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Investigation on Electrochemical Properties of Sugarcane Leaves -Derived Activated Carbon by Steam Activation

机译:甘蔗叶的电化学性能研究 - 通过蒸汽激活 - 通过蒸汽活化

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Sugarcane leaves (SLs) are a bio-waste from sugar production industry. To explore the value-added SLs, the SLs were used raw materials of activated carbons (ACs) by steam activation and their electrochemial properties were investigated for supercapacitor applications. The synthesis of ACs from the SLs consisted of two steps; carbonization at 500°C and steam activation. The synthesis condition was optimized by varying activation temperature (800 and 850°C) The porous structures were thoroughly formed on the surface after steam activation and the surface areas were reached to 630 and 639 m~2 g~(-1) at the activation temperature of 800 and 850°C, respectively. The SLs-derived ACs activated at 800°C assembled in coin cell using organic electrolyte showed the highest specific capacitance of approximately 16 F g~(-1) with a capacitance retention of 62% when the current density increased to 1.5 A g~(-1). Even though there is a room to improve the electrochemical properties such as optimization of porosity and removal of inorganic component, the SLs show a potential use as raw materials of ACs for supercapacitor applications.
机译:甘蔗叶(SLS)是来自糖生产行业的生物废物。为了探索增值的SLS,通过蒸汽激活使用活性碳(ACS)的原料,对超级电容器应用研究了其电化学性质。来自SLS的ACS的合成由两个步骤组成;碳化在500℃和蒸汽活化。通过不同的活化温度(800和850℃)优化合成条件,在蒸汽活化后在表面上彻底形成多孔结构,在激活时达到630和639m〜2g〜(1)的表面区域温度为800和850°C。使用有机电解质在硬币电池组装的800℃下激活的SLS衍生的AC显示出大约16 f G〜(-1)的最高比电容,电容保持为62%,当电流密度增加到1.5 a g〜( -1)。尽管有一个空间来改善电化学性质,例如优化孔隙率和无机组分的去除,但SLS表示潜在的用途作为超级电容器应用的ACS的原料。

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