• 제목/요약/키워드: Liquefaction carbon dioxide

검색결과 10건 처리시간 0.023초

이산화탄소 수송을 위한 압축 및 액화 공정 설계 및 비용 평가 (Process Design and Cost Estimation of Carbon Dioxide Compression and Liquefaction for Transportation)

  • 양시엽;이웅;임영섭;정영수;김정남;이치섭;한종훈
    • Korean Chemical Engineering Research
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    • 제50권6호
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    • pp.988-993
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    • 2012
  • 이산화탄소 포집 및 저장 기술 중에서 수송 단계를 위한 전처리 과정인 초임계 압축 및 액화 공정에 대해서 압축 방법에 따른 에너지와 그 때의 비용의 평가가 이루어졌다. 이산화탄소를 초임계상까지 직접 압축하는 경우(공정 1-1), 액화 후 펌프로 초임계상을 만드는 경우(공정 1-2), 이산화탄소의 가압 팽창으로 액화하는 경우(공정 2), 다른 냉매를 사용하면서 그 냉매를 가압, 팽창으로 얻는 경우(공정 3-1), 냉매를 흡수 냉각법으로 얻는 경우(공정 3-2), 캐스케이드 방법을 사용한 경우(공정 4)에 대해서 각각 공정 모사되었으며 그 때의 비용이 평가되었다. 비용은 $4~7/ton으로 추정된다.

LNG 냉열을 활용한 이산화탄소 액화공정에서 절감되는 전력량의 산출 (Estimation of the Amount of Electric Power Saved in the Carbon Dioxide Liquefaction Process using LNG Cold Heat)

  • 이지환;조정호
    • 한국수소및신에너지학회논문집
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    • 제31권2호
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    • pp.259-264
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    • 2020
  • In this study, comparison study has been performed between two-stage compression and a vapor-recompression refrigeration cycle and a liquefaction using LNG cold heat. When using a first method using two-stage compression and a refrigeration cycle, at least three compressors are required, however when using LNG cold heat, no compressor is required since carbon dioxide can be pumped after condensing with the heat exchange with -160℃ of LNG. Through this study, we can save more than one hundred million KRW annually by using LNG cold heat instead of using gas compression and refrigeration cycle.

Low - Global Warming Potential 냉매를 이용한 에틸렌 수송선의 재액화 시스템 성능개선 (Performance Improvement on the Re-Liquefaction System of Ethylene Carrier using Low-Global Warming Potential Refrigerants)

  • 하성용;최정호
    • 대한조선학회논문집
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    • 제55권5호
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    • pp.415-420
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    • 2018
  • The development of sail gas has increased the production of ethane as well as natural gas. The decline in the market price for ethane has led to a change in the petroleum-based ethylene production process into an ethane-based ethylene production process and an increase in the ethane/ethylene trade volume. Large-scale ethane/ethylene carrier have been needed due to an increase in long-distance trade from the US, and cargo type change have leaded to consider a liquefaction process to re-liquefy Boil-Off gas generated during the voyage. In this paper, the liquefaction system of Liquefied Ethane Gas carrier was evaluated with Low-GWP (Low-Global Warming Potential) refrigerant and process parameters, Boil-Off Gas pressure and expansion valve outlet pressure, were optimized. Low-GWP refrigerants were propane (R290), propylene(R1270), carbon dioxide(R744) was considered at two type of liquefaction process such as Linde and cascade cycle. The results show that the optimal pressure point depends on the individual refrigerant and the highest liquefaction efficiency of carbon dioxide (R744) - propane (R290) refrigerant.

