Characterizations of the coal char using slag as heat carrier in allothermal pyrolysis process

被引:1
作者
Duan, Wenjun [1 ]
Gao, Yunke [1 ]
Yu, Qingbo [1 ]
Wang, Zhimei [2 ]
机构
[1] Northeastern Univ, Sch Met, Shenyang, Liaoning, Peoples R China
[2] Shenyang Metrol Testing Inst, Shenyang, Liaoning, Peoples R China
基金
中国国家自然科学基金;
关键词
Blast furnace slag; Allothermal pyrolysis; Kinetic; Pore structure; Coal; BLAST-FURNACE SLAG; WASTE HEAT; THERMODYNAMIC ANALYSIS; STEAM GASIFICATION; SYNGAS PRODUCTION; MOLTEN SLAG; CHINA IRON; BF SLAG; RECOVERY; BIOMASS;
D O I
10.1080/15567036.2019.1663312
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
In this work, the direction of allothermal coal pyrolysis reaction was driven by the waste heat of blast furnace slag. The structure features of the coal char mixed with/without slag was characterized by BET and SEM. The experiments of thermogravimetric analyzer were conducted to obtain the coal pyrolysis characteristics. The kinetic parameters of coal pyrolysis reaction were extracted using the reaction model based on the Arrhenius law and Li Chung-Hsiung method. The BET and SEM results showed that the slag addition could improve the structure features of the coal char effectively. The specific surface area, pore volume & size increased significantly. With the slag addition, characteristic temperatures of pyrolysis reaction did not change obviously. Peak temperature and final temperature increased by approximate 3.38 K and 5.55 K, respectively. However, the maximum weight reduce and pyrolysis characteristic index were enhanced dramatically. A single three-order reaction model was used to deduce the coal pyrolysis reaction successfully. The activation energy of the coal pyrolysis reaction decreased from 116.31 kJ center dot mol(-1) to 90.67 kJ center dot mol(-1), and the pre-exponential factor decreased from 6606.19 min(-1) to 2457.91 min(-1). Overall, slag provided the heat for the pyrolysis reaction and acted as the catalyst.
引用
收藏
页码:2482 / 2495
页数:14
相关论文
共 56 条
[1]   Slow and pressurized co-pyrolysis of coal and agricultural residues [J].
Aboyade, Akinwale O. ;
Carrier, Marion ;
Meyer, Edson L. ;
Knoetze, Hansie ;
Goergens, Johann F. .
ENERGY CONVERSION AND MANAGEMENT, 2013, 65 :198-207
[2]   Effects of moisture content and CaO on municipal solid waste pyrolysis in a fixed bed reactor [J].
Chen, Chong ;
Jin, Yuqi ;
Chi, Yong .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2014, 110 :108-112
[3]  
CHUNHSIUNG L, 1985, AICHE J, V31, P1036
[4]   A modified Arrhenius equation to predict the reaction rate constant of Anyuan pulverized-coal pyrolysis at different heating rates [J].
Du, Rui-Ling ;
Wu, Keng ;
Xu, Da-An ;
Chao, Chang-Yao ;
Zhang, Li ;
Du, Xiao-Dong .
FUEL PROCESSING TECHNOLOGY, 2016, 148 :295-301
[5]   Thermal behavior and kinetics of bio-ferment residue/coal blends during co-pyrolysis [J].
Du, Yuying ;
Jiang, Xuguang ;
Lv, Guojun ;
Ma, Xiaojun ;
Jin, Yuqi ;
Wang, Fei ;
Chi, Yong ;
Yan, Jianhua .
ENERGY CONVERSION AND MANAGEMENT, 2014, 88 :459-463
[6]   Life cycle and economic assessment of multi-stage blast furnace slag waste heat recovery system [J].
Duan, Wenjun ;
Yu, Qingbo ;
Wang, Zhimei ;
Liu, Junxiang ;
Qin, Qin .
ENERGY, 2018, 142 :486-495
[7]   The steam, gasification of coal with molten blast furnace slag as heat carrier and catalyst: Kinetic study [J].
Duan, Wenjun ;
Yu, Qingbo ;
Wu, Tianwei ;
Yang, Fan ;
Qin, Qin .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2016, 41 (42) :18995-19004
[8]   Experimental and kinetic study of steam gasification of low-rank coal in molten blast furnace slag [J].
Duan, Wenjun ;
Yu, Qingbo ;
Liu, Junxiang ;
Wu, Tianwei ;
Yang, Fan ;
Qin, Qin .
ENERGY, 2016, 111 :859-868
[9]   Experimental study on steam gasification of coal using molten blast furnace slag as heat carrier for producing hydrogen-enriched syngas [J].
Duan, Wenjun ;
Yu, Qingbo ;
Wu, Tianwei ;
Yang, Fan ;
Qin, Qin .
ENERGY CONVERSION AND MANAGEMENT, 2016, 117 :513-519
[10]   Characterizations of the hot blast furnace slag on coal gasification reaction [J].
Duan, Wenjun ;
Yu, Qingbo ;
Liu, Junxiang ;
Hou, Limin ;
Xie, Huaqing ;
Wang, Kun ;
Qin, Qin .
APPLIED THERMAL ENGINEERING, 2016, 98 :936-943