Chemical Looping Gasification of Wood Waste Using NiO-Modified Hematite as an Oxygen Carrier

被引:2
|
作者
Xie, Jinlong [1 ]
Zhu, Kang [1 ,2 ]
Zhang, Zhen [1 ,2 ]
Chen, Xinfei [2 ]
Lin, Yan [2 ]
Hu, Jianjun [3 ]
Xiong, Ya [4 ]
Zhang, Yongqi [5 ]
Huang, Zhen [2 ]
Huang, Hongyu [2 ]
机构
[1] Guangzhou Univ, Sch Mech & Elect Engn, 230 Waihuan Xi Rd, Guangzhou 510006, Peoples R China
[2] Chinese Acad Sci, Guangzhou Inst Energy Convers, Key Lab Renewable Energy, 2 Nengyuan Rd, Guangzhou 510640, Peoples R China
[3] Henan Agr Univ, Coll Mech & Elect Engn, Key Lab New Mat & Facil Rural Renewable Energy, Minist Agr & Rural Affairs, 63 Agr Rd, Zhengzhou 450002, Peoples R China
[4] Sun Yat Sen Univ, Sch Environm Sci & Engn, 135 Xingang Xi Rd, Guangzhou 510275, Peoples R China
[5] Chinese Acad Sci, State Key Lab Coal Convers, Inst Coal Chem, Taiyuan 030001, Peoples R China
基金
中国国家自然科学基金;
关键词
chemical looping gasification (CLG); oxygen carrier; wood waste; NiO modification; hematite; SYNTHESIS GAS-PRODUCTION; TAR MODEL-COMPOUND; BIOMASS GASIFICATION; HYDROGEN-PRODUCTION; IRON-ORE; STEAM GASIFICATION; NATURAL HEMATITE; COMBUSTION; CONVERSION; SYNGAS;
D O I
10.3390/en16041847
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
Chemical looping gasification (CLG) technology is an effective approach to converting wood waste into high-quality syngas. In the present work, the reactivity of natural hematite is enhanced by doping with nickel oxide (NiO), and the effects of various operating parameters upon the CLG of wood waste are investigated using the NiO-modified hematite as an oxygen carrier. The NiO-modified hematite gives a significantly increased carbon conversion of 79.74%, and a valid gas yield of 0.69 m(3)/kg, compared to 68.13% and 0.59 m(3)/kg, respectively, for the pristine (natural) hematite, and 54.62% and 0.55 m(3)/kg, respectively, for the Al2O3, thereby indicating that the modification with NiO improves reactivity of natural hematite towards the CLG of wood waste. In addition, a suitable mass ratio of oxygen carrier to wood waste (O/W) is shown to be beneficial for the production of high-quality syngas, with a maximum valid gas yield of 0.69 m(3)/kg at an O/W ratio of 1. Further, an increase in reaction temperature is shown to promote the conversion of wood waste, giving a maximum conversion of 86.14% at reaction temperature of 900 degrees C. In addition, the introduction of an appropriate amount of steam improves both the conversion of wood waste and the quality of the syngas, although excessive steam leads to decreases in the reaction temperature and gas residence time. Therefore, the optimum S/B (mass ratio of steam to biomass) is determined to be 0.4, giving a carbon conversion and valid gas yield of 86.63% and 0.94 m(3)/kg, respectively. Moreover, the reactivity of the NiO-modified hematite is well-maintained during 20 cycles, with a carbon conversion and valid gas yield of around 79% and 0.69 m(3)/kg, respectively. Additionally, the XRD and SEM-EDS analyses indicate no measurable change in the crystal phase of the re-oxidized oxygen carrier.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Biomass Char Direct Chemical Looping Gasification Using NiO-Modified Iron Ore as an Oxygen Carrier
