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Effect of reaction atmosphere on the products of slow pyrolysis of coals

机译:反应气氛对煤慢速热解产物的影响

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Slow pyrolysis of semianthracite (SA) and high volatile bituminous C (HVBC) coals was performed under two reaction atmospheres (CO2 and N-2) and three different particle size distributions. It was found that the physicochemical properties of a char and its respective combustibility depend significantly on the reaction atmosphere under which it was produced. For SA char particles larger than 0.7 mm, the BET surface area increases when the atmosphere is enriched in CO2 due to intraparticle side reactions, differences in the thermal-diffusive properties of N-2 and CO2, and the reactive effects of the latter. When particle size decreases below 45 mu m, no mesoporous surface area developed with either atmosphere. The combustibility of char formed in CO2 was higher than in N-2; furthermore, the pore size distribution (PSD) is different in both environments. ATR-FTIR spectrometry indicates that char formed under N-2 is more aromatic. Additionally, FE-SEM visualization showed the occurrence of softening more evident in N-2 than in CO2; however the char obtained in CO2 looked as if it had lost more material, which agrees with other experiments showing lower elemental and fixed carbon contents for this condition.
机译:在两种反应气氛(CO2和N-2)和三种不同的粒径分布下,半无烟煤(SA)和高挥发性沥青C(HVBC)煤进行了缓慢的热解。发现炭的物理化学性质及其各自的可燃性显着取决于在其下产生炭的反应气氛。对于大于0.7毫米的SA炭颗粒,由于颗粒内的副反应,N-2和CO2的热扩散特性差异以及后者的反应效应,当大气中富含CO2时,BET表面积增加。当粒度减小到45μm以下时,在任何一种气氛下都没有形成中孔表面积。在二氧化碳中形成的焦炭的可燃性高于在N-2中燃烧的焦炭;此外,两种环境下的孔径分布(PSD)不同。 ATR-FTIR光谱表明,在N-2下形成的碳更芳香。此外,FE-SEM可视化显示N-2中的软化现象比CO2中的更为明显。然而,在二氧化碳中获得的焦炭看起来好像损失了更多的材料,这与其他实验表明在这种条件下碳元素和固定碳含量较低的实验是一致的。

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