• Title/Summary/Keyword: oxygen limitation

검색결과 101건 처리시간 0.031초

Oxygen Barrier Coating with Carbon Interlayer on Polypropylene

  • 김성진;송은경;조경식;윤태경;문명운;이광렬
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.210-210
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    • 2012
  • Gas barrier coating from dense thin film deposition has been one of the important applications such as food-packaging and organic display. Especially for food-packaging, plastic container has been widely used due to its low price and high through-put in mass production. However, the plastic container with low surface energy like polypropylene (PP) has been limited to apply gas barrier coating. That is because a gas barrier coating could not adhere to PP due to its too low surface energy and high porosity of PP. In this research, we applied carbon coating consisting of Si and O as an interlayer between silicon oxide (SiOx) and PP. A carbon layer was found to provide better adhesion, which was experimentally proved by oxygen transmission rate (OTR) and SEM images. However, we also found that there is a limitation in the maximum thickness of a carbon layer and SiOx film due to their high stress level. For this conflict, we obtain the optimal thickness of a carbon layer and SiOx film showing optimal gas barrier property.

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연료 조성에 따른 공연비 산정 (III) - 공연비 계산방식간의 상호 비교 - (Air Fuel Ratio and Calculation According to Fuel Composition (III) -Comparison of Various Calculation Method-)

  • 박찬준;엄인용
    • 대한기계학회논문집B
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    • 제28권10호
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    • pp.1147-1154
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    • 2004
  • This paper is the third of several companion papers which compare the method of Air-Fuel ratio determination. In the previous works, Eltinge chart was expanded to arbitrary fuel composition as a reference exhaust composition. The compensation of unburned hydrocarbon in Eltinge chart and comparison of Spindt and Eltinge method were also discussed. In addition to Eltinge and Spindt's one, however, there are many methods which calculate Air-Fuel ratio from exhaust emission. Among these methods, carbon balance and oxygen balance are widely used in practice. In some applications, linear formula from statistical method is being used in the field due to its simplicity and convenience. In this paper, these various methods are evaluated and compared with Eltinge results and new linear formula is proposed for the gasoline fuel. The results show that the corrected carbon balance equation has excellent agreement with Eltinge and Spindt's one. On the other hands, the oxygen-balanced formula has a limitation according to the mixture state and AFR. For gasoline fuel, newly proposed linear equation has good compatibility with Eltinge and Spindt up to AFR 17.

Effect of Carrier Size on the Performance of a Three-Phase Circulating-Bed Biofilm Reactor for Removing Toluene in Gas Stream

  • Sang, Byoung-In;Yoo, Eui-Sun;Kim, Byung-J.;Rittmann, Bruce E.
    • Journal of Microbiology and Biotechnology
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    • 제18권6호
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    • pp.1121-1129
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    • 2008
  • A series of steady-state and short-term experiments on a three-phase circulating-bed biofilm reactor (CBBR) for removing toluene from gas streams were conducted to investigate the effect of macroporous-carrier size (1-mm cubes versus 4-mm cubes, which have the same total surface area) on CBBR performance. Experimental conditions were identical, except for the carrier size. The CBBR with 1-mm carriers (the 1-mm CBBR) overcame the performance limitation observed with the CBBR with 4-mm carriers (the 4-mm CBBR): oxygen depletion inside the biofilm. The 1-mm CBBR consistently had the superior removal efficiencies of toluene and COD, higher than 93% for all, and the advantage was greatest for the highest toluene loading, $0.12\;M/m^2-day$. The 1-mm carriers achieved superior performance by minimizing the negative effects of oxygen depletion, because they had 4.7 to 6.8 times thinner biofilm depths. The 1-mm carriers continued to provide protection from excess biomass detachment and inhibition from toluene. Finally, the 1-mm CBBR achieved volumetric removal capacities up to 300 times greater than demonstrated by other biofilters treating toluene and related volatile hydrocarbons.

