• 제목/요약/키워드: Carbon dioxide (CO2)

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Performance analysis of S-CO2 recompression Brayton cycle based on turbomachinery detailed design

  • Zhang, Yuandong;Peng, Minjun;Xia, Genglei;Wang, Ge;Zhou, Cheng
    • Nuclear Engineering and Technology
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    • 제52권9호
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    • pp.2107-2118
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    • 2020
  • The nuclear reactor coupled with supercritical carbon dioxide (S-CO2) Brayton cycle has good prospects in generation IV reactors. Turbomachineries (turbine and compressor) are important work equipment in circulatory system, whose performances are critical to the efficiency of the energy conversion system. However, the sharp variations of S-CO2 thermophysical properties make turbomachinery performances more complex than that of traditional working fluids. Meanwhile, almost no systematic analysis has considered the effects of turbomachinery efficiency under different conditions. In this paper, an in-house code was developed to realize the geometric design and performance prediction of S-CO2 turbomachinery, and was coupled with systematic code for Brayton cycle characteristics analysis. The models and methodology adopted in calculation code were validated by experimental data. The effects of recompressed fraction, pressure and temperature on S-CO2 recompression Brayton cycle were studied based on detailed design of turbomachinery. The results demonstrate that the recompressed fraction affects the turbomachinery characteristic by changing the mass flow and effects the system performance eventually. By contrast, the turbomachinery efficiency is insensitive to variation in pressure and temperature due to almost constant mass flow. In addition, the S-CO2 thermophysical properties and the position of minimum temperature difference are significant influential factors of cyclic performance.

제주도 고산지역 CO2 농도의 단기 변동에 영향을 미치는 요인 분석 (Influencing Factors for Short-term Variations of Carbon Dioxide Concentration at the Gosan Site in Jeju, Korea)

  • 김승연;이상덕;김덕래;이재범;송창근;최광호;한진석
    • 한국대기환경학회지
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    • 제30권5호
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    • pp.423-433
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    • 2014
  • This study examined the short-term variability of $CO_2$ concentrations measured at the Gosan site ($33^{\circ}17^{\prime}N$, $126^{\circ}10^{\prime}E$) in Jeju, Korea for the last 9 years from 2002 to 2010. The weekly distribution shows higher $CO_2$ concentrations during weekends than weekdays which implies the impact of local emissions because Jeju Island is one of the top tourist attraction in Korea. In diurnal variation, $CO_2$ concentration reached the maximum at 6 am and the minimum at 1 pm. The high $CO_2$ concentrations were mostly associated with lower wind speed (below 4 m/s) and easterlies, which was typical of summer night. In other seasons, however, the high concentrations were encountered under strong westerlies (8~16 m/s), which implies the influence of Chinese outflows. $CO_2$ concentrations were found to be highly correlated with meteorological parameters including wind speed, temperature, humidity, and solar radiation except for winter.

가스화 복합화력발전 플랜트에서 CO2제거가 성능에 미치는 영향 해석 (Analysis of the Influence of CO2 Capture on the Performance of IGCC Plants)

  • 차규상;김영식;이종준;김동섭;손정락;주용진
    • 한국유체기계학회 논문집
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    • 제13권1호
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    • pp.9-16
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    • 2010
  • In the power generation industry, various efforts are needed to cope with tightening regulation on carbon dioxide emission. Integrated gasification combined cycle (IGCC) is a relatively environmentally friendly power generation method using coal. Moreover, pre-combustion $CO_2$ capture is possible in the IGCC system. Therefore, much effort is being made to develop advanced IGCC systems. However, removal of $CO_2$ prior to the gas turbine may affect the system performance and operation because the fuel flow, which is supplied to the gas turbine, is reduced in comparison with normal IGCC plants. This study predicts, through a parametric analysis, system performances of both an IGCC plant using normal syngas and a plant with $CO_2$ capture. Performance characteristics are compared and influence of $CO_2$ capture is discussed. By removing $CO_2$ from the syngas, the heating value of the fuel increases, and thus the required fuel flow to the gas turbine is reduced. The resulting reduction in turbine flow lowers the compressor pressure ratio, which alleviates the compressor surge problem. The performance of the bottoming cycle is not influenced much.