수중기관에서 냉열을 이용한 배기가스 액화시스템 해석 (The liquefaction system of the exhaust gas using cold energy in underwater engine)

  • 이근식;장영수;노승탁
    • 대한기계학회논문집B
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    • 제20권5호
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    • pp.1591-1602
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    • 1996
  • In operating the underwater engines such as encountered in exploring submarines, the dumping of the exhaust gas out of the engine requires a large portion of the total power, frequently amounting to 25-30% of the power generated. This unfavorable circumstance can be cured by liquefying the exhaust gas and storing it. In the present study, two liquefaction systems were simulated to enhance the overall efficiency; one is a closed cycle diesel engine and the other is a closed cycle LNG engine. The liquefied natural gas (LNG) is chosen as a fuel, not only because its use is economical but also because its cold energy can be utilized within the liquefaction system. Since a mixture of oxygen and carbon dioxide is used as an oxidizer, liquefying carbon dioxide is of major concern in this study. For further improving this system, the intercooling of the compressor is devised. The necessary power consumed for the liquefying system is examined in terms of the related properties such as pressure and temperature of the carbon dioxide vessel as a function of the amount of the exhaust gas which enters the compressor. The present study was successful to show that much gain in the power and reduction of the vessel pressure could be achieved in the case of the closed cycle LNG engine. The compression power of exhaust gas were observed remarkably lower, typically only 6.3% for the closed cycle diesel engine and 3.4% for the closed cycle LNG engine respectively, out of net engine power. For practicality, a design -purpose map of the operating parameters of the liquefaction systems was also presented.

몇 가지 냉매를 사용한 이산화탄소 액화에 대한 비교 연구 (Comparative Research on the Carbon Dioxide Liquefaction Using Several Refrigerants)

  • 박일수;황필성;정기철;안준수;조정호
    • 한국수소및신에너지학회논문집
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    • 제34권2호
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    • pp.226-233
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    • 2023
  • In this study, we compared the performance of several refrigeration cycles using different refrigerants and utilizing the cold heat of liquefied natural gas (LNG) for the liquefaction of carbon dioxide. The final conditions for the liquefied CO2 were set to -20℃ and 20 bar. The refrigerants used included R404a, ammonia, propane, and propylene using a vapor recompression refrigeration cycle. For the refrigeration cycle, the CO2 at room temperature and pressure was compressed in a two-stage compression process with an intermediate cooling stage using a refrigeration unit. To compare with the liquefaction process using refrigeration, we compressed the CO2 to 8 bar in a single compression stage and cooled it to around -50℃ using the cold heat of the LNG before liquefying it. Results showed that using ammonia as the refrigerant required the least amount of compressor power for the liquefaction process, and the heat transfer area of the evaporator was the smallest when using propylene as the refrigerant. Using the cold heat of LNG instead of refrigeration using R404a resulted in approximately 69% less energy consumption.

바이오가스의 $CH_4$, $CO_2$의 분리방법 연구 (A Study for Separation of $CH_4$ and $CO_2$ from Biogas)

  • 이택홍;김재영;장세훈;이효석;최익환
    • 한국수소및신에너지학회논문집
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    • 제21권1호
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    • pp.72-79
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    • 2010
  • This paper is studying the selective separation of methane and carbon dioxide which are the main ingredients of biogas. Adsorption performance of molecular sieve 13x for carbon dioxide seems to be reasonable. In this experiments carbon dioxide contains about 3~5 ppm of methane and it is impossible to obtain high purity carbon dioxide. Applying the low temperature technique, it is possible to separate methane and carbon dioxide from bio gas. PRO II simulation shows results a small change of liquefaction temperatures and no difference with the used thermodynamic models. Applying low temperature technique, It is possible to separate carbon dioxide and methane from biogas.

$CO_2$ 액화 사이클의 액화 성능 특성에 관한 연구 (Study on the liquefaction performance characteristic of $CO_2$ liquefaction cycle)

  • 송찬호;이공훈
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.1312-1316
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    • 2009
  • Growing interest in $CO_2$ capturing from industrial processes and storage in underground formations is emerging from commitments in reducing $CO_2$ emissions manifested in the Kyoto Protocol. In this paper, $CO_2$ liquefaction system is treated in focus of liquefaction efficiency & production rate. Presently $CO_2$ is transported in ships or trucks at a pressure of 14-20 bar. Considering this, the liquefaction pressures of 20, 15, 6.5 bar are selected. Compressor work and cooling capacity are calculated and compared. In order to investigate the effect of intercooling, the compressed gas after compressor work is cooled by ambient air or seawater. In case of applying the intercooling to the system, consuming energy can be saved larger than 20%. In the lower liquefaction pressure, the more $CO_2$ can be obtained due to higher density. In the liquefaction pressure of 6.5 bar, its $CO_2$ production is about 35% higher than that of the system with the liquefaction pressure, 20 bar.

