Optimal hydrogen production in a wind-dominated zero-emission energy system

被引:49
作者
Weimann, Lukas [1 ]
Gabrielli, Paolo [2 ]
Boldrini, Annika [1 ]
Kramer, Gert Jan [1 ]
Gazzani, Matteo [1 ]
机构
[1] Univ Utrecht, Copernicus Inst Sustainable Dev, NL-3584 CS Utrecht, Netherlands
[2] Swiss Fed Inst Technol, Inst Energy & Proc Engn, CH-8092 Zurich, Switzerland
来源
ADVANCES IN APPLIED ENERGY | 2021年 / 3卷
基金
欧盟地平线“2020”;
关键词
Hydrogen economy; Power to hydrogen; Zero emission; MILP optimization; Energy system model;
D O I
10.1016/j.adapen.2021.100032
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
The role of hydrogen in future energy systems is widely acknowledged: from fuel for difficult-to-decarbonize applications, to feedstock for chemicals synthesis, to energy storage for high penetration of undispatchable renewable electricity. While several literature studies investigate such energy systems, the details of how electrolysers and renewable technologies optimally behave and interact remain an open question. With this work, we study the interplay between (i) renewable electricity generation through wind and solar, (ii) electricity storage in batteries, (iii) electricity storage via Power-to-H-2, and (iv) hydrogen commodity demand. We do so by designing a costoptimal zero-emission energy system and use the Netherlands as a case study in a mixed integer linear model with hourly resolution for a time horizon of one year. To account for the significant role of wind, we also provide an elaborate approach to model broad portfolios of wind turbines. The results show that if electrolyzers can operate flexibly, batteries and power-to-H-2-to-power are complementary, with the latter using renewable power peaks and the former using lower renewable power outputs. If the operating modes of the power-to-H-2-to-power system are limited - artificially or technically - the competitive advantage over batteries decreases. The preference of electrolyzers for power peaks also leads to an increase in renewable energy utilization for increased levels of operation flexibility, highlighting the importance of capturing this feature both from a technical and a modeling perspective. When adding a commodity hydrogen demand, the amount of hydrogen converted to electricity decreases, hence decreasing its role as electricity storage medium.
引用
收藏
页数:19
相关论文
共 48 条
  • [41] A multi-agent optimal operation methodology of electric, thermal, and hydrogen integrated energy system based on ADMM algorithm
    Zhou, Dongxu
    Xu, Jingzhou
    Zhang, Can
    Wei, Pengchao
    Pan, Guangsheng
    Gu, Zhongfan
    FRONTIERS IN ENERGY RESEARCH, 2024, 12
  • [42] Design of a Hydrogen Production System Considering Energy Consumption, Water Consumption, CO2 Emissions and Cost
    Gonzalez Palencia, Juan C.
    Itoi, Yuta
    Araki, Mikiya
    ENERGIES, 2022, 15 (21)
  • [43] Industrialization prospects for hydrogen production by coal gasification in supercritical water and novel thermodynamic cycle power generation system with no pollution emission
    GUO LieJin
    JIN Hui
    GE ZhiWei
    LU YouJun
    CAO ChangQing
    Science China(Technological Sciences), 2015, (12) : 1989 - 2002
  • [44] Industrialization prospects for hydrogen production by coal gasification in supercritical water and novel thermodynamic cycle power generation system with no pollution emission
    Guo LieJin
    Jin Hui
    Ge ZhiWei
    Lu YouJun
    Cao ChangQing
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2015, 58 (12) : 1989 - 2002
  • [45] Industrialization prospects for hydrogen production by coal gasification in supercritical water and novel thermodynamic cycle power generation system with no pollution emission
    LieJin Guo
    Hui Jin
    ZhiWei Ge
    YouJun Lu
    ChangQing Cao
    Science China Technological Sciences, 2015, 58 : 1989 - 2002
  • [46] Optimal operation of multi-agent electricity-heat-hydrogen sharing in integrated energy system based on Nash bargaining
    Ding, Jianyong
    Gao, Ciwei
    Song, Meng
    Yan, Xingyu
    Chen, Tao
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2023, 148
  • [47] Hybrid solar photovoltaic-wind turbine system for on-site hydrogen production: A techno-economic feasibility analysis of hydrogen refueling Station in South Korea's climatic conditions
    Choi, Yosoon
    Bhakta, Shubhashish
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 93 : 736 - 752
  • [48] Multi-objective optimization and techno-economic evaluation of a capture/ separation/liquefaction scheme in a zero emission power/liquid N2/liquid CO2 production system based on biomass gasification and supercritical CO2 oxy-combustion cycle and ion transport membrane and Claude cycle
    Su, Zhanguo
    Zhan, Wu
    Sun, Yeguo
    Dahari, Mahidzal
    Abed, Azher M.
    Ali, H. Elhosiny
    Algelany, A. M.
    SEPARATION AND PURIFICATION TECHNOLOGY, 2023, 314