霍海龙, 李钦晔, 周文宁, 温治, 楼国锋, 刘训良. 鲁奇炉干馏段内大颗粒煤的热解特性研究[J]. 煤炭学报, 2019, 44(S2): 665-672. DOI: 10.13225/j.cnki.jccs.2019.0142
引用本文: 霍海龙, 李钦晔, 周文宁, 温治, 楼国锋, 刘训良. 鲁奇炉干馏段内大颗粒煤的热解特性研究[J]. 煤炭学报, 2019, 44(S2): 665-672. DOI: 10.13225/j.cnki.jccs.2019.0142
HUO Hailong, LI Qinye, ZHOU Wenning, WEN Zhi, LOU Guofeng, LIU Xunliang. Pyrolysis analysis of large coal particle in dry distillation section of Lurgi gasifier[J]. Journal of China Coal Society, 2019, 44(S2): 665-672. DOI: 10.13225/j.cnki.jccs.2019.0142
Citation: HUO Hailong, LI Qinye, ZHOU Wenning, WEN Zhi, LOU Guofeng, LIU Xunliang. Pyrolysis analysis of large coal particle in dry distillation section of Lurgi gasifier[J]. Journal of China Coal Society, 2019, 44(S2): 665-672. DOI: 10.13225/j.cnki.jccs.2019.0142

鲁奇炉干馏段内大颗粒煤的热解特性研究

Pyrolysis analysis of large coal particle in dry distillation section of Lurgi gasifier

  • 摘要: 煤热解是煤转换利用的主要方式之一,低阶煤通过热解的方式转化为焦油、焦炉煤气和半焦等产品,大大提高了低阶煤的利用价值。在实际的工业生产中,煤热解所用煤多为大颗粒煤或块煤,挥发分的成分复杂多样,针对这方面的研究相对较少。鲁奇三段炉作为煤热解常用的设备之一,在工业上广泛应用。以鲁奇炉实际运行工况为依据,基于Merrick提出的热解动力学模型,结合煤颗粒内部的传热建立了大颗粒煤热解的综合数学模型; 在综合煤热解动力学模型和气固换热模型的基础上建立了鲁奇炉干馏段内煤热解过程的数学模型。应用所建立的数学模型,研究了大颗粒煤在热解过程中的升温特性、挥发分各组分的释放特性以及鲁奇炉干馏段内挥发分各组分的浓度分布特性。模拟结果显示,对于直径为20 mm的单颗粒煤,热传导为热解的限制性环节,煤粒内外的温差由最初的最大温差67 ℃逐渐减小,加热1 h后煤颗粒内外温差仅为1.71 ℃,煤颗粒的挥发分产率达到29.2%,占最终产率的89%; 挥发分中各组分的析出规律差异较大,焦油和H2O的释放速率约为其他组分的10倍; 鲁奇炉干馏段(高度为3 m)煤颗粒的热解主要发生在底部0~1 m,对应的温度区间为350~550 ℃,在0.25~0.6 m床层段挥发分析出速率较快,对应温度区间为430~500 ℃。

     

    Abstract: Coal pyrolysis is one of main ways of coal transformation and utilization.Low-rank coal is converted into tar, coke oven gas and semi-coke by means of pyrolysis, which can greatly improve its utilization value.Both large coal particle and lump coal are commonly used for pyrolysis in industry processing.The complexity of volatile components makes the relevant research more difficult.Lurgi three-stage gasifier is treated as one of the main equipment of coal pyrolysis with the wide application in industry process.Given the practical operating conditions of Lurgi gasifier and the pyrolysis mode proposed by Merrk, a comprehensive mathematical model was developed for coal pyrolysis and heat and mass transfer in the dry distillation section of Lurgi gasifier.The results were obtained based on the practical operated condition of the gasifier.It is found that the heat transfer is the main limiting step for the pyrolysis of large coal particle.For a coal particle with the diameter of 20 mm, there is a larger temperature difference up to 67 ℃ between the external layer and the core at the initial stage, then gradually de-crease to only 1.7 ℃ after an hour.The volatile yields from the coal particle reaches 29%, which accounts for 89% of the final yield.There is a big difference in the release rate of the volatile components.The release rate of the tar and H2O is about 10 times as much as other components.As for the dry distillation section with the height of 3 m in a Lurgi gasifier, the pyrolysis mainly occurs between 0-1 m above the bottom of the section, with the corresponding temperature range is 350-550 ℃.In the region with the height range of 0.25-0.6 m, volatile yields rate is much faster and the corresponding temperature range is 430-500 ℃.

     

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