터널시공 시 이산화탄소(CO2)를 이용한 알칼리성 폐수의 중화처리 현장적용 연구 (A Study on the Field Application of Alkaline Tunnel Wastewater to Neutralization Using CO2)

  • 박영진;이호철
    • 한국지반공학회논문집
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    • 제36권8호
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    • pp.27-34
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    • 2020
  • 터널시공 현장에서는 콘크리트와 숏크리트 및 각종 그라우팅 공법의 사용으로 다량의 알칼리성 폐수가 발생되고 있으며 하천오염을 방지하기 위해 중성화 처리를 해서 방류해야 한다. 현재는 이를 황산과 같은 강산으로 중화 처리하고 있으나 취급상의 위험이 내재 되어있다. 그 대안으로 이산화탄소(CO2) 사용이 부각되었고 다양한 실내실험 연구가 진행되어 그 가능성이 입증되고 있다. 하지만 아직 CO2의 현장 적용연구가 절대 부족하고 특히 건설현장에서는 실내 실험 결과와는 다른 특성을 보이고 있기 때문에 현장 적용이 어려운 실정이다. 이에 본 연구에서는 현장 실험을 통하여 실제 현장 적용 가능성을 검증하고자 한다.

CO2 분리를 위한 이온성 액체 기반 혼합 매트릭스 멤브레인의 최근 발전 (Recent Advances on Ionic Liquid based Mixed Matrix Membrane for CO2 Separation)

  • 황채림;라즈쿠마 파텔
    • 멤브레인
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    • 제31권1호
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    • pp.1-15
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    • 2021
  • 이온성 액체 기반 혼합 멤브레인(MMM)은 이산화탄소 분리 매체로써 다양한 종류의 이온성 액체와 무기성 필러 폴리머에 의해 만들어진다. 이온성 액체와 무기성 필러의 강한 상호작용은 이산화탄소의 금속 유기체의 프레임워크 내 친화력, 선택성, 흡착성을 높여 분리성능을 향상시킨다. 또, 이온성 액체에 의해 혼합 매트릭스 멤브레인의 구조적 특성이 조절되어 이산화탄소 투과성과 선택성을 향상시킨다. 이 리뷰에서는 이산화탄소 분리를 위한 고분자 막에서의 이온성 액체(IL)와 금속 유기체 프레임워크(MOF)의 다양한 조합에 대한 연구가 논의될 것이다.

중적외선분광분석법을 이용한 토양 유기 탄소 분획 분석 (Feasibility of Analyzing Soil Organic Carbon Fractions using Mid-Infrared Spectroscopy)

  • 홍승길;신중두;박광래;이상범;김진호;김석철;헤닝 쉬둥;불프 아멜룽
    • 유기물자원화
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    • 제23권3호
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    • pp.85-92
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    • 2015
  • 기후변화 문제와 관련하여 탄소 격리와 토양 유기물의 중요성에 대한 관심이 증가하고 있다. 토양 탄소 격리를 산정하기 위해서는 물 추출 토양 유기탄소(WESOC)와 토양 호흡에 의해 이산화탄소로 배출되는 탄소량과 같은 토양 유기탄소를 분석하는 것이 중요하다. 이러한 성분의 분석에는 시간이 많이 소요된다. 따라서 본 연구에서는 분석시간이 짧게 소요되는 중적외선분광분석법으로 물 추출 유기탄소와 토양 호흡에 의한 이산화탄소량을 분석할 수 있는 가능성을 알아보았다. 토양을 $100^{\circ}C$$350^{\circ}C$ 건조오븐에서 처리하고 중적외선분광계로 분석하여 WESOC와 30일, 60일, 90일, 120일 간 토양호흡에 의해 발생하는 이산화탄소량과의 상관을 분석하였다. 물 추출 토양 유기탄소에 대한 예측 모델에서는 표준 일반 변수화(SNV) 전처리를 통해 0.6937의 결정 계수를 보였고 30일간의 토양 호흡 발생 이산화탄소 예측 모델에서는 $350^{\circ}C$ 건조 토양에 대해 1차 도함수 전처리를 통해 0.8933의 결정 계수를 보여 중적외선분광분석법을 사용하여 토양 중 유기탄소의 분획별 정량에 사용할 수 있는 가능성을 보였다.

국산 막형 산화기 (OXYREX)의 체외순환 임상 성적 - 개심수술 40례 적용 - (Clinical Application of OXYREX Hollow Fiber Membrane Oxygenator)

  • 김형묵
    • Journal of Chest Surgery
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    • 제23권6호
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    • pp.1049-1056
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    • 1990
  • The OXYREX hollow fiber membrane oxygenator developed by joint work of KIST and Green Cross Medical company has been evaluated by experimental investigation and clinical application, In this oxygenator gas exchanges occur through small pores of 0.1pm size which are distributed on 70% of surface of polypropylene hollow fiber. The Oxyrex membrane oxygenator consists of 36 thousand hollow fibers and it has 3.3m2 of gas exchange surface. The Oxyrex membrane oxygenator has unique blood flow path: blood enters the oxygenator passes between the hollow fibers and exits through outlet ports, that provides low transmembrane pressure drop. In the animal experiment and in vitro investigations of Oxyrex oxygenator, it showed low transmembrane pressure difference, effective heat exchanger performance, stable gas transfer function and less blood trauma. The Oxyrex oxygenator been used from March, 1990, to October, 1990, in 40 patients undergoing open heart operations. In the clinical applications of Oxyrex, adequate oxygenation[PaO2, 283$\pm$70mmHg] and carbon dioxide removal[PaCO2, 27\ulcorner6mmHg]were maintained under the condition of FiO2: below 0.6, Hct; 25%, perfusion flow; 2.4 L/min, gas flow: 2.1 L/min. During maximum 365 minutes of cardiopulmonary bypass[CPB] time period, the Oxyrex oxygenator maintained stable condition of PaO2, PaCO2 respectively and it also kept low plasma hemoglobin level. The complement proteins C3 and CH50 were not significantly changed pre to post CPB. There were no complications related to the oxygenator during and after the CPB.

