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首页> 外文期刊>Journal of thermal analysis and calorimetry >Systematic study of the role played by ZnCl2 during the carbonization of a chemically activated carbon by TG-MS and DSC
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Systematic study of the role played by ZnCl2 during the carbonization of a chemically activated carbon by TG-MS and DSC

机译:通过TG-MS和DSC在化学活性炭碳化期间ZnCl2在化学活性炭中发挥作用的系统研究

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摘要

In this study, thermal and calorimetric techniques are used in order to get a better insight into the progress of the carbonization process of a lignocellulosic material for activated carbon preparation. Therefore, the pyrolysis process of the precursor (olive waste) alone and in the presence of the activating agent (ZnCl2) at different temperatures is followed via thermogravimetry-mass spectroscopy analysis. The mass loss and the temperature programmed desorption profiles of the signals m/e=16, 18, 28, 30, and 44 allow the determination of the role of the activating agent during the synthesis of the activated carbons at different temperatures. In order to follow the changes in energy during the pyrolysis process, differential scanning calorimetry is used. The obtained results are linked to the properties of the activated carbons obtained at the different temperatures and characterized in a previous paper. In this manner, it is possible not only to determine the thermal events taking place during the pyrolysis process but also to unravel their impact on the textural, structural, and surface properties of the final materials.
机译:在该研究中,使用热量和量热技术,以便更好地深入了解用于活性炭制剂的木质纤维素材料的碳化过程的进展。因此,单独的前体(橄榄废物)的热解过程和在不同温度下的活化剂(ZnCl2)的存在下进行,然后通过热重杂散 - 质谱分析。信号M / E = 16,18,28,30和44的质量损失和温度编程的解吸分布允许确定活化剂在不同温度下活化碳的合成期间的作用。为了沿着热解过程中的能量的变化,使用差示扫描量热法。所得结果与在不同温度下获得的活性炭的性质相关联,并在前一篇论文中表征。以这种方式,不仅可以确定在热解过程中发生的热事件,而且还可以对最终材料的纹理,结构和表面性能进行解开。

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