• 제목/요약/키워드: Low flow oxygen

검색결과 250건 처리시간 0.021초

돈분과 톱밥혼합물의 연속 및 간헐 통기 퇴비화에서 암모니아 휘산 (Ammonia Emissions from Composting Hog Manure Amended with Sawdust under Continuous and Intermittent Aeration)

  • 홍지형
    • 한국농공학회지
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    • 제43권4호
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    • pp.113-119
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    • 2001
  • Ammonia emissions during composting of hog manure mixed with sawdust were studied in four runs comprising a total of 22 pilot-scale reactor vessels. These four runs extended previous work and both verified and extended the previous conclusions. The pilot-scale vessels were 205 L insulated stainless steel drums that were aerated either continuously (high/low thermostatically controlled fans) or intermittently (5 min high fan 55 min off). Temperature ammonia emissions air flow rates carbon dioxide production and oxygen utilization moisture and dry matter reduction initial and final chemical compositions were measured. Ammonia emissions from the intermittently aerated vessels were only about 50% as great as those from the continuously aerated ones but this was found to be a result more related to total air flow than to aeration technique. All of the data for total result more related to total air flow were fitted with a linear regression line y=0.139x+29.835 where y is ammonia expressed as g of N and x is air flow in kg with $R^2$=0.6808. this general trend indicates that about 50% reduction in ammonia emissions can be achieved with 75% reduction in air flow. For the aeration techniques used the minimum oxygen level in te exhaust gas from the vessels was 5% and this is probably a resonable lower limit constraining air flow reduction. However within this constraint lower air flow now appears to be a technique that can reduce odorous ammonia emissions.

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분리막과 PSA혼합법에 의한 고순도 산소의 제조 (Production of High Purity Oxygen by Combination of Membrane and PSA Methods)

  • Hwang, Sun-Tak
    • 멤브레인
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    • 제4권1호
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    • pp.1-8
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    • 1994
  • There are growing needs to produce relatively high purity(99.0% or higher) oxygen at low cost. For small scale production, both pressure swing adsorption(PSA) and membrane process are competitive and less expensive or more convenient than well known cryogenic fractionation technology. A continuous membrane column(CMC) combined with a PSA oxygen generator can be employed to produce high purity oxygen continuously. The oxygen enriched gas generated by a PSA unit, with a concentration of 93~94%, is fed to the CMC that consism of three modules of poly(imide) hollow fibers. Several experiments were conducted by varying parameters, such as feed flow rate, transmembrane pressure drop, stage cut, and feed location in order to obtain a high oxygen concentration above 99.0%. A two-series unit mode was also employed with CMC operation to optimize the given membrane area.

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Production of High Purity Oxygen by Conbination of Membrane and PSA Methods

  • Hwang, Sun-Tak
    • 한국막학회:학술대회논문집
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    • 한국막학회 1994년도 심포지움시리즈 Jan-94 기체분리막 기술 및 응용
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    • pp.1-21
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    • 1994
  • There are growing needs to produce relatively high purity (99.0% or higher) oxygen at low cost. For small scale production, both pressure swing adsorption (PSA) and membrane process are competitve and less expensive or more convient than well known crygenic fractionation technology. A continuous membrane colume (CMC) combined with a PSA oxygen generator can be employed to produce high purity oxygen continuosly. The oxygen-enriched gas generated by a PSA unit, with a concentration of 93-94%, is fed to the CMC that consists of three modules of poly(imide) hollow fibers. Several experiments were conducted by varying parameters, such feed flow rate, transmenbrane pressure drop, stage cut, and feed location in order to obtain a high oxygen concentration above 99.0%. A two-series unit mode was also employed with CMC operation to optimize the given membrane area.

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탈산소제 차단 수처리에 의한 배열회수보일러 저압증기발생기 연결배관내의 유동가속부식 저감 (Reduction of the Flow Accelerated Corrosion within Low Pressure Evaporator Connection Pipe by Interception of Hydrazine for Water Treatment)

  • 손병관;이재헌
    • 플랜트 저널
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    • 제9권4호
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    • pp.26-30
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    • 2013
  • 유동가속부식에 의해 배관이 파손된 500 MW급 A 복합발전소 배열회수보일러 저압증기발생기 배관을 모델로 삼아 배관급수 내의 용존산소 부족이 유동가속부식의 주요 원인임을 도출하고 용존산소를 증가시키기 위해 적용된 하이드라이진 차단 수처리에 대한 적용효과를 분석하였다. 수처리 적용 1년 후 급수의 용존산소는 0.15 ppb에서 3~5 ppb로 상승되고, 산화환원전위도 -245 mV에서 170 mV로 산화성으로 상승되었다. 또한 유동가속부식에 의한 부식생성물인 철분함유량은 18.5 ppb에서 5~7 ppb로 감소되었다. 따라서 하이드라이진 차단 수처리로 급수의 용존산소가 증가되며 유동가속부식에 의한 배관의 부식생성물인 철분함유량이 감소됨을 확인하였다.