Biosynthesis of polyhydroxybutyrate and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) by bacillus thuringiensis R-510

  • Park, Sang-Kyu;Lee, Kang-Tae;Kim, Young-Baek;Rhee, Young-Ha
    • Journal of Microbiology
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    • 제35권2호
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    • pp.127-133
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    • 1997
  • Biosynthesis of polyhydroxybutyrate and copolymer consisting of 3-hydroxybutyrate and 3-hydroxyvalerate [poly(3HB-co-3HV)] by Bacillus thuringiensis R-510 grown with glucose or with mixtures of glucose and propionate was investigated. n-Alkanoic acids other than propionate were not precursors of 3HV units. The fraction of 3HV unit in the copolymer increased from 0 to 84 mol% of 3HV. Polymer yield decreased as the fraction of propionate was increased but the molecular weight distribution was not affected by the composition of carbon substrate. The minimum melting temperature (around 65.deg.C) of poly (3HB-co-3HV) copolymers was observed for the polymer bearing approximately 35 mol% of 3HV. Polyhydroxyalkanoates production by this organism was not dependent on nutritional limitation, but remarkably influenced by dissolved oxygen concentration in the culture medium. Low level of dissolved oxygen concentration prevented spore formation in the cells and stimulated the synthesis of polyhydroxyalkanoate. The composition of poly (3HB-co-3HV) produced by B. thuringiensis R-510 lyhydroxyalkanoate. The composition of poly(3HB-co-3HV) propduced by B. thuringiensis R-510 varied according to the growth time. However, there was no evidence that polymers isolated from cells were mixtures of immiscible polymers.

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연료량 변조법에 의한 연료분사식 가솔린엔진의 공연비 제어 (Modulated Fuel Feedback Control of a Fuel Injection SI Engine)

  • 박경석;박진일;고상근;노승탁;이종화
    • 한국자동차공학회논문집
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    • 제4권3호
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    • pp.102-111
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    • 1996
  • For the air-fuel ratio control in a fuel injection SI engine, the Jump-Ramp control algorithm has been widely adopted by using the on/off type oxygen sensor. But the Jump-Ramp control method has limitation on treating the frequency and amplitude of the air-fuel ratio oscillation. This study suggests another feedback control logic named modulated fuel feedback control, which has a concept of pre-tuned air-fuel ratio oscillation. In the modulation method, the oxygen sensor output is not treated as on/off signal but as analog signal for feedback. By using the modulation method, the frequency and the amplitude of air-fuel ratio oscillation can be adjustable to some extent for improving the conversion efficiency of the Three-Way Catalyst. The result shows that the performance of the modulation method is better than that Jump-Ramp control method in reducing the amplitude of the air-fuel ratio oscillation as well as in increasing the frequency of the air-fuel ratio oscillation.

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유전 알고리즘을 이용한 폭기조내 용존산소농도 제어 (Control of the Dissolved Oxygen Concentration in the Aeration Using Genetic Algorithms)

  • 김창현;허동렬;김상효;정형환
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 D
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    • pp.2479-2481
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    • 2000
  • It is the time-varying dissolved oxygen(DO) dynamics that requires controlling for maintaining the DO concentration in the aeration tank. Many linear controllers have thus been applied. Because of the nonlinearity of the oxygen transfer function together with the time-varying respiration rate, however, the linear controllers are found to poorly perform in many cases. To overcome this limitation, a number of advanced controlling techniques have been developed and applied. In this study, designed GA-PI Controller using genetic algorithm(GA). Genetic algorithms(GAs) are search algorithms based on the mechanics of natural selection and natural genetics. As result of computer simulation, GA-PI controller shows the better control performance especially under the condition of the continuously changing DO set-point. This result represents that GA-PI controller can be a good measure to control the DO concentration in the SBR process which requires the sequential DO set-point change to accomplish the nitrification and denitrification in a single reactor.

