共 50 条
Modification of extended chemical percolation devolatilization model for application to low-rank coals
被引:4
|作者:
Umemoto, Satoshi
[1
,2
]
Kajitani, Shiro
[1
]
Kawase, Motoaki
[2
]
机构:
[1] Cent Res Inst Elect Power Ind CRIEPI, Energy Transformat Res Lab, 2-6-1 Nagasaka, Yokosuka, Kanagawa 2400196, Japan
[2] Kyoto Univ, Dept Chem Engn, Nishikyo Ku, Kyoto 6158510, Japan
关键词:
Coal;
Gasification;
Pyrolysis model;
Polycyclic aromatic hydrocarbon;
Soot;
FLASHCHAIN THEORY;
KINETICS;
GASIFICATION;
PYROLYSIS;
EVOLUTION;
BEHAVIOR;
CHAR;
D O I:
10.1016/j.jaap.2023.106168
中图分类号:
O65 [分析化学];
学科分类号:
070302 ;
081704 ;
摘要:
For understanding coal gasification reactions, primary pyrolysis reaction is important as the first stage of the gasification reactions. Recently, the authors developed a primary pyrolysis model to predict tar formation behavior by extending the chemical percolation devolatilization (CPD) model which is often used to predict pyrolysis behavior. The extended CPD (Ex-CPD) model predicts gas and tar components as respective chemical species. Consequently, the secondary tar decomposition behavior can be calculated by elementary step-like reaction models. However, some of the coal structure parameters used in the model contradict the 13C NMR data. That is, the molecular weight of the aromatic ring clusters calculated by the original Ex-CPD decreases with the aromatic index obtained by 13C NMR. In this study, this problem was resolved by modifying the calculation procedure to determine the coal structure parameters. The recalculated aromaticity index agreed with that calculated from the 13C NMR data. The modified Ex-CPD model was validated through comparison with coal gasification experiments using a pressurized drop tube furnace. The calculation results successfully described the trend of light gases, soot, and char yield in the experiments.
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页数:8
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