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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Tailoring the surface chemistry and porosity of activated carbons: Evidence of reorganization and mobility of oxygenated surface groups
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Tailoring the surface chemistry and porosity of activated carbons: Evidence of reorganization and mobility of oxygenated surface groups

机译:量身定制活性炭的表面化学性质和孔隙度:含氧表面基团的重组和迁移的证据

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摘要

An activated carbon with developed porosity and surface area (S_(BET) = 2387 m~2 g~(-1)) was prepared by chemical activation and then oxidized with ammonium peroxydisulfate. The oxidation treatment destroyed mesopore walls leading to a severe surface area reduction. Specific thermal treatments were carried out in different portions of the oxidized sample to selectively remove the oxygenated surface complexes. The combination of different techniques revealed that thermal treatment between 300 and 500 °C produces a strong reorganization of oxygenated groups on the chemical structure of carbons. CO2-evolving groups (around 75 wt.%) are selectively transformed into CO-evolving groups. These processes only occur inside the pores, and involve CO2 desorption and re-adsorption in this temperature range. At a higher treatment temperature (700 °G), re-oxidation is prevented and the surface chemistry becomes quite similar to the original activated carbon.
机译:通过化学活化制备具有孔隙率和表面积(S_(BET)= 2387 m〜2 g〜(-1))的活性炭,然后用过氧二硫酸铵氧化。氧化处理破坏了中孔壁,导致严重的表面积减少。在氧化样品的不同部分进行特定的热处理,以选择性除去氧化的表面配合物。不同技术的结合表明,在300到500°C之间进行热处理会在碳的化学结构上产生强烈的氧化基团重组。将CO 2进化基团(约75重量%)选择性地转化成CO进化基团。这些过程仅发生在孔内部,并且涉及该温度范围内的CO2解吸和再吸附。在较高的处理温度(700°G)下,可以防止再氧化,并且表面化学性质与原始活性炭非常相似。

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