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Comparative randomized study of propofol target-controlled infusion versus sevoflurane anesthesia for third molar extraction

  • Chung, Patrick K;Dhanrajani, Parmanand
    • Journal of Dental Anesthesia and Pain Medicine
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    • 제18권3호
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    • pp.169-175
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    • 2018
  • Background: The objective of this study was to compare hemodynamic and recovery characteristics of total intravenous anesthesia using propofol target-controlled infusion (TCI) versus sevoflurane for extraction of four third molar teeth. Methods: One hundred patients undergoing extraction of four third molar teeth under general anesthesia were randomized to one of two groups. Group 1 received propofol TCI-oxygen for induction and propofol TCI-oxygen-air for maintenance. Group II received a propofol bolus of 2 mg/kg for induction and sevoflurane-oxygen-air for maintenance. Heart rate, mean arterial pressure (MAP), operating time, time to emergence, nausea and vomiting, and sedation and pain scores were measured in each group. Results: Demographic data, including age, gender, weight, and height, were not significantly different between the two groups. The MAP was significantly higher after intubation (P = 0.007) and injection of anesthesia (P = 0.004) in the propofol group than in the sevoflurane group, with significant reflex bradycardia (P = 0.028). The mean time to emergence from anesthesia using propofol was 25 s shorter than that of sevoflurane (P = 0.02). Postoperatively, the propofol group was less sedated than the sevoflurane group at 30 min (0.02 versus 0.12), but this difference was not significant (P = 0.065). Conclusion: Both propofol TCI and sevoflurane are good alternatives for induction and maintenance of anesthesia for short day-case surgery. However, propofol TCI does not blunt the hemodynamic response to sudden, severe stimuli as strongly as sevoflurane, and this limitation may be a cause for concern in patients with cardiac comorbidities.

우분(牛糞) 퇴비화시(堆肥花時) 공기주입률(空氣注入率)이 산소 및 황화합물 가스 배출(排出)에 미치는 영향(影響) (Effect of Aeration Rates on Emissions of Oxygen and Sulfur compound gases during Composting of Dairy Manure)

  • 강항원;;이인구
    • 한국토양비료학회지
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    • 제33권6호
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    • pp.472-481
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    • 2000
  • 축분(우분) 퇴비화시 악취 경감과 양질의 퇴비생산을 위한 적절한 공기주입율을 설정하고자, 밀폐형 반응조 (242l)에 우분과 볏짚의 혼합물(65% 수분함량)을 퇴적하고 0.09, 0.18, 0.90 및 $1.79l\;min^{-1}kg^{-1}dry-solids^{-1}$ 4처리의 공기량을 주입하여 574시간의 퇴비기간동안 퇴적물내의 산소농도 및 산소소비율의 변화와 황화합물 가스의 발생양상 및 산소농도와의 상관관계를 구명하였다. 1. 퇴적물내의 산소농도는 공기주입 즉시 급격히 감소하였으며, 공기주입을 $0.90l\;min^{-1}kg^{-1}dry-solids^{-1}$이하 처리에서의 산소제한성(산소 15%이하)은 공기주입율과 부의 지수적 관계로써 35~300시간의 범위에 있었으나 $1.79l\;min^{-1}kg^{-1}$에서는 산소제한성이 없었다. 2. 공기주입율별 산소소비율은 $0.80{\sim}1.57O_2g\;h^{-1}\;kg^{-1}VS^{-1}$ 범위로써 그 크기는 0.90> 1.79> 0.18> $0.09lmin^{-1}kg^{-1}$ 순이었고, 누적산소소비량은 $460{\sim}900O_2g\;kg^{-1}VS^{-1}$ 범위를 나타내었다. 최대 산소소비량은 공기주입율 $1.2{\sim}1.3lmin^{-1}\;kg^{-1}$ 범위로 추정되었다. 3. 황화수소, 이산화 황 및 메틸멀캅탄 가스의 배출농도는 퇴비화 초기에 극도로 높고 후기로 갈수록 급격히 감소하였으며, 처리별로는 공기주입율이 증가할수록 뚜렷이 감소하였다. 가스의 평균 배출농도는 0.03~2.18, 0~0.50, 0.07~3.38 ppm으로 각각 배출되어 그 농도의 크기는 매틸멀캅탄> 황화수소> 이산화황의 순이었다. 4. 퇴적물내의 산소농도와 황화합물 가스의 배출농도와는 1% 고도의 부의 지수적 상관이 있었으며, 황화수소와 메틸멀캅탄 가스는 산소농도 5%이하에서 급격히 증가하고 15%이상에서는 거의 배출되지 않으나 이산화황은 산소농도 29%에서도 배출되는 것으로 추정되었다.