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이산화탄소 액화를 위한 증기 재압축 냉동 공정과 액체질소 냉열을 이용한 냉동 공정의 비교 연구 (Comparative Study on the Refrigeration Processes between Refrigeration Using Vapor Recompression and Refrigeration Using LN2 Cold Heat for the Carbon Dioxide Liquefaction)

  • 노상균
    • 한국수소및신에너지학회논문집
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    • 제34권5호
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    • pp.549-554
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    • 2023
  • In this paper, three kinds of studies have been completed to obtain highly purified carbon dioxide having more than 7N purity as an electronic grade quality. PRO/II with PROVISION release January 2023 from AVEVA company was used, and Peng-Robinson equation of the state model with Twu's alpha function was selected for the modeling of the cryogenic distillation process. When using LN2 cold heat, we can obtain highest recovery of carbon dioxide as a bottom product for a cryogenic distillation column.

Optimization of compression ratio in closed-loop CO2 liquefaction process

  • Park, Taekyoon;Kwak, Hyungyeol;Kim, Yeonsoo;Lee, Jong Min
    • Korean Journal of Chemical Engineering
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    • 제35권11호
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    • pp.2150-2156
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    • 2018
  • We suggest a systematic method for obtaining the optimal compression ratio in the multi-stage closed-loop compression process of carbon dioxide. Instead of adopting the compression ratio of 3 to 4 by convention, we propose a novel approach based on mathematical analysis and simulation. The mathematical analysis prescribes that the geometric mean is a better initial value than the existing empirical value in identifying the optimal compression ratio. In addition, the optimization problem considers the initial installation cost as well as the energy required for the operation. We find that it is best to use the fifth stage in the general closed-loop type carbon dioxide multi-stage compression process.

LNG 추진선박에 수소 연료전지 시스템 적용을 위한 개질기의 특성 분석 (Analysis of the Characteristics of Reformer for the Application of Hydrogen Fuel Cell Systems to LNG Fueled Ships)

  • 이윤호
    • 해양환경안전학회지
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    • 제27권1호
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    • pp.135-144
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    • 2021
  • 본 논문에서는 LNG 추진선박에서 발생하는 BOG(boil-off gas)를 이용하여 수소를 생산하고 수소 연료전지 시스템을 보조엔진으로 적용한 개질공정의 특성에 대한 연구를 수행했다. 연구를 위해 BOG 수증기 개질공정을 UniSim R410 프로그램을 이용해 공정설계하고, 개질기의 출구온도와 압력, SCR(steam carbon ratio)에 따른 생성물의 분율과 반응물의 소모량을 산출하였다. 연구 결과 개질온도가 890℃일때 메탄의 반응률이 100 %였으며, 최대 수소 생산량을 보였다. 또한 개질압력이 낮을수록 반응 활성도가 높았다. 하지만 그 이상의 온도가 되면 역반응의 우세로 인해 수소의 생산량은 감소하게 되고, 물과 이산화탄소의 양은 증가했다. 또한 SCR이 증가할수록 수소 생산량도 증가했으나 요구되는 에너지 소비량도 비례하여 증가했다. SCR이 1.8일 때 수소분율이 가장 높았으나 코킹방지를 위해 SCR이 3에서 운전하는 것이 최적 운전범위임을 확인했다. 그리고 개질압력이 낮을수록 발생되는 이산화탄소의 양은 증가했으며, 냉각 및 액화를 위해서는 이산화탄소 발생량을 기준으로 42.5 %의 LNG 냉열이 요구됨을 알 수 있었다.