• 제목/요약/키워드: Aeration system

검색결과 296건 처리시간 0.035초

균체고정화 생물반응기에서 산소공급에 의한 에탄올 생산성 향상 (Enhancement of Ethanol Productivity by Air Supplement in Immobilized Cell Reactor System)

  • 조의철;김정회;김영준
    • 한국미생물·생명공학회지
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    • 제17권2호
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    • pp.165-169
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    • 1989
  • 고생산성의 알콜 발효용 생물반응기를 개발하기 위하여 sodium alginate로 효모균체를 고정화시킨 후 충전탑 반응기를 제조하였다. 이 때 gel속에 고정화되어 있는 세포에 산소를 공급하기 위하여 배지를 공기로 포화시킨 후 공급하였다. 그 결과 9% 포도당을 함유한 배지를 사용하였을 경우 최대 알콜생산성은 35g/$\ell$-gel-hr에서 55g/$\ell$-gel-hr로 증가되었고 90%의 전환율을 얻는데 걸리는 시간도 40분에서 25분으로 감소되었다. 즉 고정화세포 충전탑 반응기에서도 배지에 어느 정도의 산소를 공급하면 세포활성의 증가로 발효속도가 현저히 촉진됨을 알 수 있었다.

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취침 시 환기횟수에 따른 $CO_2$ 피크치 제어에 관한 연구 (A research on the $CO_2$ Peak Point Control according to Ventilation Frequency during Sleeping)

  • 원유미;김대승;이우진;김동규;김세환
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.731-736
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    • 2008
  • There was in a building and with the technical advance for a energy saving the secret efficiency of the building improved together and continuously was come. The indoor air environment brought about the deterioration which is remarkable because of it. But time of most the indoor air environmental matter is one in the element which healthily affects biggest in the moderns who lives from the interior space. Today the plan for the air environmental maintenance which dwelling space is appropriate is demanded, is the actual condition where the method of the ventilation control which is energy saving and efficient is necessary. From the research which it sees, number of ventilation 0.7 time of the aeration which is a domestic legal baseline is excessive is judged from the research which sees, The sleep hour assumes it stays most long the hour when, number of ventilation 0 time 0.1 times 0.4 times $CO_2$ consistency measurements and analyzes number of ventilation conclusive escape. And $CO_2$ peak point control leads it decides a data, effective and it talks an energy saving circulation control method and it does to sleep.

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여과분리형 생물반응조의 고액분리 특성 (Solid-Liquid Separation Characteristics with Bio-filter Media Reactor)

  • 박영배;정용준
    • 한국습지학회지
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    • 제16권3호
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    • pp.347-353
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    • 2014
  • 여과분리형 생물반응조 운전에서 발생하는 flux 감소 원인을 분석하였고, 상등수 수질과 침강성 변화가 flux에 미치는 영향을 평가하였다. 또한 여과막 모듈과 역세정 장치 일체형 시스템의 특성을 평가하였다. 반응조는 17L 유효 용적의 아크릴 반응조에 $100{\mu}m$ 공경의 여과막 모듈을 통해 배출되는 여과시스템으로, 여과시간이 경과함에 따라 상등수의 수질 특히 탁도와 TOC의 수질이 악화됨에 따라 flux가 점진적으로 감소하였다. MLSS 농도가 18000mg/L 이상에서는 여과저항이 급격히 증가하였다. 상등수의 수질과 flux와의 관계를 규명하기 위해서는 MLSS 농도가 10000mg/L 이상에서는 곤란함에 따라 5000mg/L이 적절한 것으로 판단된다. 활성슬러지 플록을 파괴시켜 SVI를 250으로 조정하여 여과를 시작한 경우, 상등수의 탁도가 증가하여, 침강성이 악화됨에 따라 flux도 점차 감소하였다. 여과막 모듈과 폭기세정 장치를 일체화한 시스템에서 공기 공급은 30~60초 정도로 설정함이 적정한 것으로 나타났다.