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수량.수질 모의치를 이용한 어류 서식 조건 유지에 필요한 적정 유량 산정 (Estimation of Suitable Flow Needs for Maintaining Fish Habitat Conditions Using Water Quantity and Quality Simulation)

  • 김규호;조원철;전병호
    • 한국수자원학회논문집
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    • 제33권1호
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    • pp.3-14
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    • 2000
  • 본 연구는 최근 하천유지유량에서 중요한 위상을 차지하고 있는 하천생태계에서 어류 서식처를 보전하고 복원하는데 필요한 적정 유량을 산정하는 것이 주된 목적이다. 어류 서식처를 적절히 유지할 수 있는 연과 월갈수량을 산정한다. 이 갈수량을 이용하여 점변 흐름에서 어류 서식처 제공에 필요한 수심과 유속을 모의하고, 또한 수온과 용존산소를 예측한다. 예측된 각 갈수량별 서식 조건과 각 성장단계별 어류 서식처 요구 조건을 도식적으로 비교하다. 이 과정을 남한강의 달철 본류에 위치한 3개 여울 구간에 적용하였다. 달천의 대표어종으로 피라미를 산정하였다. 달천의 피라미(Zacco paltypus)성장단계별 서식처 유지를 위한 적정유량은 수질보다는 수리 조건에 좌우되며, 그 양은 10년 빈도 연갈수량에서 2.33년 빌도 7일 연속갈수량까지의 범위를 갖는 것으로 나타났다.

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급성 호흡곤란이 발생한 성문암 환자에서 기도 확보를 위한 고유량 비강 캐뉼라 보조 기관절개술 (High Flow Nasal Cannula Assisted Tracheostomy for Securing Airways in Patients with Acute Respiratory Distress Induced by Glottic Cancer)

  • 홍승우;이동근
    • 대한후두음성언어의학회지
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    • 제31권1호
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    • pp.31-34
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    • 2020
  • Tracheostomy is considered as a first treatment, when oral intubation seems to be difficult in patient who present severe upper airway obstruction. Generally, tracheostomy is performed in supine position. But if airway obstruction is severe enough to cause dyspnea, low oxygen saturation and inability to maintain supine position, tracheostomy should be performed in sitting position. The authors report a case of successful tracheostomy using high flow nasal cannula which help to maintain stable oxygen saturation and respiration in patients with laryngeal cancer.

심근 저산소증 영상 (Imaging Hypoxic Myocardium)

  • 배상균
    • 대한핵의학회지
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    • 제39권2호
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    • pp.141-145
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    • 2005
  • Hypoxia (decreased tissue oxygen tension) is a component of many diseases such as tumors, cerebrovascular diseases and ischemic heart diseases. Although hypoxia can be secondary to a low inspired $pO_2$ or a variety of lung disorders, the most common cause is ischemia due to an oxygen demand greater than the local oxygen supply. In the heart tissue, hypoxia is often observed in persistent low-flow states, such as hibernating myocardium. Direct "hot spot" imaging of myocardial tissue hypoxia is potentially of great clinical importance because it may provide a means of identifying dysfunctional chronically ischemic but viable hibernating myocardium. A series of radiopharmaceuticals that incorporate nitroimidazole moieties have been synthesized to detect decreased local tissue pO2. In contrast to agents that localize in proportion to perfusion, these agents concentrate in hypoxic tissue. However, the ideal agents are not developed yet and the progress is very slow. Furthermore, the research focus is on tumor hypoxia nowadays. This review introduces the myocardial hypoxia imaging with summarizing the development of radiopharmaceuticals.

가스터어빈 연소기의 화염 안정화와 제어 (Flame Stabilization and Control in Gas Turbine Combustor)

  • 최경민
    • 한국분무공학회지
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    • 제8권4호
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    • pp.24-30
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    • 2003
  • This paper presents the characteristics of lifted height and flame length from non-premixed jet flames in highly preheated air to investigate the detail combustion mechanism in the gas turbine or HCCI engine, etc. Special attention was paid to the effect of preheated air temperature, oxygen concentration and fuel injection flow rate on flame length and lifted hight. By using highly preheated air, stable flames were formed even in low oxygen concentration condition. The lifted height increased with decreasing preheated air temperature, where the flame length showed opposed phenomena. The flamelet model, which is thought to have very thin flamelet, is difficult to applicable to the present flame conditions which is formed In low oxygen concentration in highly preheated air.

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무산소동 소재를 활용한 태양광 일렉트로드 바디 단조 부품 개발 (Development of Forging Parts for Solar Electrode Body Using Oxygen-Free Copper Material)

  • 박동환;탁윤학
    • 한국기계가공학회지
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    • 제15권3호
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    • pp.28-35
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    • 2016
  • Forging operations are non-stationary processes occurring because of indirect pressure, generally, under conditions of three-dimensional stress and deformation. Furthermore, due to friction and the constraints of die geometry, deformation is not homogeneous. Material flow and deformation are largely determined by the shape of the tools. It is well known that net-shape forging can improve the mechanical strength of the final product as well as reduce material waste. Oxygen-free copper that is used for electrical and electronic components has excellent electrical and thermal conductivity. Oxygen-free copper parts have a low productivity in cutting process. Thus, the forging process is performed in order to improve the low productivity in cutting process. The forging of oxygen-free copper for electrode body parts was modeled using finite element simulation and forging experiments that were conducted for producing electrode body parts at room temperature. In order to reduce the cost of cutting products, the forging was performed in a closed cavity to obtain near-net or net-shape parts.

메탄 산소 확산화염에서 유속 변화에 따른 연소특성 (Combustion Characteristics for Varying Flow Velocity on Methane/Oxygen Diffusion Flames)

  • 김호근;이상민;안국영;김용모
    • 대한기계학회논문집B
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    • 제29권11호
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    • pp.1277-1284
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    • 2005
  • The combustion characteristics of methane oxygen diffusion flames have been investigated to give basic information for designing industrial oxyfuel combustors. NOx reduction has become one of the most determining factors in the combustor design since the small amount of nitrogen is included from the current low cost oxygen production process. Flame lengths decreased with increasing fuel or oxygen velocity because of the enhancement of mixing effect. Correlation equation between flame length and turbulent kinetic energy was proposed. NOx concentration was reduced with increasing fuel or oxygen velocity because of the enhanced entrainment of the product gas into flame zone as well as the reduction of residence time in combustion zone.