Coke characteristics and formation mechanism based on the hot tamping coking

被引:9
|
作者
Wei, Qingwen [1 ]
Pang, Keliang [2 ,3 ]
Wu, Ji [1 ,3 ]
Liang, Cai [1 ]
机构
[1] Southeast Univ, Sch Energy & Environm, Key Lab Energy Thermal Convers & Control, Minist Educ, Nanjing 210096, Jiangsu, Peoples R China
[2] Ansteel Beijing Res Inst, Beijing 102211, Peoples R China
[3] Technol Ctr Angang Steel Co Ltd, Anshan 114009, Liaoning, Peoples R China
关键词
Hot tamping; CRI; Crushing strength; Plastic stage; Coke structure; METALLURGICAL QUALITY BRIQUETTES; COAL-TAR PITCH; STRUCTURAL TRANSFORMATION; BULK-DENSITY; PART; CARBONIZATION; PYROLYSIS; TECHNOLOGY; EVOLUTION; BEHAVIOR;
D O I
10.1016/j.jaap.2021.105381
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Superior quality coke with low CRI (Coke Reactivity Index) and high strength is indispensable for the safe and efficient operation of the blast furnace. The hot tamping coking technology is comprehensively investigated when the coal samples undergo plastic stage to improve the coke quality and save the coking coal resource. The influences of the tamping temperature, holding time and tamping stress on semicoke structures and coke characteristics were examined. Results show that hot tamping operation could effectively enhance the coke quality. When the tamping temperature is low and the holding time is short, lower tamping stress could produce coke with a compact pore structure and low CRI. High stress leads to a significant increase in coke porosity. It weakens the improvement of coke quality because the permeability of semicoke is low and abundant volatile gas is released in the latter coking process. When the tamping temperature and holding time are appropriate, higher stress could obtain high-quality coke with compact pore structure and low CRI due to the higher permeability of semicoke and less volatile gas resided in the semicoke. The crushing strength (SR) is influenced by the CRI, porosity, macropore wall thickness and coke homogeneity. Lower CRI, lower porosity, thicker pore wall and better homogeneity contribute to higher SR.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Non-coking coal to coke: use of biomass based blending material
    Das, S
    Sharma, S
    Choudhury, R
    ENERGY, 2002, 27 (04) : 405 - 414
  • [42] The mechanism of coking pressure generation I: Effect of high volatile matter coking coal, semi-anthracite and coke breeze on coking pressure and plastic coal layer permeability
    Nomura, Seiji
    Mahoney, Merrick
    Fukuda, Koichi
    Kato, Kenji
    Le Bas, Anthony
    McGuire, Sid
    FUEL, 2010, 89 (07) : 1549 - 1556
  • [43] Mechanism of Coking Pressure Generation I: Effect of High Volatile Matter Coking Coal, Semi-Anthracite and Coke Breeze on Coking Pressure and Plastic Coal Layer Permeability
    Nomura, Seiji
    Mahoney, Merrick
    Fukuda, Koichi
    Kato, Kenji
    Le Bas, Anthony
    McGuire, Sid
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2009, 16 : 384 - 388
  • [44] MECHANISM OF COKE FORMATION FROM HYDROCRACKED ATHABASCA RESIDUUM
    SRINIVASAN, NS
    MCKNIGHT, CA
    FUEL, 1994, 73 (09) : 1511 - 1517
  • [45] MECHANISM OF COKE FORMATION FROM LIQUID-PHASE
    GIMAEV, RN
    GUBAIDULLIN, VZ
    ROGACHEVA, OV
    DAVYDOV, GF
    DANILYAN, TD
    CHEMISTRY AND TECHNOLOGY OF FUELS AND OILS, 1980, 16 (3-4) : 196 - 200
  • [46] STUDY OF MECHANISM OF COKE FORMATION IN CRACKING OF PETROLEUM RESINS
    MAGARIL, RZ
    AKSENOVA, EI
    INTERNATIONAL CHEMICAL ENGINEERING, 1968, 8 (04): : 727 - &
  • [47] Fissure formation in coke. 1: The mechanism of fissuring
    Jenkins, D. R.
    Mahoney, M. R.
    Keating, J. C.
    FUEL, 2010, 89 (07) : 1654 - 1662
  • [48] Exploring the characteristics of coke formation on biochar-based catalysts during the biomass pyrolysis
    Wang, Biao
    Hu, Junhao
    Chen, Wei
    Chang, Chun
    Pang, Shusheng
    Li, Pan
    FUEL, 2024, 357
  • [49] Distribution Characteristics of Coking Products and Mechanism of Tar Lightening in Preparation of High-Strength Gasification-Coke with Low-Rank Coal Blending
    Yang, Zhirong
    Huang, Jiejie
    Duan, Xuezhi
    Zhang, Jing
    Zhou, Xinggui
    ENERGY & FUELS, 2019, 33 (11) : 10904 - 10912
  • [50] State-of-the-art of Coke Formation during Steam Cracking: Anti-Coking Surface Technologies
    Symoens, Steffen H.
    Olahova, Natalia
    Gandarillas, Andres E. Munoz
    Karimi, Hadiseh
    Djokic, Marko R.
    Reyniers, Marie-Francoise
    Marin, Guy B.
    Van Geem, Kevin M.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2018, 57 (48) : 16117 - 16136