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ASSESSMENT OF GAS COOLED FAST REACTOR WITH INDIRECT SUPERCRITICAL $CO_2$ CYCLE

  • Hejzlar, P.;Dostal, V.;Driscoll, M.J.;Dumaz, P.;Poullennec, G.;Alpy, N.
    • Nuclear Engineering and Technology
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    • 제38권2호
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    • pp.109-118
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    • 2006
  • Various indirect power cycle options for a helium cooled gas cooled fast reactor (GFR) with particular focus on a supercritical $CO_2(SCO_2)$ indirect cycle are investigated as an alternative to a helium cooled direct cycle GFR. The balance of plant (BOP) options include helium-nitrogen Brayton cycle, supercritical water Rankine cycle, and $SCO_2$ recompression Brayton power cycle in three versions: (1) basic design with turbine inlet temperature of $550^{\circ}C$, (2) advanced design with turbine inlet temperature of $650^{\circ}C$ and (3) advanced design with the same turbine inlet temperature and reduced compressor inlet temperature. The indirect $SCO_2$ recompression cycle is found attractive since in addition to easier BOP maintenance it allows significant reduction of core outlet temperature, making design of the primary system easier while achieving very attractive efficiencies comparable to or slightly lower than, the efficiency of the reference GFR direct cycle design. In addition, the indirect cycle arrangement allows significant reduction of the GFR &proximate-containment& and the BOP for the $SCO_2$ cycle is very compact. Both these factors will lead to reduced capital cost.

커피찌꺼기의 효율적인 열화학 전환을 위한 전이 금속 기반 첨가제 효율 평가 (Efficiency Evaluation of Transition Metal-Based Additives for Efficient Thermochemical Conversion of Coffee Waste)

  • 조동완;장정윤;김선준;임길재
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제27권1호
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    • pp.17-24
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    • 2022
  • This work examined the effect of mixing transition metal-based additives [FeCl3, Fe-containing paper mill sludge (PMS), CoCl2·H2O, ZrO2, and α-Fe2O3] on the thermochemical conversion of coffee waste (CW) in carbon dioxide-assisted pyrolysis process. Compared to the generation amounts of syngas (0.7 mole% H2 & 3.0 mole% CO) at 700℃ from single pyrolysis of CW, co-pyrolysis in the presence of Fe- or Zr-based additives resulted in the enhanced production of syngas, with the measured concentrations of H2 and CO ranging 1.1-3.4 mole% and 4.6-13.2 mole% at the same temperature, respectively. In addition, α-Fe2O3 biochar possessed the adsorption capacity of As(V) (19.3 mg g-1) comparable to that of ZrO2-biochar (21.2 mg g-1). In conclusion, solid-type Fe-based additive can be highly considered as an efficient catalyst to simultaneously produce syngas (H2 & CO) as fuel energy resource and metal-biochar as sorbent.

LTCC를 소재로 하는 마이크로 리포머의 최적 설계에 관한 연구 ; 일체형 Reformer/PROX 반응기의 설계 및 성능평가 (A Study on the Optimum Design for LTCC Micro-Reformer: Design and performance evalution of monolith fuel reformer/PROX)

  • 정찬화;오정훈;장주희;정명기
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 추계학술대회 논문집
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    • pp.615-616
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    • 2006
  • A micro-fuel processor system integrating steam reformer and partial oxidation reactor was manufactured using low temperature cofired ceramic (LTCC). A CuO/ZnO/$Al_2O_3$ catalyst and Pt-based catalyst prepared by wet impregnation were used for steam reforming and partial oxidation, respectively. The performance of the LTCC micro-fuel processor was measured at various operating conditions such as the effect of the feed flow rate, the ratio of $H_2O/CH_3OH$, and the operating temperature on the LTCC reformer and CO clean-up system. The catalyst layer was loaded with "Fill and Dry" coating for small volume. The product gas was composed of $70\sim75%$ hydrogen, $20\sim25%$ carbon dioxide, and $1\sim2%$ carbon monoxide at $250\sim300^{\circ}C$, respectively.

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