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The effect of pyrolysis temperature on the physical properties of monolithic carbons derived from solid iron bamboo

机译:热解温度对固态铁竹整体碳的物理性质的影响

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The purpose of this study was to investigate the effect of pyrolysis temperature on the physical properties of new monolithic porous carbon materials derived from exceptional kind of bamboo characterized by solid, very strong stem, i.e., from iron bamboo (Dendrocalamus strictus). Raw and carbonised bamboo (carbon content up to 82%) was characterized using various methods: elemental analysis, differential scanning calorimetry (DSC), helium gas densitometry, ultrasonic measurements, light and scanning electron microscopes. The DSC thermogram showed that the thermal decomposition of iron bamboo was characterized by T_1 = 264℃ and T_2 = 356℃, i.e., was finished at T > 400℃. For the higher carbonisation temperatures, above 600℃, weight loss and carbon content were found to be almost constant, while the true density and the elastic parameters: the ultrasonic velocity and the dynamic elastic modulus still increased. This means that more intensive heating did not remove any compounds from stem, but there was probably reorganization of structure of carbonised iron bamboo, resulting in more compact matrix in porous carbon.
机译:这项研究的目的是研究热解温度对新型整体多孔碳材料的物理性能的影响,这种新型多孔碳材料由具有实心,非常坚固的茎(即铁竹)的特殊种类竹子衍生而来。使用各种方法对生竹和碳化竹(碳含量高达82%)进行了表征:元素分析,差示扫描量热法(DSC),氦气密度测定法,超声测量,光显微镜和扫描电子显微镜。 DSC热分析图表明,铁竹的热分解特征为T_1 = 264℃和T_2 = 356℃,即在T> 400℃下完成。在较高的碳化温度下(600℃以上),失重和碳含量几乎保持恒定,而真实密度和弹性参数:超声速度和动态弹性模量仍然增加。这意味着更强烈的加热没有从茎中除去任何化合物,但是碳化铁竹的结构可能会发生重组,从而导致多孔碳中的基质更加紧密。

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