• Title/Summary/Keyword: 이산화탄소 회수율

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Study of Bench scale Chemical Absorption Process for $CO_2$ Separation ($CO_2$ 분리회수를 위한 Bench 규모의 화학흡수분리공정 운전특성 연구)

  • 남성찬;박성열;이종섭;민병무;임정수
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2003.05a
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    • pp.697-702
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    • 2003
  • 실험실규모(0.5Nm$^3$/hr)의 이산화탄소 연속흡수분리장치의 실험결과를 바탕으로 Bench규모(5Nm$^3$/hr)의 이산화탄소 연속흡수분리장치 설계하였다. MEA용 이산화탄소 연속흡수분리 장치를 4개의 흡수탑과 2개의 탈거탑을 연결하여 각각 독립적으로 실험할 수 있도록 장치를 제작하고 실험변수에 따른 이산화탄소의 흡수분리효율을 측정하였다. 설치된 실험장치에 대하여 주어진 실험범위에서 실험한 결과, 이산화탄소 제거율이 45~100%에 존재함을 확인하였다. 실험결과와 설계기준을 고려한 scale-up factor는 설계결과와 실험결과를 종합하였을 때, 각각 1.00~1.85인 것으로 산출되었다.

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Bench Scale Performance Test of WGS and $CO_2$ PSA for $H_2$ Recovery from Syn Gas (합성가스로부터 수소회수를 위한 WGS 및 $CO_2$ PSA 성능평가)

  • Jeong, Seong-Jae;Cha, Jae-Jun;Kim, Young-Suk
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.206.1-206.1
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    • 2010
  • 폐기물 등을 열분해 가스화한 합성가스로부터 효과적으로 고순도의 수소를 회수하기 위하여 WGS(수성가스전환반응) 및 $CO_2$ 회수 PSA 공정을 적용하였다. 벤치스케일 열교환형 WGS반응기를 개발하여 기존 단열방식에 비하여 단순화한 반응시스템을 구축하였으며 출구 CO농도 4%대를 달성하였다. 또한 3베드로 구성된 벤치스케일의 $CO_2$ PSA운전을 수행한 결과, 2.5barg 흡착 및 진공재생단계를 적용하여 회수되는 $CO_2$의 농도가 95%이상, 회수율 80%이상을 기록하는 효율적인 $CO_2$ 회수공정을 개발하였다. 한편, 흡탈착 모사프로그램인 ADSIM을 통해서도 실험과 비교적 일치한 결과를 얻을 수 있었는데 향후 스케일업 설계자료 확보시 유용할 것으로 판단되었다.

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Purification of Eicosapentaenoic Acid (EPA) by Density Gradient Supercritical $CO_2$ Chromatography (밀도구배 초임계 $CO_2$ 크로마토그래피에 의한 Eicosapentaenoic Acid (EPA) 정제)

  • 유병삼;변상요
    • KSBB Journal
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    • v.14 no.1
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    • pp.109-113
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    • 1999
  • Supercritical $CO_2$ chromatography was applied for purification of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) from fish oil. Various supercritical $CO_2$ pressures were tested to find out the pressure effects on solubility and selectivity of low fatty acids in the silver nitrate column. The solubility of low fatty acids was increased as the supercntical $CO_2$ Pressure increased. However, the selectiviy between low fatty acids and EPA waw decreased. Stepwise density gradient method was applied to increase the purification efficiency of EPA. Low fatty acids were easily separated at the early elution steps with low $CO_2$ densities. Successive fractions containing 92.1~97.8% of EPA were collected. The average concentration of three purified fractions was 95.6% with the recovery rate of 30%.

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An Introduction to Time-lapse Seismic Reservoir Monitoring (시간경과 탄성파 저류층 모니터링 개론)

  • Nam, Myung-Jin;Kim, Won-Sik
    • Geophysics and Geophysical Exploration
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    • v.14 no.3
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    • pp.203-213
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    • 2011
  • Time-lapse seismic surveys make repeated seismic surveys at different stages of oil production of a hydrocarbon reservoir to monitor changes in reservoir like fluid saturation. Since the repeatable surface seismic measurements can identify fluid types and map fluid saturations, oil and gas companies can make much more informed decision during not only production but also drilling and development. If time-lapse seismic surveys compare 3D seismic surveys, the time-lapse surveys are widely called as 4D seismic. A meaningful time-lapse interpretation is based on the repeatability of seismic surveys, which mainly depends on improved positioning and reduced noise (if surveys were designed properly through a feasibility study). The time-lapse interpretation can help oil and gas companies to maximize oil and gas recovery. This paper discusses about time-lapse seismic surveys mainly focused on feasibility, repeatability, data processing and interpretation.