국내 종합병원 Utility Space의 체계 구축에 관한 연구 (A Study on the Systematic Construction of the Utility Space in General Hospital)

  • 김은석;양내원
    • 의료ㆍ복지 건축 : 한국의료복지건축학회 논문집
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    • 제23권4호
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    • pp.77-84
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    • 2017
  • Purpose: In terms of the flexibility in hospital architecture, there are fixed elements of hospital architecture: mechanical, electrical, aeration rooms and shafts, which are the main utility spaces. Thus, it is necessary to recognize the utility space as a system that helps internal functions and flexible internal changes. This study analyzes the notion of the main utility space in hospital architecture and the architectural planning features of the main utility spaces as the system in the design process of the recently built hospitals. Methods: The design factors are extracted comparing two hospitals' plans in each stage and the systematic characteristics of utility spaces are analyzed accordingly. The opinions gathered from interviews of practitioners, architects and facility planning experts directly involved in the architecture design process are analyzed and reflected in the results. Results: Planning for utility spaces should be accompanied by the architectural plan from the basic design process, and proceeded with recognizing utility spaces as a system, which is a fixed element. Utility spaces are highly organically connected. Horizontal and vertical distribution of air chambers can reduce the length and number of ducts, and thus save story height, and reduce the number of shafts, the vertical connection passage. This is advantageous in securing the variable area, which is the ultimate objective of the system-centered hospital architecture plan. Implications: Thereby aims to provide fundamental data on systematic utility space planning in the hospital architecture planning.

Valuable Organic Liquid Fertilizer Manufacturing through $TAO^{TM}$ Process for Swine Manure Treatment

  • Lee, Myung-Gyu;Cha, Gi-Cheol
    • 한국축산시설환경학회지
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    • 제9권1호
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    • pp.45-56
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    • 2003
  • $TAO^{TM}$ System is an auto-heated thermophilic aerated digestion process using a proprietary microbe called as a Phototropic Bacteria (PTB). High metabolic activity results in heat generation, which enables to produce a pathogen-free and digested liquid fertilizer at short retention times. TAO$^{TM}$ system has been developed to reduce a manure volume and convert into the liquid fertilizer using swine manure since 1992. About 100 units have been installed and operated in Korean swine farms so far. TAO$^{TM}$ system consists of a reactor vessel and ejector-type aeration pumps and foam removers. The swine slurry manure enters into vessel with PTB and is mixed and aerated. The process is operated at detention times from 2 to 4 days and temperature of 55 to $65^{\circ}C$. Foams are occurred and broken down by foam removers to evaporate water contents. Generally, at least 30% of water content is evaporated, 99% of volatile fatty acids caused an odor are removed and pathogen destruction is excellent with fecal coliform, rotavirus and salmonella below detection limits. The effluent from TAO$^{TM}$ system, called as the "TAO EFFLUX", is screened and has superb properties as a fertilizer. Normally N-P-K contents of screened TAO Efflux are 4.7 g/L, 0.375 g/L and 2.8 g/L respectively. The fertilizer effect of TAO EFFLUX compared to chemical fertilizer has been demonstrated and studied with various crops such as rice, potato, cabbage, pumpkin, green pepper, parsley, cucumber and apple. Generally it has better fertilizer effects and excellent soil fertility improvement effects. Moreover, the TAO EFFLUX is concentrated through membrane technology without fouling problems for a cost saving of long distance transportation and a commercialization (crop nutrient commodity) to a gardening market, for example.

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활성(活性)슬러지공법(工法)에 있어서 유기물(有機物)의 성상(性狀)과 농도(濃度)에 따른 온도영향(溫度影響) (Temperature Effects on Type and Concentration of Substrate in Activated Sludge Process)

  • 최의소;민경석
    • 대한토목학회논문집
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    • 제5권4호
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    • pp.45-56
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    • 1985
  • 본(本) 연구(硏究)는 생물학적(生物學的) 폐수처리시(廢水處理時) 온도(溫度)가 미생물(微生物)의 생물학적(生物學的) 반응(反應)에 어떠한 영향(影響)을 미치는가를 조사(調査)하기 위(爲)하여 실험실(實驗室) 반응조(反應槽)를 이용(利用)하였는데, 반응조(反應槽)는 완전혼합활성(完全混合活性)슬러지공법중(工法中) aeration-only system을 이용하였으며, 온도(溫度)는 $1^{\circ}$, $4^{\circ}$, $7^{\circ}$$10^{\circ}C$이었다. 유입(流入) COD 농도(濃度)를 5,000mg/l와 200 mg/l로 구분(區分)하여 각(各) 온도(溫度)에서 폭기시간(曝氣時間)을 변화(變化)시켜 수행(遂行)하였다. 폭기시간(曝氣時間)이 120시간(時間) 내지 150시간(時間) 이하(以下)이거나, F/M 비가 약(約) 0.4 이상(以上)인 경우에 유기물제거(有機物除去)에 대(對)한 온도영향(溫度影響)이 증대(增大)되었다. 세포증식계수(細胞增殖係數)는 대략 0.5~0.6으로 분석(分析)되었으며, 온도(溫度)에 따른 차이(差異)는 매우 적었다. 미생물(微生物)의 산소당량(酸素當量) $10^{\circ}C$에서는 1.4로 나타나 일반적(一般的)인 값과 같았으나, $1^{\circ}$, $4^{\circ}$$7^{\circ}C$에서는 약 1.6으로 나타나 저온(低溫)에서는 미생물(微生物)의 성상(性狀)이 조금 달랐다. 내생호흡계수(內生呼吸係數)는 온도(溫度)와 거의 무관(無關)한 것으로 나타났다. 저농도폐수(低濃度廢水)에 대한 실험결과와 기존하수처리장(旣存下水處理場)의 운전자료(運轉資料)를 분석(分析)한 결과(結果), 운전 F/M비가 낮거나, 유입수(流入水)의 유기물농도(有機物濃度)가 낮은 경우 온도영향(溫度影響)은 없는 것 같았다.

