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Effect of coal pre-oxidation on the optical texture and porosity of pyrolysis chars

机译:煤预氧化对热解焦炭光学结构和孔隙率的影响

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The preparation of activated carbons from bituminous coals usually involves three steps: oxidation, pyrolysis and activation. The porous texture of the final products is conditioned by the previous treatments. In this work, we study the effect of the variables used in the oxidation and pyrolysis steps on the optical texture and the porous structure of the materials obtained. Coals with thermoplastic properties must be oxidised in order to reduce or eliminate plastic behaviour and so ensure a char with a suitable porous network development during the carbonisation step. A high-rank coal was ground and sieved to 1-3 and 0.125-0.425 mm particle size, and then oxidised in an oven with a forced circulation of air, at 270℃, for periods between 1 and 7 days. The pyrolysis of fresh and oxidised coal samples was performed under nitrogen up to 850℃ at a heating rate of 60℃ min~(-1). Optical and scanning electron microscopy techniques show the progression of oxidation in the char particles following the shrinking-core model. As the pre-oxidation time increases, the chars lose any vestige of plasticity and the materials show adequate properties as precursors of activated carbons.
机译:由烟煤制备活性炭通常涉及三个步骤:氧化,热解和活化。最终产品的多孔质地通过先前的处理进行调节。在这项工作中,我们研究了氧化和热解步骤中使用的变量对所获得材料的光学质地和多孔结构的影响。具有氧化性的煤必须被氧化,以减少或消除可塑性,从而确保在碳化步骤中形成具有适当多孔网络的焦炭。将高级煤磨碎,过筛至1-3和0.125-0.425 mm的粒径,然后在强制空气流通的烘箱中于270℃氧化1至7天。新鲜和氧化后的煤样品的热解是在氮气中进行的,最高温度为850℃,加热速率为60℃min〜(-1)。光学和扫描电子显微镜技术显示了遵循收缩核模型的炭颗粒中氧化的进程。随着预氧化时间的增加,炭失去任何可塑性的痕迹,并且该材料作为活性炭的前体表现出足够的性能。

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