Utilization of Cold Energy from LNG Regasification Process: A Review of Current Trends

被引:25
|
作者
Akashah, Muhammad Haziq Noor [1 ]
Rozali, Nor Erniza Mohammad [1 ,2 ]
Mahadzir, Shuhaimi [1 ,2 ]
Liew, Peng Yen [3 ]
机构
[1] Univ Teknol PETRONAS, Dept Chem Engn, Seri Iskandar 32610, Malaysia
[2] Univ Teknol PETRONAS, Inst Autonomous Syst, Ctr Syst Engn CSE, Seri Iskandar 32610, Malaysia
[3] Univ Teknol Malaysia, Malaysia Japan Int Inst Technol, Jalan Sultan Yahya Petra, Kuala Lumpur 54100, Malaysia
关键词
LNG; cold energy utilization; power generation; desalination; air separation; cooling; carbon capture; LIQUEFIED NATURAL-GAS; CRYOGENIC AIR SEPARATION; SCALE POWER-GENERATION; CARBON-DIOXIDE; THERMODYNAMIC ANALYSIS; RANKINE-CYCLE; INTEGRATED BIOMASS; SYSTEM; OPTIMIZATION; HEAT;
D O I
10.3390/pr11020517
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Liquified natural gas (LNG) is a clean primary energy source that is growing in popularity due to the distance between natural gas (NG)-producing countries and importing countries. The large amount of cold energy stored in LNG presents an opportunity for sustainable technologies to recover and utilize this energy. This can enhance the energy efficiency of LNG regasification terminals and the economic viability of the LNG supply chain. The energy stored in LNG in the form of low temperatures is referred to as cold energy. When LNG is regasified, or converted back into its gaseous form, this cold energy is released. This process involves heating the LNG, which causes it to vaporize and release its stored energy. The current state-of-the-art techniques for LNG cold energy utilization, including power generation, air separation, traditional desalination, and cryogenics carbon dioxide (CO2) capture are discussed in this review. While most of the current LNG cold energy utilization systems are presented, potential future applications are also discussed. The commercialization of sustainable technologies, such as improvement strategies for LNG cold energy utilization, is becoming increasingly important in the energy industry.
引用
收藏
页数:22
相关论文
共 50 条
  • [31] Construction and Optimization of Liquefied Natural Gas Regasification Cold Energy Comprehensive Utilization System on Floating Storage Regasification Unit
    Yao Shouguang
    Wang Mengdi
    Yan Likun
    Zhang Qiang
    Ye Yong
    JOURNAL OF THERMAL SCIENCE, 2022, 31 (06) : 1853 - 1867
  • [32] Guangdong Dapeng LNG cold energy utilization-C2++ extraction process integration
    Andrew C. Potocki
    EngineeringSciences, 2010, 8 (02) : 87 - 91
  • [33] Integration of light hydrocarbons cryogenic separation process in refinery based on LNG cold energy utilization
    Li, Yajun
    Luo, Hao
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2015, 93 : 632 - 639
  • [34] Performance improvement potential of harnessing LNG regasification for hydrogen liquefaction process: Energy and exergy perspectives
    Riaz, Amjad
    Qyyum, Muhammad Abdul
    Min, Seongwoong
    Lee, Sanggyu
    Lee, Moonyong
    APPLIED ENERGY, 2021, 301
  • [35] Minimizing power consumption of boil off gas (BOG) recondensation process by power generation using cold energy in liquefied natural gas (LNG) regasification process
    Yuan, Tong
    Song, Chunxiao
    Bao, Junjiang
    Zhang, Ning
    Zhang, Xiaopeng
    He, Gaohong
    JOURNAL OF CLEANER PRODUCTION, 2019, 238
  • [36] Economic Feasibility of Power Generation by Recovering Cold Energy during LNG (Liquefied Natural Gas) Regasification
    Dutta, Arnab
    Karimi, Iftekhar A.
    Farooq, Shamsuzzaman
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2018, 6 (08): : 10687 - 10695
  • [37] A novel system based on a series of ORCs to recover cryogenic energy from the LNG regasification process for power and freshwater production
    Bruno, Roberto
    Ferraro, Vittorio
    Cristaudo, Antonio
    Bevilacqua, Piero
    JOURNAL OF CLEANER PRODUCTION, 2024, 469
  • [38] Thermodynamic analysis of extraction processes for the utilization of LNG cold energy
    Lee, GS
    Chang, YS
    Kim, MS
    Ro, ST
    CRYOGENICS, 1996, 36 (01) : 35 - 40
  • [39] OPTIMIZED UTILIZATION OF LIQUEFIED NATURAL GAS (LNG) COLD ENERGY
    Si, Hongyu
    Mei, Ning
    Wang, Xiaoyan
    PROCEEDINGS OF THE ASME INTERNATIONAL HEAT TRANSFER CONFERENCE - 2010, VOL 4: HEAT TRANSFER MEASUREMENT TECHNIQUES, HEAT TRANSFER EQUIPMENT, THERMOELECTRICS, 2010, : 157 - 166
  • [40] Performance of cryogenic thermoelectric generators in LNG cold energy utilization
    Sun, W
    Hu, P
    Chen, ZS
    Jia, L
    ENERGY CONVERSION AND MANAGEMENT, 2005, 46 (05) : 789 - 796