首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >High-temperature pyrolysis behavior of a bituminous coal in a drop tube furnace and further characterization of the resultant char
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High-temperature pyrolysis behavior of a bituminous coal in a drop tube furnace and further characterization of the resultant char

机译:烟煤在滴管炉中的高温热解行为和所得焦炭的进一步表征

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摘要

In order to study the high-temperature pyrolysis behavior of bituminous coal in the drop tube furnace (DTF) and better utilization of the obtained char, a typical Shenhua bituminous coal (SH) was pyrolyzed in a DTF at the temperatures of 1000-1300 degrees C (100 degrees C increments). The obtained char was then characterized using BET and FTIR methods, while its combustion, gasification and pollutant emission characteristics were explored by a thermogravimetric analyzer and online flue gas analyzer. Results show that higher pyrolysis temperature leads to more CO and less CH4 for the increased free radical rearrangement by high heating rate and carbon reduction reactions at high temperatures. Pyrolysis generally decomposes the functional groups, increases the volume of char pores, and upgrades the rank of coal. The combustion activation energy increases from 22.99 kJ/mol to 27.42 kJ/mol and the gasification is hindered with the higher pyrolysis temperature. It is notable that the NOx and SO2 emissions of the obtained char combustion are both below 30 mg/s-MJ. High-temperature pyrolysis can enhance the evolution of NH3 and HCN as volatiles, thus decreasing the NOx formation in further char combustion stages while partly decomposing the organic and inorganic sulfur compounds to impact the SO2 emission.
机译:为了研究烟煤在滴管炉(DTF)中的高温热解行为并更好地利用所获得的焦炭,将典型的神华烟煤(SH)在DTF中于1000-1300度的温度下进行热解。 C(100摄氏度增量)。然后使用BET和FTIR方法对所得焦炭进行表征,同时通过热重分析仪和在线烟气分析仪探索其燃烧,气化和污染物排放特性。结果表明,较高的热解温度通过较高的加热速率和高温下的碳还原反应导致自由基重排增加,从而导致更多的CO和更少的CH4。热解通常会分解官能团,增加炭孔的体积,并提高煤的等级。燃烧活化能从22.99 kJ / mol增加到27.42 kJ / mol,并且较高的热解温度阻碍了气化。值得注意的是,所获得的焦炭燃烧的NOx和SO2排放均低于30 mg / s-MJ。高温热解可增强NH3和HCN作为挥发物的释放,从而减少进一步燃烧炭燃烧阶段的NOx形成,同时部分分解有机和无机硫化合物以影响SO2排放。

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