Multi-stage Membrane Process for $CO_2$ Separation from Flue Gas Using PES Hollow Fiber Membrane Modules (폴리이서설폰 중공사모듈을 이용한 연소배가스로부터 이산화탄소 분리회수를 위한 다단계 막분리공정 연구)

  • Choi Seung-Hak;Kim Jeong-Hoon;Kim Eeom-Sik;Lee Soo-Bok
    • Membrane Journal
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    • v.15 no.4
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    • pp.310-319
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    • 2005
  • This paper describes the preliminary study on the development of multi-stage membrane demonstration plant for removal of carbon dioxide from flue gas stream being emitted from LNG boiler in thermal power generation plant. The prerequisite requirement is to design and develop the membrane process producing a $99\%\;CO_2$ with $90\%$ recovery from LNG flue gas of 1,000 $Nm^3$/day. Asymmetric polyethersulfone hollow fiber membranes and membrane modules developed in this laboratory[1] were used in this study. Using the permeation data for the hollow fiber membranes, modelling on the membrane module and multi-stage membrane process was done to meet the requirement condition of the process design. The effects of the operating pressure of feed and permeate side and feed concentration on $CO_2$ purity and recovery were investigated experimentally with the developed hollow fiber modules. These experimental results matched well with theoretical modelling results.

Highly Efficient Biogas Upgrading Process Using Polysulfone Hollow Fiber Membrane at Low Temperature (폴리술폰 중공사막을 이용한 바이오가스 고순도화 고효율 저온 분리 공정)

  • Kim, Se Jong;Han, Sang Hoon;Yim, Jin Hyuk;Lee, Chung Seop;Chang, Won Seok;Kim, Gill Jung;Ha, Seong Yong
    • Membrane Journal
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    • v.32 no.2
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    • pp.140-149
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    • 2022
  • In this study, the conditions of low temperature and high pressure of biogas upgrading process using polysulfone membrane have been designed and tested to achieve the high recovery and efficiency corresponding to those of the highly selective polymeric materials. Polysulfone hollow fiber membrane with 4-component dope solution was spun via non-solvent induced phase separation. The hollow fiber membrane was mounted into a 1.5 inch housing. The effective area was 1.6 m2, and its performance was examined in various operation temperatures and pressures. CO2 and CH4 permeances were 412 and 12.7 GPU at 20℃, and 280 and 3.6 GPU at -20℃, respectively, while the CO2/CH4 selectivity increased from 32.4 to 77.8. Single gas test was followed by the mixed gas experiments using single-stage and double stage where the membrane area ratio varied from 1:1 to 1:3. At the single-stage, CH4 purity increased and the recovery decreased as the stage-cut increased. At the double stage, the area ratio of 1:3 showed the higher CH4 recovery as decreasing the operation temperature at the same purity of CH4 97%. Finally, polysulfone hollow fiber membranes have yielded of both CH4 purity and recovery of 97% at -20℃ and 16 barg.

Extraction of Triterpenoid Saponin (glycyrrhizin) from Liquorice by Co-solvent Modified Supercritical Carbon Dioxide (보조용매로 변형된 초임계 이산화탄소에 의한 감초의 triterpenoid saponin(glycyrrhizin)의 추출)

  • Kim, Hyun-Seok;Kim, Byung-Yong;Lim, Gio-Bin
    • Korean Journal of Food Science and Technology
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    • v.34 no.6
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    • pp.1057-1061
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    • 2002
  • Effects of modifier and soaking on extraction of triterpenoid saponin (glycyrrhizin) from liquorice were examined using supercritical $CO_2(SC-CO_2)$ at 50 MPa, $60^{\circ}C$, and flow rate of 3 mL/min, and glycyrrhizin content was analyzed by HPLC. Additon of undiluted methanol, ethanol or isopropanol as modifier to $SC-CO_2$ had little influence on extraction yield of glycyrrhizin. Soaking process using water increased the extraction yield as the sample to solvent ratio was increased. Addition of 70% methanol, ethanol or isopropanol to $SC-CO_2$ significantly increased the extraction yields, with 70% methanol resulting in the highest yield. When water at 90% (w/w) of sample weight was used for soaking, the extraction yield and rate increased, 70% ethanol-modified $SC-CO_2$ was almost equal to that obtained using 70% methanol.

