• 제목/요약/키워드: Oxygen transfer efficiency

검색결과 98건 처리시간 0.024초

활성 슬러지조 폭기를 위한 에너지 절감형 판형 멤브레인 산기장치의 개발 (Development of Energy Saving Aeration Panel for Aerating in Activated Sludge System)

  • 김지태;탁현기;김종국
    • 대한환경공학회지
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    • 제34권6호
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    • pp.414-420
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    • 2012
  • 에너지 절감형 산기장치의 상용화를 목적으로 국내 J사의 인장강도 $400kg_f/cm^2$ 이상, 두께가 0.5 mm의 폴리 우레탄 시트를 확보하고 고무 시트의 천공에 가장 널리 이용되는 방식인 needle을 이용한 천공방법을 택하여 기공의 크기가 $100{\mu}m$ 정도의 판형 멤브레인 산기장치를 제작하였다. 판형 산기 모듈 제작 후 실험실 및 파일롯 규모의 테스트 결과, 수조 450 L, 수온 $20^{\circ}C$, 공기량 40 L/min인 실험실 테스트에서 3분 내에 DO가 5 mg/L을 넘었고, 8분 내에 DO가 포화치에 가까운 8 mg/L 이상이 됨을 알 수 있었다. 이때의 $K_{La(15)}$$16.34hr^{-1}$, 표준산소전달효율은 54.7%, 표준폭기효율는 7.88 kg/kwh로 상당히 높은 효율의 실험결과를 보였다. 수조 2 $m^3$, 수온 $19^{\circ}C$, 공기량 30 L/min인 파이롯 규모의 테스트에서는 8분 내에 DO 농도가 5 mg/L를 넘었고, 이때의 $K_{La(15)}$$5.8hr^{-1}$, 표준산소전달효율은 42.1%, 표준폭기효율는 6.41 kg/kwh로 기존 산기관의 2~2.5배 높은 효율의 실험결과를 보였다. 특히 단위 동력당 산소전달률이 높아 경제성이 높음을 나타내었다. 기존 산기관의 적용에서 청수에서의 산소전달효율이 실제 폐수에서의 산소전달률의 차이로 인한 문제가 빈발하여 실제 $40^{\circ}C$ 축산폐수에서 테스트한 결과 $OTE_f$는 22.1% $OTE_{pw40}$이 39.6%로 매우 높은 효율을 보였다.

해수의 포말분리시 공기분산기 기공크기 영향 (Effect of Air Distributor Pore Size in Foam Separator of Sea Water)

  • 서근학;김병진;이정훈;임준혁;이경범;김용하;조재윤
    • 한국수산과학회지
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    • 제36권3호
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    • pp.254-262
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    • 2003
  • Effect of the air distributor pore size for the removal of aquacultural waste, such as protein, total suspended solids (TSS), chemical oxygen demand (COD), turbidity and total ammonia nitrogen (TAN) from sea water was investigated by using foam separator. With the increase of pore size of air distributor, removal rates and efficiency of protein decreased. Removal rate by commercial air stone was in the range between the removal rates by G2 and G4 sintered glass discs. Within the range of pore size distributor from Gl to G4, the removal efficiency of protein were ranged from 21 to $42\%.$ The changes of removal rates and efficiencies of TSS, COD and turbidity were similar to proteins. TAN was removed by stripping. The pore size of air distributor for a higher overall oxygen mass transfer coefficient and saturation efficiency provided the condition for higher protein removal rate. Also the foam separator could be used as an aerator.

