Thermodynamics and kinetics analysis from liquid chemical looping gasification of lignin with bismuth-based oxygen carrier

被引:14
|
作者
Guo, Wei [1 ]
Zhang, Bo [1 ]
Zhang, Rongjiang [1 ]
Zhang, Jie [1 ]
Li, Yaowu [2 ]
Wu, Zhiqiang [1 ,3 ]
Ma, Jingjing [3 ]
Yang, Bolun [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Chem Engn & Technol, Shaanxi Key Lab Energy Chem Proc Intensificat, Xian 710049, Shaanxi, Peoples R China
[2] Nucl Power Inst China, Chengdu 610213, Sichuan, Peoples R China
[3] State Key Lab High Efficiency Utilizat Coal & Gre, Yinchuan 750021, Ningxia, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
Liquid chemical looping gasification; Kinetic analysis; Biomass; Thermodynamics; Simulation; LOW-RANK COAL; LIGNOCELLULOSIC BIOMASS; MICROALGAE BIOMASS; PYROLYSIS BEHAVIOR; THERMAL-BEHAVIOR; METAL-OXIDES; IRON-OXIDE; COMBUSTION; REACTOR; TEMPERATURE;
D O I
10.1016/j.fuproc.2021.106888
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Liquid chemical looping gasification (LCLG) provides a new direction for fuel gasification, which can avoid the technical challenges brought by using solid OCs, such as acting and coking. But the related research ideas and data are few. Here, we have conducted relevant research. Thermodynamics and kinetics analysis of lignin (LG) with bismuth oxide (Bi2O3) during LCLG were investigated. Through thermodynamic analysis, the optimal temperature for LCLG was 800-850 degrees C, and the optimal mixing mass ratio of Bi2O3/LG was about 5.00-6.00. The effects of heating rate and oxygen carrier mass ratio on apparent activation energies were carried out by thermogravimetric analyzer combined with on-line mass spectrometry. The apparent activation energies of lignin samples were 151.333,171.572,199.826, and 127.012 kJ.mol(-1). The activation energy of the main gas products was obtained by the isoconversion method. In the LCLG process, with the increase of Bi2O3 mixing ratio, the activation energy of CO, CO2, and H-2 formation first increased and then decreased, wherein that of H-2 (59.89 kJ.mol(-1)) was on the peak. The results are conducive to the development of new liquid oxygen carriers and also provide data basis for the multi-way utilization of carbon-based fuels.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Thermal behavior and kinetics analysis from liquid chemical looping gasification of cellulose with bismuth-based and antimony-based oxygen carriers
    Guo, Wei
    Zhang, Ronjiang
    Shang, Jianxuan
    Zhang, Hongzhi
    Yang, Bolun
    Wu, Zhiqiang
    FUEL, 2022, 321
  • [2] Chemical looping gasification of lignin with bimetallic oxygen carriers
    Wu, Jingli
    Bai, Lei
    Tian, Hanjing
    Riley, Jarrett
    Siriwardane, Ranjani
    Wang, Zhiqi
    He, Tao
    Li, Jianqing
    Zhang, Jinzhi
    Wu, Jinhu
    INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2020, 93
  • [3] Feasibility of a Co Oxygen Carrier for Chemical Looping Air Separation: Thermodynamics and Kinetics
    Wang, Kun
    Yu, Qingbo
    Qin, Qin
    Duan, Wenjun
    CHEMICAL ENGINEERING & TECHNOLOGY, 2014, 37 (09) : 1500 - 1506
  • [4] Kinetics analysis of cellulose chemical-looping gasification using Ca-Fe oxygen carrier
    Tang, Genyang
    Gu, Jing
    Wei, Guoqiang
    Wu, Benteng
    Yuan, Haoran
    Chen, Yong
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 64 : 318 - 328
  • [5] Experimental and kinetics analysis on biomass chemical looping gasification using lean iron ore as oxygen carrier
    Wang, Shuai
    Wu, Feng
    Wang, Xudong
    CHEMICAL ENGINEERING JOURNAL, 2023, 474
  • [6] Research progress of oxygen carrier in biomass chemical looping gasification
    Yan, Beibei
    Li, Zhiyu
    Li, Jian
    Liu, Bin
    Chen, Guanyi
    Huagong Jinzhan/Chemical Industry and Engineering Progress, 2020, 39 (10): : 3956 - 3965
  • [7] Chemical-looping gasification of corn straw with Fe-based oxygen carrier: Thermogravimetric analysis
    Yan, Xiaoyu
    Hu, Jianjun
    Zhang, Quanguo
    Zhao, Shuheng
    Dang, Jiatao
    Wang, Wei
    BIORESOURCE TECHNOLOGY, 2020, 303
  • [8] The thermo-chemical potential liquid chemical looping gasification with bismuth oxide
    Sarafraz, M. M.
    Jafarian, M.
    Arjomandi, M.
    Nathan, G. J.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (16) : 8038 - 8050
  • [9] Chemical looping combustion and gasification of swine manure with a Cu-Based oxygen carrier
    Domingos, Yldeney
    Abad, Alberto
    Loscertales, Margarita De Las Obras
    Izquierdo, Maria Teresa
    Cabello, Arturo
    CHEMICAL ENGINEERING JOURNAL, 2025, 503
  • [10] Kinetics Analysis of Cu-Zr Oxygen Carrier for Chemical Looping Oxygen Production
    Wang Kun
    Yu Qing-Bo
    Qin Qin
    Li Jiu-Chong
    Wang Zhi-Mei
    JOURNAL OF INORGANIC MATERIALS, 2014, 29 (03) : 301 - 308