Integration options for novel chemical looping air separation (ICLAS) process for oxygen production in oxy-fuel coal fired power plants

被引:73
|
作者
Shah, Kalpit [1 ]
Moghtaderi, Behdad [1 ]
Zanganeh, Jafar [1 ]
Wall, Terry [1 ]
机构
[1] Univ Newcastle, Fac Engn & Built Environm, Sch Engn, Prior Res Ctr Energy, Callaghan, NSW 2308, Australia
关键词
Chemical looping; Oxygen production; Oxy-fuel; Oxygen carriers; Thermodynamics; COMBUSTION; TECHNOLOGIES; GASIFICATION; PERFORMANCE; ENERGY;
D O I
10.1016/j.fuel.2013.01.007
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
Oxygen is commonly produced at industrial scales by air separation using cryogenic air separation units (CASU). Despite being the most matured technology, CASU is highly energy intensive. Approximately, 3-4% energy penalty is expected to be arising for oxygen production using CASU in the oxy-fuel process. As an alternative to CASU, this paper demonstrates the integrated chemical looping air separation (ICLAS) process for oxy-fuel thermal power plant which is expected to offset the energy penalty associated with CASU. In our recent comprehensive thermodynamic study, three metal oxide systems (Mn, Co and Cu) were found most suitable for chemical looping air separation (CLAS). The objective of this work is to find out the possible integration modes of the CLAS process with oxy-fuel coal-fired power plants. Thermodynamic process simulations were carried out for ICLAS in oxy-fuel using Fact-sage 6.1 database for all selected oxygen carriers and process kinetics have not been considered. The effect of several process parameters such as operating temperature, heat recovery, actual partial pressure in the reactors and chemical conversion of the oxygen carriers on the operating cost of the ICLAS process were investigated in detail. The results indicate that for acceptable process kinetics ICLAS can potentially run at much lower operating costs compared to an advanced CASU based system by 2020. Crown Copyright (c) 2013 Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:356 / 370
页数:15
相关论文
共 37 条
  • [31] Techno-Economic Evaluations of Copper-Based Chemical Looping Air Separation System for Oxy-Combustion and Gasification Power Plants with Carbon Capture
    Cormos, Calin-Cristian
    ENERGIES, 2018, 11 (11)
  • [32] Integration of molten carbonate fuel cell and chemical looping air separation for high-efficient power generation and CO2 capture
    Chen, Shiyi
    Zhou, Nan
    Wu, Mudi
    Chen, Shubo
    Xiang, Wenguo
    ENERGY, 2022, 254
  • [33] Carbon dioxide from oxy-fuel coal-fired power plant integrated green ammonia for urea synthesis: Process modeling, system analysis, and techno-economic evaluation
    Meng, Wenliang
    Wang, Dongliang
    Zhou, Huairong
    Yang, Yong
    Li, Hongwei
    Liao, Zuwei
    Yang, Siyu
    Hong, Xiaodong
    Li, Guixian
    ENERGY, 2023, 278
  • [34] Simulation of a 100-MW solar-powered thermo-chemical air separation system combined with an oxy-fuel power plant for bio-energy with carbon capture and storage (BECCS)
    Patzschke, Clemens F.
    Bahzad, Husain
    Boot-Handford, Matthew E.
    Fennell, Paul S.
    MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE, 2020, 25 (04) : 539 - 557
  • [35] Energy, exergy, economic, environmental (4E) and dynamic analysis based global optimization of chemical looping air separation for oxygen and power co-production
    Tao, Ye
    Tian, Wende
    Kong, Lingqi
    Sun, Suli
    Fan, Chenyang
    ENERGY, 2022, 261
  • [36] Simulation of a 100-MW solar-powered thermo-chemical air separation system combined with an oxy-fuel power plant for bio-energy with carbon capture and storage (BECCS)
    Clemens F. Patzschke
    Husain Bahzad
    Matthew E. Boot-Handford
    Paul S. Fennell
    Mitigation and Adaptation Strategies for Global Change, 2020, 25 : 539 - 557
  • [37] Impact of energy integration on post-combustion CO2 capture: A comparative analysis of chemical absorption and calcium looping technologies in coal-fired and natural gas combined cycle power plants
    Zheng, Yawen
    Zeng, Xuelan
    Liu, Jianhui
    Wang, Junyao
    Yang, Zhi
    He, Song
    Yang, Guang
    Fan, Junming
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 359