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Influence of Coal Preoxidation on the Porosity of the Activated Carbons with Steam Activation

机译:煤氧化对蒸汽活化碳活化碳孔隙率的影响

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Activated carbons have been prepared from a low ash content anthracite preoxidized in air to different degrees.Steam has been used as activating agent to prepare different burn-off samples. The preoxidation effect on the physico-chemical characteristics of the resulting chars and activated carbons were comparatively studied. The surface area and porosity of sample was studied by N2 adsorption at 77 K. The results show that introduced oxygen in coal structure had a great influence on the carbonization and subsequent activation process. The carbonization of oxidized coal exhibited a broader volatile evolution with respect to temperature,and the resulting chars had a larger microporosity. The porosity of the char is a primary foundation to develop more microporosity upon activation.Activation of char from oxidized coal facilitated development of small scale micropore,however, the micropore widening was also observed at high burn-offs.Compared with development of supermicropore, the evolution of mesoporosity is hindered strongly by preoxidation treatment. The quantity of basic surface sites in activated carbons increased with an increase in oxidation degree,while the quantity of acidic sites appeared equivalent.It seemed that the amount of surface groups and the microporosity mainly developed in a parallel way.
机译:活性炭已由在空气中预氧化的低灰分含量含量制备到不同程度。已被用作活化剂以制备不同的烧伤样品。研究了对所得物质和活性碳的物理化学特性的预氧化效果。通过N 2吸附在77k中研究样品的表面积和孔隙率。结果表明,在煤结构中引入的氧气对碳化和随后的活化过程产生了很大影响。相对于温度,氧化煤的碳化表现出更宽的挥发性演化,所得的易磁性具有更大的微孔。 Char的孔隙率是在活化时产生更多微孔的主要基础。然而,来自氧化煤的Char的激活,然而,在高烧伤的高烧伤中也观察到微孔扩展。随着Supermicropore的开发,也观察到微孔扩大。通过预氧化处理强烈地阻碍了中间渗透性的演化。活性碳的基本表面位点的数量随氧化程度的增加而增加,而酸性位点的数量出现相同。似乎表面基团的量和微孔的量主要以平行方式开发。

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