Nitrogen self-recuperation expansion-based process for offshore coproduction of liquefied natural gas, liquefied petroleum gas, and pentane plus

被引:53
|
作者
Qyyum, Muhammad Abdul [1 ]
Qadeer, Kinza [1 ]
Le Quang Minh [1 ]
Haider, Junaid [1 ]
Lee, Moonyong [1 ]
机构
[1] Yeungnam Univ, Sch Chem Engn, Gyongsan 712749, South Korea
基金
新加坡国家研究基金会;
关键词
Natural gas liquefaction (LNG); Natural gas liquids (NGL); Offshore; Nitrogen expander-based integrated process; Energy-efficient; CO2; emissions; INVASIVE WEED OPTIMIZATION; DIVIDED WALL COLUMN; MIXED REFRIGERANT; ENERGY-EFFICIENT; LIQUEFACTION PROCESSES; DESIGN OPTIMIZATION; EXPANDER CYCLE; LNG; SINGLE; ALGORITHM;
D O I
10.1016/j.apenergy.2018.10.127
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In the current scenario of energy challenges, natural gas (NG) and associated liquids such as liquefied petroleum gas (LPG) are considered to be clean energy sources compared with coal and oil. Liquefaction is one of the most feasible and safe approaches for transporting NG from the site of production to the site of consumption. However, NG processing to produce liquefied natural gas (LNG) and LPG is extremely costly in terms of both operating and capital expenses because it requires a tremendous amount of energy, particularly at offshore sites. We have developed a new liquefaction process that uses N-2 self-recuperation rather than external precooling with 80% less energy consumption than that required by existing single N-2 expander processes. In this work, we evaluate the use of an innovative self-recuperative expander-based integrated process to produce LNG LPG pentane plus (condensate) at an offshore site in an energy-efficient manner with minimal capital expenditure. Thermodynamic and economic analyses were performed to evaluate the commercial feasibility of the proposed process. Furthermore, the environmental impact in terms of CO2 emissions was calculated. This study reveals that LNG LPG can be produced at a specific energy expense of 0.2362 kW with a payback period of 1.38 years.
引用
收藏
页码:247 / 257
页数:11
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共 20 条
  • [1] LIQUEFIED NATURAL GAS PLANTS BASED ON NITROGEN EXPANSION CYCLES
    Kuzmenko, I. F.
    Peredelskii, V. A.
    Dovbish, A. L.
    [J]. CHEMICAL AND PETROLEUM ENGINEERING, 2010, 46 (5-6) : 275 - 280
  • [2] Process Design for the Offshore Production of Liquefied Natural Gas with Nonflammable Refrigerants
    Lee, Chul-Jin
    Song, Kiwook
    Shin, Seolin
    Lim, Youngsub
    Han, Chonghun
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2015, 54 (44) : 11106 - 11112
  • [3] A new adsorption process to intensify liquefied petroleum gas recovery from raw natural gas
    Liu, K.
    Zhang, B. J.
    Chen, Q. L.
    [J]. CLEAN, EFFICIENT AND AFFORDABLE ENERGY FOR A SUSTAINABLE FUTURE, 2015, 75 : 853 - 859
  • [4] ANALYSIS OF THE DESIRABILITY OF REPLACING PETROLEUM-BASED VEHICLE FUEL WITH LIQUEFIED NATURAL GAS
    Peredel'skii, V. A.
    Lastovskii, Yu. V.
    Darbinyan, R. V.
    Savitskii, A. I.
    Savitskii, A. A.
    [J]. CHEMICAL AND PETROLEUM ENGINEERING, 2005, 41 (11-12) : 590 - 595
  • [5] Cascade refrigeration systems in integrated cryogenic natural gas process (natural gas liquids (NGL), liquefied natural gas (LNG) and nitrogen rejection unit (NRU))
    Ghorbani, Bahram
    Hamedi, Mohammad-Hossein
    Amidpour, Majid
    Mehrpooya, Mehdi
    [J]. ENERGY, 2016, 115 : 88 - 106
  • [6] Krill-Herd-Based Investigation for Energy Saving Opportunities in Offshore Liquefied Natural Gas Processes
    Qadeer, Kinza
    Qyyum, Muhammad Abdul
    Lee, Moonyong
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2018, 57 (42) : 14162 - 14172
  • [7] Optimization of regasified liquefied natural gas based reforming process for syngas production in an ammonia plant
    Sunny, Anju
    Gazliya, N.
    Aparna, K.
    [J]. Energy Sources, Part A: Recovery, Utilization and Environmental Effects, 2020, 42 (13) : 1565 - 1579
  • [8] Energetic Minimization of Liquefied Natural Gas Single Nitrogen Expander Process Using Real Coded Genetic Algorithm
    Awad, Peter
    Kimura, Naoki
    Inoue, Gen
    Tsuge, Yoshifumi
    [J]. JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2019, 52 (01) : 130 - 137
  • [9] A novel conceptual design of parallel nitrogen expansion liquefaction process for small-scale LNG (liquefied natural gas) plant in skid-mount packages
    He, Tianbiao
    Ju, Yonglin
    [J]. ENERGY, 2014, 75 : 349 - 359
  • [10] Analysis on feasibility of a novel cryogenic heat exchange network with liquid nitrogen regeneration process for onboard liquefied natural gas reliquefaction
    Wang, Zhe
    Han, Fenghui
    Ji, Yulong
    Li, Wenhua
    [J]. CASE STUDIES IN THERMAL ENGINEERING, 2020, 22