Characteristics of $SF_6$ Gas Recycling Processes ($SF_6$가스 회수 공정들의 특성 연구)

  • Cho, Hoon;Woo, Dae-Sik;Choi, Yu-Mi;Han, Myung-Wan
    • Clean Technology
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    • v.17 no.4
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    • pp.329-335
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    • 2011
  • $SF_6$ gas is well known as a global warming gas. Global warming potential of $SF_6$ gas is 22,000 times higher than that of $CO_2$. Recycling of $SF_6$ gas is an essential technology for the sake of the environment and the economy. The recovery processes of $SF_6$ gas studied in this work were liquefaction, distillation, and crystallization processes because these processes were thought to be easily carried to the fields for recycling waste $SF_6$ gas. The processes were simulated and optimized using Aspen plus. The optimization problems were formulated to minimize energy consumption with satisfying product specification and desired recovery. The performance of the processes was compared based on the optimization results. Effects of major process variables on the recovery performance were investigated and optimal operation guide for changing product specification and product recovery was provided.

Theoretical Study on Fuel Savings of Marine Diesel Engine by Exhaust-Gas Heat-Recovery System of Combined Cycle (복합 사이클의 배기가스 열회수 시스템에 의한 선박용 디젤엔진의 연료 절약에 관한 이론적 연구)

  • Choi, Byung Chul;Kim, Young Min
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.2
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    • pp.171-179
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    • 2013
  • The thermodynamic characteristics of a combined cycle applied with a topping cycle such as a trilateral cycle at relatively high temperatures and a bottoming cycle such as an organic Rankine cycle at relatively low temperatures have been theoretically investigated. This is an electric generation system used to recover the waste heat of the exhaust gas from a diesel engine used for the propulsion of a large ship. As a result, when the boundary temperature between the topping and the bottoming cycles increased, the system efficiencies of energy and exergy were simultaneously maximized because the total exergy destruction rate (${\sum}\dot{E}_d$) and exergy loss ($\dot{E}_{out2}$) decreased, respectively. In the case of a marine diesel engine, the waste heat recovery electric generation system can be utilized for additional propulsion power, and the propulsion efficiency was found to be improved by an average of 9.17 % according to the engine load variation, as compared to the case with only the base engine. In this case, the specific fuel consumption and specific $CO_2$ emission of the diesel engine were reduced by an average of 8.4% and 8.37%, respectively.

Absorption Characteristics of Aqueous Sodium Glycinate Solution with Carbon Dioxide and Its Mechanistic Analysis (Sodium Glycinate 수용액의 CO$_2$ 흡수특성 및 반응 메커니즘 해석)

  • Shim, Jae-Goo;Kim, Jun-Han;Jang, Kyung-Ryong
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.4
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    • pp.430-438
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    • 2008
  • The experiments for separation and recovery of CO$_2$ were conducted by aqueous sodium glycinate solution, which is one of the amino acid salts, as an absorbent of CO$_2$ in this study. Absorption capacities of aqueous MEA and sodium glycinate solution according to partial pressure of CO$_2$ were evaluated by vapor-liquid equilibrium tests of 20 wt% and 30 wt% above-mentioned absorbents, respectively. In addition, the pilot scale(2 t-CO$_2$/day) experiments based on prior results were carried out. As a result, CO$_2$ removal efficiency of aqueous sodium glycinate solution was lower than that of aqueous MEA solution. This phenomenon means that CO$_2$ removal efficiency of aqueous sodium glycinate solution mainly depends on its molecular structure. Consequently, the first application of certain amino acid salt, as an absorbent of CO$_2$, to pilot plant of 2 t-CO$_2$/day scale was carried out in our country.