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Surface characteristics of KOH-treated commercial carbons applied for CO2 adsorption

机译:KOH处理的商业碳的表面特征应用于CO2吸附

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The effect of an alkali treatment (potassium hydroxide) on the properties of a commercial activated carbon has been studied. The aim of the treatment was to improve the adsorption properties of the material toward carbon dioxide. In the result of the treatment, silica contained in the raw carbon was removed and the density of the material increased. The changes in the surface chemistry were observed as well. The treatment of the activated carbon with KOH resulted in a complete removal of carboxy and lactone groups and a decrease of the general content of the acidic groups (more significant than that of basic groups). Simultaneously, the surface concentration of hydroxyl groups increased. The alkali treatment of activated carbon resulted in an increase of carbon dioxide uptake of 14% (measured using a volumetric method at 0 degrees C). The adsorption of carbon dioxide on activated carbon has a mixed (physicochemical) character and that two types of adsorption sites are present at the surface. The adsorption energy varies roughly from 25 to 60kJ/mol.
机译:研究了碱处理(氢氧化钾)对商业活性炭性能的影响。治疗的目的是改善材料朝向二氧化碳的吸附性能。在处理结果中,除去原料碳中含有的二氧化硅,材料的密度增加。观察到表面化学的变化。用KOH处理活性炭导致羧基和内酯基团的完全除去,并降低酸性基团的一般含量(比基本组更显着)。同时,羟基的表面浓度增加。活性炭的碱处理导致二氧化碳摄取的增加14%(在0℃下使用体积法测量)。二氧化碳对活性炭的吸附具有混合(物理化学)的特征,并且表面存在两种类型的吸附位点。吸附能量大约为25至60kJ / mol。

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