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The effect of CO_2 activation temperature on the physical and electrochemical properties of activated carbon monolith from banana stem waste

机译:CO_2活化温度对香蕉茎废弃物活性炭全岩物理和电化学特性的影响

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The effect of CO_2 activation on the synthesis of activated carbon monolith from banana stem waste has been studied. Physical characteristics such as density, degree of crystallinity, surface morphology and elemental content has been analyzed, supporting the finding of an excellent electrochemical properties for the supercapacitor. The synthesis of activated carbon electrode began with pre-carbonization process at temperature of 250°C for 2.5 h. Then the process was continued by chemical activation using KOH as activating agent with a concentration of 0.4 M. The pellets were formed with 8 ton hydrolic pressure. All the samples were carbonized at a temperature of 600°C, followed by physical activation using CO_2 gas at a various temperatures ranging from 800°C, 850°C, 900°C and 950°C for 2 h. The carbon content was increased with increasing temperature and the optimum temperature was 900°C. The specific capacitance depends on the activation temperature with the highest specific capacitance of 104.2 F/g at the activation temperature of 900°C.
机译:研究了CO_2活化对香蕉茎废物的合成活化碳整料的影响。已经分析了诸如密度,结晶度,表面形态和元素含量的物理特性,支持超级电容器的优异电化学性能。活性炭电极的合成开始于250℃的温度下的预碳化过程2.5小时。然后通过使用KOH作为活化剂的化学活化继续该方法,其浓度为0.4M。粒料形成为8吨液压。将所有样品在600℃的温度下碳化,然后使用Co_2气体在800℃,850℃,900℃和950℃的各种温度下使用Co_2气体进行物理活化2小时。随着温度的增加而增加,碳含量增加,最佳温度为900℃。特定电容取决于在900℃的活化温度下具有104.2 f / g的最高特定电容的激活温度。

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