    Huang, Zhen
    He, Fang
    Feng, Yipeng
    Zhao, Kun
    Zheng, Anqing
    Chang, Sheng
    Wei, Guoqiang
    Zhao, Zengli
    Li, Haibin
    ENERGY & FUELS, 2014, 28 (01) : 183 - 191
  • [2] Chemical looping gasification of sewage sludge using copper slag modified by NiO as an oxygen carrier
    Nanhang Dong
    Ruiqiang Huo
    Ming Liu
    Lisheng Deng
    Zhengbing Deng
    Guozhang Chang
    Zhen Huang
    Hongyu Huang
    Chinese Journal of Chemical Engineering, 2021, 29 (01) : 335 - 343
  • [3] Chemical looping gasification of sewage sludge using copper slag modified by NiO as an oxygen carrier
    Dong, Nanhang
    Huo, Ruiqiang
    Liu, Ming
    Deng, Lisheng
    Deng, Zhengbing
    Chang, Guozhang
    Huang, Zhen
    Huang, Hongyu
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2021, 29 : 335 - 343
  • [4] Chemical looping gasification of benzene as a biomass tar model compound using hematite modified by Ni as an oxygen carrier
    Zhen, Huang
    Wang, Yonghao
    Fang, Shiwen
    Lin, Yan
    Song, Da
    Zhao, Kun
    Zhang, Yongqi
    Xia, Hongqiang
    Zhao, Zengli
    Huang, Hongyu
    APPLICATIONS IN ENERGY AND COMBUSTION SCIENCE, 2023, 15
  • [5] Nitrogen migration in sewage sludge chemical looping gasification using copper slag modified by NiO as an oxygen carrier
    Fang, Shiwen
    Deng, Zhengbing
    Lin, Yan
    Huang, Zhen
    Ding, Lixing
    Deng, Lisheng
    Huang, Hongyu
    ENERGY, 2021, 228
  • [6] Chemical looping gasification of high nitrogen wood waste using a copper slag oxygen carrier modified by alkali and alkaline earth metals
    Wang, Yonghao
    Liu, Ming
    Dong, Nanhang
    Lin, Yan
    Chang, Guozhang
    Wei, Guoqiang
    Zhao, Kun
    Wang, Xiaobo
    Zheng, Anqing
    Zhao, Zengli
    Huang, Zhen
    Fang, Yitian
    Li, Haibin
    Chemical Engineering Journal, 2021, 410
  • [7] Chemical looping gasification of high nitrogen wood waste using a copper slag oxygen carrier modified by alkali and alkaline earth metals
    Wang, Yonghao
    Liu, Ming
    Dong, Nanhang
    Lin, Yan
    Chang, Guozhang
    Wei, Guoqiang
    Zhao, Kun
    Wang, Xiaobo
    Zheng, Anqing
    Zhao, Zengli
    Huang, Zhen
    Fang, Yitian
    Li, Haibin
    CHEMICAL ENGINEERING JOURNAL, 2021, 410
  • [8] Biomass chemical looping gasification for syngas production using modified hematite as oxygen carriers
    Jiang, Cong
    Jin, Xiaoyu
    Xu, Tingting
    Xiao, Bo
    Hu, Zhiquan
    Wang, Xun
    JOURNAL OF ENVIRONMENTAL SCIENCES, 2023, 125 : 171 - 184
  • [9] Biomass chemical looping gasification for syngas production using modified hematite as oxygen carriers
    Cong Jiang
    Xiaoyu Jin
    Tingting Xu
    Bo Xiao
    Zhiquan Hu
    Xun Wang
    Journal of Environmental Sciences, 2023, (03) : 171 - 184
  • [10] Synthesis gas production from chemical looping gasification of lignite by using hematite as oxygen carrier
    Wei, Guoqiang
    Wang, Haitao
    Zhao, Weina
    Huang, Zhen
    Yi, Qun
    He, Fang
    Zhao, Kun
    Zheng, Anqing
    Meng, Junguang
    Deng, Zhengbing
    Chen, Jing
    Zhao, Zengli
    Li, Haibin
    ENERGY CONVERSION AND MANAGEMENT, 2019, 185 : 774 - 782