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Nano Carbon Produced by Advanced Mild Hydrothermal Process of Oil Palm Biomass for Supercapacitor Material

机译:用于超级电容器材料的油棕生物质的先进温和水热过程生产的纳米碳

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Palm oil waste is an abundant biomass resource in Indonesia that is not well utilized as a raw material for producing high value-added materials. One product that is possible to be manufactured from oil palm biomass is activated nano carbon. Characteristics of high porosity and good conductivity will lead the activated nano carbon suitable as an electrode of supercapacitor material. Preparation of activated nano carbon is conducted by two main steps namely carbonization and activation. In this research, carbonization is done by hydrothermal process while activation is done by physico-chemical activation. This study focused on manufacturing activated nano carbon from empty fruit bunches of oil palm with hydrothermal carbonization for supercapacitor applications. The activation of mesopore area of the carbon has been taken place by using ZnCl2 and CaCl2 as a chemical activating agent during the hydrothermal process. The activated nano carbon produced from empty fruit bunches has a surface area of 41-1571 m~2/g and a pore size of 2.0-6.8 nm. In this study activated nano carbon is used as a working electrode in symmetric hybrid supercapacitor.
机译:棕榈油废物是印度尼西亚的丰富生物量资源,不充分利用作为生产高附加值材料的原料。一种可以从油棕生物质制造的一种产品是活化的纳米碳。高孔隙率和良好电导率的特性将引导适合作为超级电容器材料的电极的活性纳米碳。活化纳米碳的制备由两个主要步骤进行,即碳化和活化。在该研究中,通过水热过程进行碳化,同时通过物理化学活化进行活化。本研究专注于制造来自空果束油棕榈的活性纳米碳,具有超级电容器应用的水热碳化。通过使用ZnCl2和CaCl 2作为水热过程中的化学活化剂,已经通过了碳的中孔区域的激活。由空果实束产生的活化的纳米碳的表面积为41-1571m〜2 / g,孔径为2.0-6.8nm。在该研究中,活化的纳米碳用作对称杂交超级电容器中的工作电极。

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