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Effects of Dissolved Oxygen Level on Avermectin $B_{1a}$ Production by Streptomyces avermitilis in Computer-Controlled Bioreactor Cultures

  • Song, Sung-Ki;Jeong, Yong-Seob;Kim, Pyeung-Hyeun;Chun, Gie-Taek
    • Journal of Microbiology and Biotechnology
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    • 제16권11호
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    • pp.1690-1698
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    • 2006
  • In order to investigate the effect of dissolved oxygen (DO) level on AVM $B_{1a}$ production by a high yielding mutant of Streptomyces avermitilis, five sets of bioreactor cultures were performed under variously controlled DO levels. Using an online computer control system, the agitation speed and aeration rate were automatically controlled in an adaptive manner, responding timely to the oxygen requirement of the producer microorganism. In the two cultures of DO limitation, the onset of AVM $B_{1a}$ biosynthesis was observed to casually coincide with the fermentation time when oxygen-limited conditions were overcome by the producing microorganism. In contrast, this phenomenon did not occur in the parallel fermentations with DO levels controlled at around 30% and 40% throughout the entire fermentation period, showing an almost growth-associated mode of AVM $B_{1a}$ production: AVM $B_{1a}$ biosynthesis under the environments of high DO levels started much earlier than the corresponding oxygen-limited cultures, leading to a significant enhancement of AVM $B_{1a}$ production during the exponential stage. Consequently, approximately 6-fold and 9-fold increases in the final AVM $B_{1a}$ production were obtained in 30% and 40% DO-controlled fermentations, respectively, especially when compared with the culture of severe DO limitation (the culture with 0% DO level during the exponential phase). The production yield ($Y_{p/x}$), volumetric production rate (Qp), and specific production rate (${\bar{q}}_p$) of the 40% DO-controlled culture were observed to be 14%, 15%, and 15% higher, respectively, than those of the parallel cultures that were performed under an excessive agitation speed (350 rpm) and aeration rate (1 vvm) to maintain sufficiently high DO levels throughout the entire fermentation period. These results suggest that high shear damage of the high-yielding strain due to an excessive agitation speed is the primary reason for the reduction of the AVM $B_{1a}$ biosynthetic capability of the producer. As for the cell growth, exponential growth patterns during the initial 3 days were observed in the fermentations of sufficient DO levels, whereas almost linear patterns of cell growth were observed in the other two cultures of DO limitation during the identical period, resulting in apparently lower amounts of DCW. These results led us to conclude that maintenance of optimum DO levels, but not too high to cause potential shear damage on the producer, was crucial not only for the cell growth, but also for the enhanced production of AVM $B_{1a}$ by the filamentous mycelial cells of Streptomyces avermitilis.

Arbuscular Mycorrhizal Fungi(AMF)의 공생활성에 미치는 해안 간척지 토양환경의 영향 (Effects of Soil Environment on Symbiotic Activities of Arbuscular Mycorrhizal Fungi(AMF) in the Coastal Reclaimed Lands)

  • 고성덕
    • 한국균학회지
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    • 제26권4호통권87호
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    • pp.562-573
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    • 1998
  • 간척연도가 다른 두 간척지의 고등식물의 근권에 존재하는 arbuscular mycorrhizal fungi(AMF)의 포자밀도, 공생강도와 토양의 물리 화학적 특성 및 AMF포자의 수직분포 등을 조사하여 토양특성에 따른 AMF의 공생생활성의 반응, 식물의 인 흡수에 미치는 AMF의 영향 등을 규명하였다. 간척지에서 AMF 포자의 수직분포는 포자가 표토로부터 20cm 깊이 이내에 분포하는데 그 원인은 뿌리의 수직분포, 지하수위 및 토양의 통기(aeration)와 관계가 있을 것이다. 토양 특성의 수직분포 중에서 토심이 깊어짐에 따라 증가되는 토양요인을 W.C., A-P 및 K이었고, 감소하는 요인은 O.M, Ca 및 Zn이었다. AMF의 공생생활성인 포자밀도와 공생강도는 토양의 pH, O.M., T-N 함량이 증가함에 따라 증가되고 W.C., A-P, Na 함량이 증가함에 따라 감소되는 두 반응 패턴이 나타났다. 간척지 식물의 인 흡수는 AMF의 공생활성이 커짐에 따라 증가되고, AMF의 공생활성은 토양의 인 함량이 적음에 따라 커짐으로써 식물은 AMF의 공생활성에 의하여 인 함량이 적은 토양에서 많은 양의 인을 흡수하였다.

