Techno-economic analysis of thermochemical water-splitting system for Co-production of hydrogen and electricity

被引:23
|
作者
Budama, Vishnu Kumar [1 ]
Johnson, Nathan G. [2 ]
Ermanoski, Ivan [3 ,4 ]
Stechel, Ellen B. [3 ,4 ]
机构
[1] German Aerosp Ctr DLR Linder Hohe, D-51147 Cologne, Germany
[2] Arizona State Univ, Polytech Sch, Ira A Fulton Sch Engn, 7418 Innovat Way South,Bldg ISTB 3,Suite 121, Mesa, AZ 85212 USA
[3] Arizona State Univ, ASU LightWorks, POB 875402, Tempe, AZ 85287 USA
[4] Arizona State Univ, Sch Sustainabil, POB 875402, Tempe, AZ 85287 USA
关键词
Ceria; Hydrogen; Solar; Techno-economic analysis; Water-splitting; FUEL PRODUCTION; ENVIRONMENTAL-IMPACT; SOLID-SOLUTIONS; SOLAR; EFFICIENCY; HEAT; CO2; MODEL; OXIDE; CYCLES;
D O I
10.1016/j.ijhydene.2020.10.060
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
The two-step thermochemical metal oxide water-splitting cycle with the state-of-the-art material ceria inevitably produces unutilized high-quality heat, in addition to hydrogen (H-2). This study explores whether the ceria cycle can be of greater value by using the excess heat for co-production of electricity. Specially, this technoeconomic study estimates the H-2 production cost in a hybrid ceria cycle, in which excess heat produces electricity in an organic Rankine cycle, to increase revenue and decrease H-2 cost. The estimated H-2 cost from such a co-generation multi-tower plant is still relatively high at $4.55/kg, with an average H-2 production of 1431 kg/day per 27.74 MWth tower. Sensitivity analyses show opportunities and challenges to achieving $2/kg H-2 through improvements such as increased solar field efficiency, increased revenue from electricity sales, and a decreased capital recovery factor from baseline assumptions. While co-production improves overall system efficiency and economics, achieving $2/kg H-2 remains challenging with ceria as the active material and likely will require a new material. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:1656 / 1670
页数:15
相关论文
共 50 条
  • [1] Thermodynamic development and design of a concentrating solar thermochemical water-splitting process for co-production of hydrogen and electricity
    Budama, Vishnu Kumar
    Johnson, Nathan G.
    McDaniel, Anthony
    Ermanoski, Ivan
    Stechel, Ellen B.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018, 43 (37) : 17574 - 17587
  • [2] Techno-economic analysis of a multi-energy system for the co-production of green hydrogen, renewable electricity and heat
    Di Micco, S.
    Romano, F.
    Jannelli, E.
    Perna, A.
    Minutillo, M.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (81) : 31457 - 31467
  • [3] Techno-economic evaluation of solar-driven ceria thermochemical water-splitting for hydrogen production in a fluidized bed reactor
    Onigbajumo, Adetunji
    Swarnkar, Priyanka
    Will, Geoffrey
    Sundararajan, Thirumalachari
    Taghipour, Alireza
    Couperthwaite, Sara
    Steinberg, Ted
    Rainey, Thomas
    [J]. JOURNAL OF CLEANER PRODUCTION, 2022, 371
  • [4] Co-production of electricity and hydrogen from wind: A comprehensive scenario-based techno-economic analysis
    Rezaei, Mostafa
    Khalilpour, Kaveh R.
    Mohamed, Mohamed A.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (35) : 18242 - 18256
  • [5] SYSTEM ANALYSIS OF THERMOCHEMICAL-BASED BIOREFINERIES FOR CO-PRODUCTION OF HYDROGEN AND ELECTRICITY
    Braun, Robert J.
    Hanzon, Luke G.
    Dean, Jered H.
    [J]. PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION - 2010, VOL 5, PTS A AND B, 2012, : 43 - 56
  • [6] Thermochemical water-splitting structures for hydrogen production: Thermodynamic, economic, and environmental impacts
    Ghorbani, Bahram
    Zendehboudi, Sohrab
    Zhang, Yan
    Zarrin, Hadis
    Chatzis, Ioannis
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2023, 297
  • [7] A review on hydrogen production thermochemical water-splitting cycles
    Mehrpooya, Mehdi
    Habibi, Roghayeh
    [J]. JOURNAL OF CLEANER PRODUCTION, 2020, 275
  • [8] Nickel Manganese for Thermochemical Water-Splitting and Hydrogen Production
    Abdelal, Omar A. A.
    [J]. ARAB JOURNAL OF NUCLEAR SCIENCES AND APPLICATIONS, 2012, 45 (02): : 392 - 400
  • [9] Techno-economic analysis of coal gasification based co-production systems
    Yang, Siyu
    Li, Hengchong
    Qian, Yu
    [J]. 11TH INTERNATIONAL SYMPOSIUM ON PROCESS SYSTEMS ENGINEERING, PTS A AND B, 2012, 31 : 455 - 459
  • [10] Techno-economic assessment of green hydrogen production via two-step thermochemical water splitting using microwave
    Lee, SeockYong
    Na, Ung Jin
    Jo, HangJin
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (29) : 10706 - 10723