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Methylomonas mnosa에 의한 Exopolysaccharide의 유가식 및 연속 생산 (Exopolysaccharide Production in Fed-batch and Continuous Culture by Methylomonas mucosa)

  • 장호남;권선훈심상준
    • KSBB Journal
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    • 제8권2호
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    • pp.164-171
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    • 1993
  • Methylomonas mucosa를 이용하여 세포외 다당류의 생산을 알아보았다. 본 미생물은 성장을 위해 메탄올을 탄소원으로 이용하여 세포외 다당류를 생산한다. 효과적인 발효 공정 시스템의 개발올 위해 회 분식, 유가식, 연속식 배양을 수행하여 각각의 당류 에 대한 생산성을 알아보았다. 플라스크 배양에서 메탄올이 약 1 % (v/v) 이상에서 다당류의 생산과 세포의 성장은 저해되었다. 1% (v/v)에서 최대 비성장속도를 나타내었고 C/N 비율이 높을수록 다당류의 생산은 많았다. 다당류의 생산에 $Mg^{2+}$ 이온 농도가 크게 영향을 줌을 확인할 수있었다. 유가식 배양에서는 다당류의 농도가 회분식에 비 해 4배 이상 높았으나 수율은 오히려 감소하였다. 연속주입을 통한 유가식 배양은 간헐적 주업방법보다 생산성이 높았다. 이는 간헐적 주입에서 나타날 수 있는 메탄올에 의한 제한이나 저해가 없었기 때 문으로 보여진다. 연속조엽은 산소 제한을 피하기 위해 순수산소를 공급하였다. 희석률이 O.21h-1까지 증가하여도 수융 과 생산성은 증가하였다. 생산된 다당류 용액의 점도는 다당류의 증가에 따라 지수적으로 증가하였다.

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퇴적물에서 금속 이온 거동에 미치는 습지 식물의 영향에 관한 모델 연구 (A Modeling Approach: Effects of Wetland Plants on the Fate of Metal Species in the Sediments)

  • 최정현
    • 한국물환경학회지
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    • 제24권5호
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    • pp.603-610
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    • 2008
  • A mathematical model was developed to understand how the presence of plants affects vertical profiles of electron acceptors, their reduced species, and trace metals in the wetland sediments. The model accounted for biodegradation of organic matter utilizing sequential electron acceptors and subsequent chemical reactions using stoichiometric relationship. These biogeochemical reactions were affected by the combined effects of oxygen release and evapotranspiration driven by wetland plants. The measured data showed that $SO_4{^{2-}}$ concentrations increased at the beginning of the growing season and then gradually decreased. Based on the measured data, it was hypothesized that the limitation of the solid phase sulfide in direct contact with the roots may result in the gradual decrease of $SO_4{^{2-}}$ concentrations. With the dynamic formulation for the limitation of the solid phase sulfide, model simulated time variable sulfate profiles using published model parameters. Oxygen release from roots produced divalent metal species (i.e. $Cd^{2+}$) as well as oxidized sulfur species (i.e. $SO_4{^{2-}}$) in the sediment pore water. Evapotranspiration-induced advection increased flux of divalent metal species from the overlying water column into the rhizosphere. The increased divalent metal species were converted to the metal sulfide with sufficient FeS around the rhizosphere, which contributed to the decrease of bioavailability and toxicity of divalent metal activity in the pore water. Since the divalent metal activity is a good predictor of the metal bioavailability, this model with a proper simulation of solid phase sulfide plays an essential role to predict the dynamics of trace metals in the wetland sediments.