Experimental and Numerical Investigations on Charging Carbon Composite Briquettes in a Blast Furnace

被引:6
|
作者
Wang, Qiang [1 ]
Liu, Zhu [1 ]
Tang, Huiqing [1 ]
Guo, Zhancheng [1 ]
机构
[1] Univ Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
carbon composite briquette; blast furnace ironmaking; reaction kinetics; numerical simulation; coke saving; COLD-BONDED BRIQUETTES; CO2 EMISSION REDUCTION; IRON-ORE COMPOSITE; REACTION BEHAVIOR; REACTION MODEL; CHINA IRON; OPERATION; ENHANCEMENT; TECHNOLOGY;
D O I
10.3390/met11111669
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In the present research, charging carbon composite briquettes (CCB) in a blast furnace (BF) was investigated. The CCB used contained 29.70 wt.% Fe3O4, 39.70 wt.%, FeO, 1.57 wt.% iron, 8.73 wt.% gangue, and 20.30 wt.% carbon. Its reaction kinetics in BF was examined by nonisothermal tests and modeled. Thereafter, the influence of replacing 10% ore with CCB on BF performance was studied by numerical simulations. Results showed that the CCB reaction behavior in BF could be modeled using the previously proposed model under a(gs) = 1900 m(2)& BULL;m(-3). Numerical simulations on a BF with a production of 6250 t hot metal per day (tHM/day) showed that replacing 10% ore with CCB efficiently improved the BF operation for coke saving. In the CCB charging operation, the CCB reached a full iron-oxide reduction above the cohesive zone (CZ) and a carbon conversion of 85%. By charging CCB, the thermal state in the BF upper part was significantly changed while it was not influenced in the BF lower part; the ore reduction was retarded before the temperature reached 1073 K and was prompted after and the local gas utilization tends to increase above the CZ. By the CCB reduction above the CZ, BF top gas temperature was decreased by 8 K, the BF top gas utilization was increased by 1.3%, the BF productivity was decreased by 17 tHM/day, the coke rate was decreased by 52.2 kg/tHM, and ore rate was decreased by 101 kg/tHM. Considering the energy consumption of sintering and coking, charging the CCB could have a significant energy-saving and CO2-emission-reducing effect for BF iron making.
引用
收藏
页数:18
相关论文
共 50 条
  • [41] INVESTIGATION OF BLAST-FURNACE CHARGING GEAR
    YULENKOV, VIL
    SHARAPOV, VA
    LEVIN, VS
    BARDYSHEV, VG
    STEEL IN THE USSR, 1977, 7 (06): : 314 - 316
  • [42] Investigation of the charging system of a modern blast furnace
    Bolshakov, VI
    Ivancha, NG
    Loginov, VN
    Netronin, VI
    Shutylev, FM
    STEEL IN TRANSLATION, 1996, 26 (10) : 1 - 5
  • [43] Computational investigation of scrap charging to the blast furnace
    Austin, PR
    Nogami, H
    Yagi, J
    ISIJ INTERNATIONAL, 1998, 38 (07) : 697 - 703
  • [44] DUSTFREE BLAST-FURNACE CHARGING SYSTEM
    ADAMOV, RG
    SHCHERBININ, VP
    SHUFALOV, SE
    YAKOVENKO, SA
    KOTUKHOV, VI
    STEEL IN THE USSR, 1990, 20 (05): : 215 - 216
  • [45] Automatic control over blast furnace charging
    Tarakanov, AK
    Taranets, AI
    Shidlovskii, AA
    METALLURGIST, 1995, 39 (9-10) : 188 - 188
  • [46] USE OF BLAST-FURNACE CHARGING APPARATUSES
    TRAKSHINSKII, RB
    METALLURGIST, 1986, 30 (7-8) : 268 - 270
  • [47] Contemporary blast furnace top charging practices
    Buchwalder, Joachim
    Dobroskok, Vladislav A.
    Lonardi, Emile
    Goffin, Robert
    Thillen, Guy
    Koehler, Steffen
    STAHL UND EISEN, 2008, 128 (04): : 47 - +
  • [48] DURABILITY OF BLAST-FURNACE CHARGING GEAR
    FAINBERG, AD
    STAL IN ENGLISH-USSR, 1965, (12): : 961 - &
  • [49] DESIGNING BLAST-FURNACE CHARGING GEAR
    OSINTSEV.NL
    GRUZINOV, VK
    OZOLINA, ZM
    STAL IN ENGLISH-USSR, 1966, (01): : 17 - &
  • [50] NEW BLAST-FURNACE CHARGING SYSTEM
    MINDELI, MS
    PARASTASHVILI, VV
    GVARAMIYA, RM
    KENKEBASHVILI, OA
    KILADZE, DG
    RUSIDZE, VV
    METALLURGIST, 1979, 23 (7-8) : 540 - 542