Methanol as an agent for CO2 mitigation

被引:5
|
作者
Steinberg, M
机构
关键词
CO2; mitigation; power plant flue gas; methanol production; automotive fuel; fuel cells;
D O I
10.1016/S0196-8904(96)00305-6
中图分类号
O414.1 [热力学];
学科分类号
摘要
The Carnol System consists of methanol production by CO2 recovered from coal fired power plants and natural gas and the use of the methanol as an alternative automotive fuel. The Carnol Process produces hydrogen by the thermal decomposition of natural gas and reacting the hydrogen with CO2 recovered from the power plant. The carbon produced can be stored or used as a materials commodity. A design and economic evaluation of the process is presented and compared to gasoline as an automotive fuel. An evaluation of the CO2 emission reduction of the process and system is made and compared to other conventional methanol production processes including the use of biomass feedstock and methanol fuel cell vehicles. The CO2 emission for the entire Carnol System using methanol in automotive IC engines can be reduced by 56% compared to the conventional system of coal fuel power plants and gasoline driven engines and by as much as 77% CO2 emission reduction when methanol is used in fuel cells for automotive purposes. The Carnol System is shown to be an environmentally attractive and economically viable system connecting the power generation sector with the transportation sector which should warrant further development. (C) 1997 Elsevier Science Ltd.
引用
收藏
页码:S423 / S430
页数:8
相关论文
共 50 条
  • [21] An improved tri-reforming based methanol production process for enhanced CO2 valorization
    Dwivedi, Abhishek
    Gudi, Ravindra
    Biswas, Pratim
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (36) : 23227 - 23241
  • [22] SUSTAINABLE APPROACH TO MITIGATION OF CO2 EMISSION
    Zhu Xiaoping
    Baran, Stanislaw
    Cel, Wojciech
    Cao, Yucheng
    ECOLOGICAL CHEMISTRY AND ENGINEERING S-CHEMIA I INZYNIERIA EKOLOGICZNA S, 2014, 21 (04): : 617 - 622
  • [23] Natural mitigation of CO2 leakage accumulations
    Manceau, Jean-Charles
    Rohmer, Jeremy
    Reveillere, Arnaud
    GHGT-11, 2013, 37 : 4400 - 4408
  • [24] Natural gas reforming and CO2 mitigation
    Ross, JRH
    CATALYSIS TODAY, 2005, 100 (1-2) : 151 - 158
  • [25] Study on the Influencing Factors of CO2 from the Perspective of CO2 Mitigation Potentials
    Chen, Kekui
    Fu, Jianming
    Gong, Yun
    Wang, Jian
    Lv, Shilin
    Liu, Yajie
    Li, Jingyun
    SUSTAINABILITY, 2022, 14 (15)
  • [26] Hydrogenation of CO2 or CO2 Derivatives to Methanol under Molecular Catalysis: A Review
    Xue, Wenxuan
    Tang, Conghui
    ENERGIES, 2022, 15 (06)
  • [27] SEWGS integration in a direct reduction steelmaking process for CO2 mitigation
    Zecca, Nicola
    Cobden, Paul D.
    Luecking, Leonie
    Manzolini, Giampaolo
    INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2023, 130
  • [28] Mitigation of CO2 Emission in Conventional Power Generation with Renewable energy
    Zaheeruddin
    Kumar, Raj
    Kumar, Atul
    Jain, V. K.
    2015 1ST INTERNATIONAL CONFERENCE ON FUTURISTIC TRENDS ON COMPUTATIONAL ANALYSIS AND KNOWLEDGE MANAGEMENT (ABLAZE), 2015, : 734 - 738
  • [29] Mitigation scratch on fused silica optics using CO2 laser
    Liu Chun-Ming
    Yan Zhong-Hua
    Yang Liang
    Jiang Yong
    Zu Xiao-Tao
    Wang Hai-Jun
    Liao Wei
    Yuan Xiao-Dong
    Zheng Wan-Guo
    OPTICA APPLICATA, 2016, 46 (03) : 387 - 397
  • [30] Evaluating Policies for CO2 Mitigation in India's Passenger Transport
    Han, Ji
    Bhandari, Kirti
    Hayashi, Yoshitsugu
    INTERNATIONAL JOURNAL OF URBAN SCIENCES, 2008, 12 (01) : 28 - 39