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GASEOUS EMISSION AND THERMAL ANALYSIS DURING CO-COMBUSTION OF OIL SHALE SEMICOKE AND SAWDUST USING TG-FTIR

机译:TG-FTIR分析油页岩半烟与木屑共燃烧时的气体排放及热分析

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摘要

The kinetics and thermal characteristics of oil shale semi-coke and sawdust, including their blends, during co-combustion were investigated using a non-isothermal thermogravimetric analyzer (TGA). The ratio of semicoke to sawdust in the blends by mass was set as 10: 0, 9: 1, 8: 2, 7: 3, 6: 4, 5: 5 and 0: 10. The combustion performance of samples improved significantly with increasing sawdust proportion in the mixture and rising heating rate. The kinetic analysis demonstrated that the distributed activation energy model (DAEM) could well describe the value of apparent activation energy at different fixed conversion values. Gaseous emission analysis by using the coupled Fourier transform infrared spectroscopy (FTIR) demonstrated that organic compounds were produced by the pyrolysis of sawdust, while inorganic compounds were generated during the whole combustion process. Most of the inorganic compounds were CO2 and CO. Seldom SO2 and NOx were released at the initial stage. The results obtained indicated that the blends may improve the combustion performance of oil shale semi-coke and sawdust.
机译:使用非等温热重分析仪(TGA)研究了油页岩半焦和锯末(包括其混合物)在共燃烧期间的动力学和热学特性。混合物中半焦与锯末的质量比为10:0、9:1、8:2、7:3、6:4、5:5和0:10。增加混合物中的木屑比例并提高加热速率。动力学分析表明,分布活化能模型(DAEM)可以很好地描述不同固定转化率下的表观活化能值。使用耦合傅里叶变换红外光谱法(FTIR)进行的气体排放分析表明,木屑的热解产生了有机化合物,而整个燃烧过程中产生了无机化合物。大部分无机化合物为CO2和CO。在初始阶段很少释放SO2和NOx。所得结果表明,共混物可改善油页岩半焦和锯末的燃烧性能。

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