Future energy, fuel cells, and solid-oxide fuel-cell technology

被引:0
|
作者
Nguyen Q. Minh
Y. Shirley Meng
机构
[1] University of California,
来源
MRS Bulletin | 2019年 / 44卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
According to the US Department of Energy’s Energy Infomation Administration (EIA) (International Energy Outlook 2017), world energy consumption will increase 28% between 2015 and 2040, rising from 575 quadrillion Btu (∼606 quadrillion kJ) in 2015 to 736 quadrillion Btu (∼776 quadrillion kJ) in 2040. EIA predicts increases in consumption for all energy sources (excluding coal, which is estimated to remain flat)—fossil (petroleum and other liquids, natural gas), renewables (solar, wind, hydropower), and nuclear. Although renewables are the world’s fastest growing form of energy, fossil fuels are expected to continue to supply more than three-quarters of the energy used worldwide. Among the various fossil fuels, natural gas is the fastest growing, with a projected increase of 43% from 2015 to 2040. As the use of fossil fuels increases, the EIA projects world energy-related carbon dioxide emission to grow from ∼34 billion metric tons in 2015 to ∼40 billion metric tonnes in 2040 (an average 0.6% increase per year).
引用
收藏
页码:682 / 683
页数:1
相关论文
共 50 条
  • [1] Future energy, fuel cells, and solid-oxide fuel-cell technology
    Minh, Nguyen Q.
    Meng, Y. Shirley
    [J]. MRS BULLETIN, 2019, 44 (09) : 682 - 683
  • [2] Energy analysis of solid-oxide fuel-cell (SOFC) systems
    Bedringas, KW
    Ertesvag, IS
    Byggstoyl, S
    Magnussen, BF
    [J]. ENERGY, 1997, 22 (04) : 403 - 412
  • [3] SOLID OXIDE FUEL-CELL TECHNOLOGY
    BROWN, JT
    [J]. IEEE TRANSACTIONS ON ENERGY CONVERSION, 1988, 3 (02) : 193 - 198
  • [4] Science and technology of solid-oxide fuel cells
    Singhal, SC
    [J]. MRS BULLETIN, 2000, 25 (03) : 16 - 21
  • [5] Energy and exergy analysis of simple solid-oxide fuel-cell power systems
    Chan, SH
    Low, CF
    Ding, OL
    [J]. JOURNAL OF POWER SOURCES, 2002, 103 (02) : 188 - 200
  • [6] Enforcing optimal operation in solid-oxide fuel-cell systems
    Ferreira, Tafarel de Avila
    Wuillemin, Zacharie
    Faulwasser, Timm
    Salzmann, Christophe
    Van Herle, Jan
    Bonvin, Dominique
    [J]. ENERGY, 2019, 181 : 281 - 293
  • [7] Three-dimensional reconstruction of a solid-oxide fuel-cell anode
    Wilson, James R.
    Kobsiriphat, Worawarit
    Mendoza, Roberto
    Chen, Hsun-Yi
    Hiller, Jon M.
    Miller, Dean J.
    Thornton, Katsuyo
    Voorhees, Peter W.
    Adler, Stuart B.
    Barnett, Scott A.
    [J]. NATURE MATERIALS, 2006, 5 (07) : 541 - 544
  • [8] Three-dimensional reconstruction of a solid-oxide fuel-cell anode
    James R. Wilson
    Worawarit Kobsiriphat
    Roberto Mendoza
    Hsun-Yi Chen
    Jon M. Hiller
    Dean J. Miller
    Katsuyo Thornton
    Peter W. Voorhees
    Stuart B. Adler
    Scott A. Barnett
    [J]. Nature Materials, 2006, 5 : 541 - 544
  • [9] Energy efficiency of a microtubular solid-oxide fuel cell
    Suzuki, Toshio
    Sugihara, Shinichi
    Hamamoto, Koichi
    Yamaguchi, Toshiaki
    Fujishiro, Yoshinobu
    [J]. JOURNAL OF POWER SOURCES, 2011, 196 (13) : 5485 - 5489
  • [10] THE SOLID FUEL-CELL FUTURE
    FORBES, CA
    PIERRE, JF
    [J]. IEEE SPECTRUM, 1993, 30 (10) : 40 - 44