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Steam gasification reactivity of a high-sodium coal fly ash obtained from a pilot scale CFB gasifier

机译:从中试规模CFB气化炉获得的高钠煤粉煤灰的蒸汽气化反应性

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Circulating fluidized bed (CFB) gasification has several advantages for the utilization of low rank coals. However, the carbon content of fly ash is usually very high, which greatly influences the gasification efficiency. The purpose of this research is to investigate the gasification reactivity of a high-sodium Zhundong (ZD) coal fly ash obtained from a pilot-scale 2.5?t/d CFB gasification system. The experiments were carried out in a thermogravimetric analyzer with steam as gasification agent, and fast pyrolyzed ZD char was also investigated as a reference sample. The results show that increasing temperature accelerates the gasification rate both for fly ash and ZD char. Fly ash has higher gasification rate at the initial gasification stage. On the contrary, ZD char has higher reaction rate even at higher carbon conversion stage. Via distributed activation energy model, the average activation energy of ZD char and fly ash is calculated to be 94.4 and 91.2?kJ/mol, respectively. The integrated model study reveals that the reaction order of ZD char is about 0.74, whereas the reaction order of fly ash decreases from 1 to 0.59 when temperature increases from 900 to 1050?°C. The gasification reactivity of ZD coal fly ash is quite different with literature research on those?fly ashes with rarely little catalytic elements in coal ashes. The interesting results are related with the unique properties of ZD coal fly ash and the transformation of sodium during gasification process.
机译:循环流化床(CFB)气化对于利用低品位煤具有多个优势。然而,粉煤灰的碳含量通常很高,这极大地影响了气化效率。这项研究的目的是研究从中试规模的2.5?t / d CFB气化系统获得的高钠准东(ZD)粉煤灰的气化反应性。在具有蒸汽作为气化剂的热重分析仪中进行了实验,还研究了快速热解的ZD炭作为参考样品。结果表明,升高温度可加快粉煤灰和ZD炭的气化速率。飞灰在初始气化阶段具有较高的气化速率。相反,即使在更高的碳转化阶段,ZD炭也具有更高的反应速率。通过分布活化能模型,计算得出ZD炭和粉煤灰的平均活化能分别为94.4和91.2?kJ / mol。综合模型研究表明,当温度从900℃升高到1050℃时,ZD炭的反应顺序约为0.74,而粉煤灰的反应顺序从1降低至0.59。 ZD粉煤灰的气化反应性与有关煤灰中催化元素很少的粉煤灰的文献研究大不相同。有趣的结果与ZD粉煤灰的独特性质以及气化过程中钠的转化有关。

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