-IFN production was 7.2 X 10$^{8}$(IU) for 70 days of the cultivation, which yields 1 X 10$^{7}$ (IU/day) of IFN production rate. Therefore, a commercial production of $\gamma$-IFN by this culture process can be achievable by maintaining the above IFN productivity in a scaled-up culture system.

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발효조를 이용한 Monascus anka의 적색소와 황색소의 생산

  • 강성국;임종환;정순택;김선재
    • 한국미생물·생명공학회지
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    • 제24권6호
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    • pp.756-762
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    • 1996
  • In order to develop the method for mass production of natural food colorant from Monascus anka, optimum cultivation conditions for producing red and yellow pigments by cultiva- ting the mold in a jar fermenter and their color characteristics were investigated. The mold produced red and yellow pigments both intracellularly and extracellularly. These pigments showed unique light absorption characteristics with maximum absorption of 494, 380, 506, and 388 nm for extracellular red pigment (ERP), extracellular yellow pigment (EYP), intracellular red pigment (IRP), and intracellular yellow pigment (IYP), respectively. Optimum conditions for producing red pigments were found to be temperature 30$\circ$C, initial pH 6.0, rice powder 3-5%, peptone 0.05%, magnesium sulfate 0.25%, aeration rate 0.1 vvm. Optimum temperature for producing yellow pigments was around 35$\circ$C which is higher than that of producing red pigments. The initial pH and rice powder concentration for producing yellow pigments were the same as those of producing red pigments. The higher concentration of nitrogen source and inorganic salt, aeration rate, the more the yellow pigments were produced. The optimum agitation speed was 100 - 300 rpm for pigment production.

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탱크 교반형 생물반응기의 scale-up이 Eschscholtzia californica 세포생장 및 알칼로이드 생성에 미치는 영향 (Effects of Stireed Tank Bioreactor Scale-up on Cell Growth and Alkaloids Production in Cell Cultures of Eschscholtzia californica)

  • 유병삼;변상요
    • KSBB Journal
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    • 제13권6호
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    • pp.700-705
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    • 1998
  • Studies were made to investigate effects of the scale-up of stirred tank bioreactors on cell growth and alkaloids production for suspension cultures of Eschscholtzia californica. In the 1.5 L STR, cell lysis was observed at 110 rpm or higher agitation speed. The agitation speed of 30 L STR was 43.7 rpm to maintain the same shear stress developed in 1.5 L STR of 100 rpm. As a result of scale-up from 1.5 L to 30 L STR, the specific growth rate was decreased from 0.12 to 0.07 day-1. The alkaloids productivity was also decreased from 0.24 to 0.14 mg/L-day. Changes of mixing performance and oxygen transfer were studied to explain the decrease of cell growth and alkaloids production. Decreased oxygen transfer rate coefficient(KLa) and increased mixing time by the scale-up was observed at various aeration rates.

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사계성 딸기 '고하' 조직배양묘의 대량증식 시 생물반응기 내 공기주입량에 따른 생육 특성 (Growth Characteristics of in Vitro Mass Propagated Plantlets of Ever-bearing Strawberry 'Goha' according to Aeration Rate in Bioreactor)

  • 김혜진;이종남;김기덕;임주성;임학태;용영록
    • 원예과학기술지
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    • 제30권4호
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    • pp.432-436
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    • 2012
  • 본 실험은 사계성 딸기의 무병묘 생산을 위한 생물반응기 배양 시 공기주입량에 따른 생육특성을 비교하고, 적정 공기주입량을 구명하기 위해 실시하였다. 생물반응기 내 공기주입량은 0.1vvm, 0.2vvm, 0.3vvm 및 0.4vvm 등 4 수준으로 처리하였다. 공기주입량 0.2vvm에서 초장이 9.03cm로 가장 길었으며, 엽수는 40.4개, 생체중은 6,106mg으로 타처리구에 비해 생육이 왕성하였다. 생물반응기 배양기간이 길어짐에 따라 잎, 뿌리 등이 점진적으로 많이 발생하였으며, 유식물체의 생체중도 급격히 늘어났으며, 배양 6주째에는 신초수가 주당 10.4개 발생하였으며 완전한 하나의 독립된 식물체로 발달되었다. 그리고 생물반응기 내의 공기는 0.2vvm으로 지속적으로 공급해주며, 최소 6주간 배양해야 완전한 식물체로 성장하였다.