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Chestnut-Derived Activated Carbon as a Prospective Material for Energy Storage

机译:栗子衍生的活性炭作为能量储存的前瞻性材料

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摘要

In this work, we present the preparation and characterization of biomass-derived activated carbon (AC) in view of its application as electrode material for electrochemical capacitors. Porous carbons are prepared by pyrolysis of chestnut seeds and subsequent activation of the obtained biochar. We investigate here two activation methods, namely, physical by CO2 and chemical using KOH. Morphology, structure and specific surface area (SSA) of synthesized activated carbons are investigated by Brunauer-Emmett-Teller (BET) technique and scanning electron microscopy (SEM). Electrochemical studies show a clear dependence between the activation method (influencing porosity and SSA of AC) and electric capacitance values as well as rate capability of investigated electrodes. It is shown that well-developed porosity and high surface area, achieved by the chemical activation process, result in outstanding electrochemical performance of the chestnut-derived porous carbons.
机译:在这项工作中,考虑到其作为电化学电容器的电极材料,我们介绍了生物量衍生的活性炭(AC)的制备和表征。通过栗子种子热解制备多孔碳,随后对所得生物炭的激活制备。我们在这里调查两个激活方法,即物理通过CO2和使用KOH的化学品。通过Brunauer-Emmett-Teller(Bet)技术和扫描电子显微镜(SEM)研究了合成活性碳的形态,结构和比表面积(SSA)。电化学研究表明,在激活方法(影响AC的孔隙率和SSA)和电容值以及所研究的电极的速率能力之间存在明显的依赖性。结果表明,通过化学活化工艺实现的良好的孔隙率和高表面积,导致栗子衍生的多孔碳的卓越电化学性能。

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