막결합형 연속회분식 생물반응조에서 여과 및 공기공급용으로 분리막을 사용할 때 공기공급이 막여과 성능에 미치는 영향 (Filtration Performance in MSBR (Membrane-Coupled Sequencing Batch Reactor) using a Membrane for Both Filtration and Aeration)

  • 류관영;박병규;이정학
    • 한국물환경학회지
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    • 제21권4호
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    • pp.337-346
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    • 2005
  • An MSBR using a membrane for not only filtration but also aeration (MA-MSBR) was designed to reduce membrane fouling and to enhance water quality, and compared with an MSBR using a membrane for only filtration (BA-MSBR). COD removal efficiency of the MA-MSBR was similar to that of the BA-MSBR, but membrane performance of the MA-MSBR was better than that of the BA-MSBR. The MA-MSBR had more small particles in mixed liquor, so the specific cake resistance of flocs in the MA-MSBR was higher than that in the BA-MSBR. However, in the aerobic reaction step of the MA-MSBR, air went through membrane pores and out of the membrane surface, so cake layers on the membrane surface and a portion of organics adsorbed on membrane pores could be removed periodically. Therefore, cake resistance, $R_c$, and fouling resistance by adsorption and blocking, $R_f$, for the MA-MSBR increased more slowly than those for the BA-MSBR. Additionally, in order to compare the energy efficiency for two MSBRs, oxygen transfer efficiency and power to supply air into the reactor by a membrane module and a bubble stone diffuser were measured using deionized water. From these measurements, the transferred oxygen amount per unit energy was calculated, resulting that of MA-MSBR was slightly higher than that of BA-MSBR.

대체혈액을 이용한 인공폐의 평가에 관한 연구 (The Evaluation of Artificial Lung Using Blood Substitutes)

  • 김기범;홍성출;김민호;정경락;이삼철
    • 대한의용생체공학회:의공학회지
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    • 제21권3호
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    • pp.311-320
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    • 2000
  • 본 연구에서는 새롭게 설계한 인공폐 모듈을 사용하여 인공폐의 효율을 평가하기 위한 압력손실과 산소전달에 대한 실험을 수행하였다. 또한 증류수, 아황산나트륨용액을 혈액대용물질로 사용하여 다른 인공폐의 성능을 평가하였다. 혈액대용물질은 압력손실과 산소운반력을 연구하는데 전혈(whole blood)에 비해 장점이 많다 즉. 이들은 상대적으로 값이 저렴하고 조절하여야 할 변수가 적다. 또한 이 용액을 사용하게 되면 탈산화장치가 필요 없으며 실험결과의 분석이 상대적으로 쉽다. 전혈과 같은 산소분압을 갖는 아황산나트륨용액을 사용하는 경우 아황산나트륨 용액의 산소전달속도는 전혈을 사용하는 경우의 산소전달속도와 거의 일치하였다. 이 실험에서 중공사모듈의 산소전달속도를 측정하는데 아황산나트륨용액이 혈액대용물질로 이용될 수 있음을 보였다. 이 인공폐 모듈에서는 용액이 중공사의 바깥쪽으로 흐르도록 설계하였는데 이 실험용 인공폐는 압력손실이 안쪽으로 흐르도록 하는 흐름에 비해 $1/3\~1/6$였다.

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전착이산화납 결정구조가 전해에 의한 오존발생에 미치는 영향 (The Effects of Electrodeposited Lead Dioxide Structure on the Ozone Evolution)