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영지의 액체배양에 의한 세포외 다당 생산의 Scale Up 연구 (Scaling Up Study of Exopolysaccharide Production through Mycelial Submerged Cultivation of Ganoderma lucidum)

  • 이학수;이신영
    • KSBB Journal
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    • 제24권3호
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    • pp.303-311
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    • 2009
  • Bi-staged pH process 하의 jar fermenter system에서 영지의 액체배양 시 효율적인 균사체 및 세포의 다당 생산을 위한 용존산소의 영향을 조사하고, 산소이동용량계수와 발효조 조작변수와의 상관관계를 해석하여 scale up의 조건을 검토, 확립하였다. 교반속도에 따른 용존산소의 농도변화를 살펴본 결과, hi-staged pH process에서 배양 $2{\sim}4$일에 용존 산소의 급격한 감소를 보였으나 용존 산소의 제한은 일어나지 않고, 다시 증가하는 경향을 보였으며, 교반속도가 증가할수록 감소 폭과 깊이는 증가하는 경향을 보였다. 다당 생성은 대수 증식기 이후의 용존 산소농도가 $40{\sim}80%$ 범위일 때 가장 높았으며, 이 보다 낮거나 높은 경우 다당의 생성은 저해되었다. 교반 및 통기에 따른 산소이동용량계수 ($k_La$)와 통기속도 (Vs), 교반속도 (N) 및 impeller 지름 (Di)의 자료로부터 중회귀분석한 결과, 이들 사이의 관계는 다음 식으로 표현할 수 있었다. $$k_La=0.555{\times}Vs^{0.42}{\times}(N^3{\times}Di^2)^{0.33}\;(R^2=0.925,\;p<0.05)$$ 2.6 L 발효조의 경우, 15.43 g/L의 최대 다당 생산량은 400 rpm 및 1 vvm에서 얻어졌으며, 2.6 L 발효조의 최적 산소이동용량계수 값을 적용한 20 및 75 L 발효조에서의 scale up 시험 결과는 서로 잘 일치하였다. 최대의 다당생성을 위한 산소전달계수의 감은 $85.4{\pm}26.70\;h^{-1}$이었다.

바이오차르 토양투입에 따른 온실가스 발생 변화 연구 (Greenhouse Gas Emissions from Soils Amended with Biochar)

  • 유가영;손용익;이승현;유예나;이상학
    • 환경생물
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    • 제31권4호
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    • pp.471-477
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    • 2013
  • Biochar amendment to agricultural soil is regarded as a promising option to mitigate climate change and enhance soil quality. It could sequester more carbon within the soil system and increase plant yield by changing soil physicochemical characteristics. However, sustainable use of biochar requires comprehensive environmental assessment. In this sense, it is important to measure additional greenhouse gas emission from soils after biochar addition. We investigated emissions of $CO_2$, $N_2O$, and $CH_4$ from incubated soils collected from rice paddy and cultivated grassland after amendment of 3% biochar (wt.) produced from rice chaff. During incubation, soils were exposed to three wet-dry cycles ranging from 5~85% soil gravimetric water content (WC) to investigate the changes in effect of biochar when influenced by different water levels. The $CO_2$ emission was reduced in biochar treatment compared to the control at WC of 30~70% both in rice paddy and grassland soils. This indicates that biochar could function as a stabilizer for soil organic carbon and it can be effective in carbon sequestration. The $N_2O$ emission was also reduced from the grassland soil treated with biochar when WC was greater than 30% because the biochar treated soils had lower denitrification due to better aeration. In the rice paddy soil, biochar addition resulted in decrease in $N_2O$ emission when WC was greater than 70%, while an increase was noted when WC was between 30~70%. This increase might be related to the fact that available nutrients on biochar surface stimulated existing nitrifying bacterial community, resulting in higher $N_2O$ emission. Overall results imply that biochar amendment to agricultural soil can stabilize soil carbon from fast decomposition although attention should be paid to additional $N_2O$ emission when biochar addition is combined with the application of nitrogen fertilizer.