분자체를 이용한 LNG 액화 플랜트 탈수 공정의 효율성 향상에 관한 연구

Study on the Improvement of Efficiency in Dehydration Process of LNG Liquefaction Plant Using Molecular Sieve

초록

The natural gas dehydration process plays a central role in liquefying LNG. This study proposes two natural gas dehydration process systems applicable to liquefied natural gas (LNG) liquefaction plants, and compares and analyzes energy optimization measures through simulation. The fuel gas from feed stream (FFF) case, which requires additional equipment for gas circulation, disadvantages are design capacity and increased energy. On the other hand, the end flash gas (EFG) case has advantages such as low initial investment costs and no need for compressors, but has downsides such as increased power energy and the use of gas with different components. According to the process simulation results, the required energy is 33.22 MW for the FFF case and 32.86 MW for the EFG case, confirming 1.1% energy savings per unit time in the EFG case. Therefore, in terms of design pressure, capacity, device configuration, and required energy, the EFG case is relatively advantageous. However, further research is needed on the impact of changes in the composition of regenerated gas on the liquefaction process and the fuel gas system.

키워드

액화 천연가스탈수 공정플랜트 공정 모사분자체LNGDehydration processPlant process modelingMolecular sieve
제목
분자체를 이용한 LNG 액화 플랜트 탈수 공정의 효율성 향상에 관한 연구
제목 (타언어)
Study on the Improvement of Efficiency in Dehydration Process of LNG Liquefaction Plant Using Molecular Sieve
저자
박종화유돈상조대명
DOI
10.7316/JHNE.2024.35.1.105
발행일
2024-02
저널명
한국수소및신에너지학회논문집
35
1
페이지
105 ~ 113