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Activated carbon produced from Sasol-Lurgi gasifier pitch and its application as electrodes in supercapacitors

机译:由Sasol-Lurgi气化炉沥青生产的活性炭及其在超级电容器中作为电极的应用

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摘要

A pyrolysis product derived from Sasol-Lurgi gasifier pitch was activated using different proportions of KOH. The increase of the amount of KOH used for activation caused the activation degree of the carbons to increase very significantly. The activated carbons obtained using lower amounts of KOH were mainly microporous, while the amount of mesopores developed in the samples progressively increased for the carbons activated with higher proportions of KOH. The gravimetric specific capacitance of samples obtained with (2:1), (3:1) and (5:1) KOH to carbon ratio were rather similar at low current densities (approx 400 F/g at low current densities), despite the significant differences observed in their textural characteristics. Supercapacitors built with the activated carbons obtained with (2:1) and (3:1) KOH to carbon ratio yielded the highest volumetric capacitance (higher than 200 F/cm~3 at low current densities), while the most activated sample yielded the lowest values, due to the significant reduction in density caused by activation. The high values of capacitance observed result from the combination of two mechanisms of energy storage: double layer formation and pseudocapacitance.
机译:使用不同比例的KOH活化来自Sasol-Lurgi气化炉沥青的热解产物。用于活化的KOH量的增加导致碳的活化度显着增加。使用较低量的KOH得到的活性炭主要是微孔的,而对于使用较高比例KOH的活化炭,样品中形成的介孔数量逐渐增加。使用(2:1)、(3:1)和(5:1)KOH与碳比获得的样品的重量比电容在低电流密度下(低电流密度下约为400 F/g)非常相似,尽管在结构特性上观察到显着差异。用(2:1)和(3:1)KOH与碳比得到的活性炭制成的超级电容器产生了最高的体积电容(在低电流密度下高于200 F/cm~3),而最活化的样品产生了最低的值,这是由于活化引起的密度显着降低。观察到的高电容值是两种储能机制相结合的结果:双电层形成和赝电容。

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