Life cycle cost assessment of geothermal energy assisted hydrogen liquefaction for sustainable and renewable energy applications: Case study and adaptation for Afyon geothermal power plant

被引:5
|
作者
Yilmaz, Ceyhun [1 ]
Korkmaz, Suleyman Aykut [2 ,3 ]
机构
[1] Afyon Kocatepe Univ, Dept Mech Engn, Afyon, Turkiye
[2] Dokuz Eylul Univ, Dept Marine Engn, Izmir, Turkiye
[3] Univ Southampton, Maritime Engn, Southampton, England
关键词
Geothermal energy; Hydrogen liquefaction; Life cycle cost analysis; Performance analysis; OPTIMIZATION; PERFORMANCE; ECONOMY; EXERGY; SYSTEM;
D O I
10.1016/j.ijhydene.2024.05.417
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study presents a comprehensive Life Cycle Cost Assessment (LCCA) of geothermal-assisted hydrogen liquefaction, explicitly focusing on the Afyon Geothermal Power Plant (AGPP) as a case study. The study evaluates the economic viability and sustainability of integrating geothermal energy into hydrogen liquefaction. The results of the LCCA contribute to the ongoing discourse on sustainable energy solutions, offering a nuanced understanding of the economic considerations associated with geothermal-assisted hydrogen liquefaction. The study serves as a model for assessing the economic feasibility of similar systems, fostering informed decisionmaking in the pursuit of cleaner and more economically sustainable energy pathways. This study has conducted a technical and economic investigation of liquid hydrogen production using geothermal heat and electricity effects. Geothermal water pre-cools the hydrogen by providing heat to the absorption system. Then, the electricity generated in the geothermal plant is used to work in the liquefaction cycle. The generated electricity is used to liquefy hydrogen in the liquefaction cycle. The capacity of the electricity generated from the AGPP produced here is 2621 kW. The proposed system can be achieved by pre-cooling unit H2 up to -30 degrees C at 120 degrees C and 150 kg/s geothermal source. In the liquefaction cycle, 0.84 kg/s H2 can be liquefied. As a result, the total energy efficiency of the proposed system can be calculated as 32.4% and exergy efficiency as 15.4%. The system's net present value (NPV) was calculated as 65,320,000 $. When life cycle cost analysis was performed using the levelized annual cost (LAC) method, the project's levelized cost was calculated as 7,673,000 $/yr. The unit cost of the liquid hydrogen produced is 1.252 $/kg. This system's discounted payback period (Ndpp) is calculated as 3.48.
引用
收藏
页码:772 / 788
页数:17
相关论文
共 48 条
  • [21] LIFE CYCLE ASSESSMENT AND LIFE CYCLE COST ANALYSIS OF A NEARLY ZERO ENERGY RESIDENTIAL BUILDING - A CASE STUDY
    Boros, Iosif
    Tanasa, Cristina
    Stoian, Valeriu
    Dan, Daniel
    ENVIRONMENTAL ENGINEERING AND MANAGEMENT JOURNAL, 2017, 16 (03): : 695 - 704
  • [22] Life-cycle assessment of a hydrogen-based uninterruptible power supply system using renewable energy
    Mitja Mori
    Miha Jensterle
    Tilen Mržljak
    Boštjan Drobnič
    The International Journal of Life Cycle Assessment, 2014, 19 : 1810 - 1822
  • [23] Life-cycle assessment of a hydrogen-based uninterruptible power supply system using renewable energy
    Mori, Mitja
    Jensterle, Miha
    Mrzljak, Tilen
    Drobnic, Bostjan
    INTERNATIONAL JOURNAL OF LIFE CYCLE ASSESSMENT, 2014, 19 (11): : 1810 - 1822
  • [24] Carbon Footprint and Life Cycle Cost Assessment of a Hydrogen-Based Energy Storage System for Ships with a Case Study
    Seddiek, Ibrahim S.
    Ammar, Nader R.
    NAVAL ENGINEERS JOURNAL, 2023, 135 (03) : 107 - 120
  • [25] Energy and exergy assessment of 750 MW combined cycle power plant: A case study
    Elwardany, Mohamed
    Nassib, A. M.
    Mohamed, Hany A.
    Abdelaal, MR.
    ENERGY NEXUS, 2023, 12
  • [26] Thermodynamic and exergoenvironmental assessment of an innovative geothermal energy assisted multigeneration plant combined with recompression supercritical CO2 Brayton cycle for the production of cleaner products
    Yilmaz, Fatih
    Ozturk, Murat
    Selbas, Resat
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 75 : 24 - 37
  • [27] Life cycle assessment and energy payback time of a standalone hybrid renewable energy commercial microgrid: A case study of Town Island in Hong Kong
    Wang, Richard
    Lam, Chor-Man
    Hsu, Shu-Chien
    Chen, Jieh-Haur
    APPLIED ENERGY, 2019, 250 : 760 - 775
  • [28] Modeling of calculations on the performance optimization of a double-flash geothermal renewable energy-based combined heat/power plant coupled by transcritical carbon dioxide rankine cycle
    Leng, Yuchi
    Li, Shuguang
    Elmasry, Yasser
    AL Garalleh, Hakim
    Afandi, Abdulkareem
    Alzubaidi, Laith H.
    Alkhalaf, Salem
    Abdullaev, Sherzod
    Alharbi, Fawaz S.
    RENEWABLE ENERGY, 2024, 237
  • [29] Artificial intelligence application for assessment/optimization of a cost-efficient energy system: Double-flash geothermal scheme tailored combined heat/power plant
    Li, Xuetao
    Abed, Azher M.
    Shaban, Mohamed
    Le, Luan Thanh
    Zhou, Xiao
    Abdullaev, Sherzod
    Alhomayani, Fahad M.
    Elmasry, Yasser
    Mahariq, Ibrahim
    Afzal, Abdul Rahman
    ENERGY, 2024, 313
  • [30] Prospective life cycle environmental impact assessment of renewable energy-based methanol production system: A case study in China
    Maimaiti, Sairedaer
    Gu, Yu
    Chen, Qianqian
    Tang, Zhiyong
    JOURNAL OF CLEANER PRODUCTION, 2023, 425