  • 김인환;이충영;남종우
    • 공업화학
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    • 제7권2호
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    • pp.280-288
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    • 1996
  • 여러 가지 전착 조건에서 티타늄 기판상에 이산화납을 전착시킨 전극을 사용하여 전해질 용액 중에서 오존을 발생시킬 경우 전착된 이산화납의 결정표면 양상이 오존발생 전류효율에 미치는 영향과 이산화납 전극의 표면구조 변화를 고찰하였다. 또한 백금 디스크전극 위에 이산화납을 전착시킨 회전전극을 이용하여 산소전이반응이 오존발생에 미치는 영향과 오존발생용 전극으로 개발하기 위해 이산화납의 내식성과 오존발생 최적 전류밀도도 검토하였다. 전착한 이산화납의 결정표면 입자가 크고 결정성이 좋은 전극일수록 오존발생 전류효율이 높았으며 이러한 오존발생용 이산화납 전극을 전착시키기 위한 최적전류밀도는 $50mA/cm^2$이었으며 전착용액에 글리세린을 소량 첨가하면 오존발생에 유리한 결정구조를 갖는 이산화납이 전착되었다. 또한 $10mA/cm^2$ 이하의 너무 낮거나 $100mA/cm^2$ 이상의 너무 높은 전류밀도에서는 오존발생 성능이 떨어지고 소지금속에 대한 접착성이 좋지 않은 전극이 만들어 졌다. 새로 만들어진 이산화납전극을 오존발생용으로 사용할 때 사용 초기 단계에서 이산화납전극의 표면구조 변화가 일어나며 이는 오존발생에 유리한 효과를 가져왔다. 타원소를 도핑시킨 이산화납 전극에서는 오존발생보다 산소발생 반응이 활발하게 일어나 오존발생은 산소발생의 중간 단계를 거치지 않고 산소발생과는 경쟁적으로 일어나는 것으로 추정되며 $0.7{\sim}0.8A/cm^2$의 전류밀도에서 최대의 오존발생 전류효율을 나타내었다.

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망간단괴 용융환원 제련공정의 물질 및 열수지 모델링 (A Study on the Heat and Mass Balance of Smelting Reduction Process for Manganese Nodules)

  • 조문경;박경호;민동준
    • 대한금속재료학회지
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    • 제47권5호
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    • pp.304-310
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    • 2009
  • Recently, manganese nodule has been focused on alternative resources because of its high grade of noble metallic elements such as Co, Ni, and Cu etc. From the viewpoint of an optimization the operating variables for energy efficiency of smelting reduction process, thermodynamic model for smelting reduction process of Manganese nodule was developed by using energy and material balance concept. This model provided that specific consumption of pure oxygen and coke was strongly depended on post combustion ratio (PCR) and heat transfer efficiency (HTE). The dressing and dehydrating process of low grade manganese can be proposed an essential process to minimize the specific energy consumption with decreasing slag volume. The effect of electricity coal base smelting reduction process was also discussed from the energy optimizing point of view.

핵이식을 이용한 복제송아지 생산에 관한 연구 I. 세포주기, 융합배지 및 산소분압이 체외발육능에 미치는 영향 (Studies on the Cloning of Calves by Nuclear Transplantation I. Effects of Cell Cycle, Fusion Media and Oxygen Concentration on the Developmental Competence)

  • 황우석;신태영;노상호;이병천
    • 한국수정란이식학회지
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    • 제12권2호
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    • pp.171-179
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    • 1997
  • The objectives of the present study were improvements in the efficiency of developmental rates to morula and blastocyst stages to produce a large number of genetically identical nuclear transplant embryos. The oocytes collected from slaughterhouse ovaries were matured for 24 h and then enucleated and cultured to allow cytoplasmic maturation and gain activation competence. And then the donor embryos were treated for 12 h with 10 $\pi$g /ml nocodazole and 7.5 $\pi$g /ml cytochalasin B to synchronize the cell cycle stage at 26 h after the onset of culture. The blastomeres were transferred into the perivitelline space of the enucleated nocytes and blastomeres and oocytes were fused by electrofusion. The cloned embryos were then cultured in various conditions to allow further development. The age of the recipient(30 vs 40 h) had no significant effect on the fusion rates(82.4 vs 82.1%) and the developmental rates to morula /blastocyst(9.8 vs 11.0%). Effect of Nocodazole treatment on the donor cell cyle synchronization to improve the developmental rates of bovine nuclear transplant embryos was significantly higher than control group(21.4 vs 10.1%, p<0.05). Significant differences were in the percentage of fusion rates(72.9,77.1vs 61.9%) in three types of fusion medium(PBS(+), mannitol and sucrose, p<0.01). The developmental rates of bovine nuclear transplant embryos appeared to be highest in mSOF medium under 5% 0$_2$ condition, but no significant differences were found when compared with TCM199-BOEC and mSOF under two different oxygen ratio(5 and 20%).

