Feasibility assessment of CO2 capture retrofitted to an existing cement plant: post-combustion vs. oxy-fuel combustion technology

被引:45
作者
Gerbelova, Hana [1 ]
van der Spek, Mijndert [2 ]
Schakel, Wouter [2 ]
机构
[1] Inst Super Tecn, IN Ctr Innovat Technol & Policy Res, Av Rovisco Pais 1, P-1049001 Lisbon, Portugal
[2] Univ Utrecht, Copernicus Inst Sustainable Dev, Heidelberglaan 2, NL-3584 CS Utrecht, Netherlands
来源
13TH INTERNATIONAL CONFERENCE ON GREENHOUSE GAS CONTROL TECHNOLOGIES, GHGT-13 | 2017年 / 114卷
关键词
Cement plant; Post-combustion CO2 capture; oxy-fuel combustion CO2 capture; Techno-economic analysis;
D O I
10.1016/j.egypro.2017.03.1751
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This research presents a preliminary techno-economic evaluation of CO2 capture integrated with a cement plant. Two capture technologies are evaluated, monoethanolamine (MEA) post-combustion CO2 capture and oxy-fuel combustion. Both are considered potential technologies that could contribute to reduction of CO2 emissions in the cement industry. The study compares these two technologies in terms of technical performance, investment costs, and operational costs. The case study is applied to the one of the largest cement plants in Portugal, Alhandra. The results show that the amount of CO2 avoided using the post-combustion MEA technology is lower due to additional emissions from reboiler steam production. Moreover, the total capital investment of the postcombustion CO2 capture system is estimated at 260 M(sic)(2014) and the annual operation and maintenance costs of around 43 M(sic)(2014); whereas the oxy-fuel combustion CO2 capture requires a capital investment of about 217 M(sic)(2014) and 37 M(sic)(2014) annually for operation and maintenance. This indicates that the oxy-fuel CO2 capture technology may be a better choice in terms of costs. However, this technology implies higher technical uncertainties concerning integration with the cement plant. (C) 2017 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:6141 / 6149
页数:9
相关论文
共 20 条
  • [11] IEAGHG, 2013, DEPL CCS CEM IND 201
  • [12] LNEC, 2008, TECHNICAL REPORT
  • [13] Optimized Gas Treating Inc, PROTREAT SIM PACK
  • [14] Portuguese Environmental Agency, 2015, PORT NAT INV R UNPUB
  • [15] Rao AB, 2002, DEFC2600NT40935
  • [16] Rubin ES, 2007, DEAC2192MC29094
  • [17] Sousa Coutinho A., 1998, CIMENTOS FABRICO PRO, P130
  • [18] Model predictive control of a rotary cement kiln
    Stadler, Konrad S.
    Poland, Jan
    Gallestey, Eduardo
    [J]. CONTROL ENGINEERING PRACTICE, 2011, 19 (01) : 1 - 9
  • [19] Towler G., 1973, CHEM ENG DESIGN PRIN
  • [20] EFFECT OF OXYGEN UPON ROTARY KILNS PRODUCTION AND FUEL EFFICIENCY - THEORY AND PRACTICE
    WRAMPE, P
    ROLSETH, HC
    [J]. IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 1976, 12 (06) : 568 - 573