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Synthesis of a New Cathode Redox Polymer for High Performance in Biofuel Cells

  • Choi, Young-Bong;Lee, Jung-Min;Kim, Hyug-Han
    • Bulletin of the Korean Chemical Society
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    • 제35권9호
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    • pp.2803-2808
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    • 2014
  • High potential and fast electron transfer of a cathode mediator are significant factors for improving the performance of biofuel cells. This paper reports the first synthesis of a cathode redox polymer that is a coordination complex of poly (acrylic acid-vinylpyridine-acryl amide) (PAA-PVP-PAA) and [Os(4,4'-dicarboxylic acid-2,2'-bipyridine)$_2Cl_2]^{/+}$ ($E^{\circ}=0.48V$ versus Ag/AgCl). Bilirubin oxidase can be easily incorporated into this polymer matrix, which carried out the four-electron oxygen under typical physiological conditions (pH 7.2, 0.14 M NaCl, and $37^{\circ}C$). This new polymer showed an approximately 0.1 V higher redox potential than existing cathode mediators such as PAA-PVI-$[Os(dCl-bpy)_2Cl]^{+/2+}$. In addition, we suggest increasing the polymer solubility with two hydrophilic groups present in the polymer skeleton to further improve fast electron transfer within the active sites of the enzyme. The maximum power density achieved was 60% higher than that of PAA-PVI-$[Os(dCl-bpy)_2Cl]^{+/2+}$. Furthermore, high current density and electrode stability were confirmed for this osmium polymer, which makes it a promising candidate for high-efficiency biofuel cells.

단결정 실리콘 잉곳 결정성장 속도에 따른 고-액 경계면 형성 및 Defect 최적화 (Melt-Crystal Interface Shape Formation by Crystal Growth Rate and Defect Optimization in Single Crystal Silicon Ingot)

  • 전혜준;박주홍;블라디미르 아르테미예프;정재학
    • Current Photovoltaic Research
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    • 제8권1호
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    • pp.17-26
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    • 2020
  • It is clear that monocrystalline Silicon (Si) ingots are the key raw material for semiconductors devices. In the present industries markets, most of monocrystalline Silicon (Si) ingots are made by Czochralski Process due to their advantages with low production cost and the big crystal diameters in comparison with other manufacturing process such as Float-Zone technique. However, the disadvantage of Czochralski Process is the presence of impurities such as oxygen or carbon from the quartz and graphite crucible which later will resulted in defects and then lowering the efficiency of Si wafer. The heat transfer plays an important role in the formation of Si ingots. However, the heat transfer generates convection in Si molten state which induces the defects in Si crystal. In this study, a crystal growth simulation software was used to optimize the Si crystal growth process. The furnace and system design were modified. The results showed the melt-crystal interface shape can affect the Si crystal growth rate and defect points. In this study, the defect points and desired interface shape were controlled by specific crystal growth rate condition.

고열량 반탄화 연료 생산을 위한 목질계 바이오매스 저온열분해 방법에 대한 연구 (Study on Low Temperature Pyrolysis of Woody Biomass to Produce High-Calorie Torrefied Fuel)

  • 이창엽;권민준;김대해;김세원
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.263-263
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    • 2014
  • Low temperature pyrolysis of woody biomass has been conducted to produce highcalorie torrefied fuel. In this experiment, to maximize the energy efficiency in heat transfer, flue gas is directly used for heat source in the torrefier. To accomplish the oxygen free environment in the torrefaction reactor, a burner has been developed and it can be runned with fuel rich state. An inner central axis rotating type of reactor was applied in experiment. To use the calorific gases produced from torrefier, another burner is developed to combust them.

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