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Biomass waste conversion into low-cost carbon-based materials for supercapacitors: A sustainable approach for the energy scenario

机译:生物质废物转化为超级电容器的低成本碳材料:能源情景的可持续方法

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摘要

Biomass upgrading is a promising approach to face the current energy consumption and chemicals production. Lignocellulosic biomass residues have taken the lead in this field. In this study, hemp residue-based activated carbons (ACs) were prepared by H3PO4-assisted hydrothermal carbonization (HTC) using a low concentration of H3PO4(25?wt%). ACs with a high porosity development were obtained (SBET?>?1200?m2?g?1), and they were subsequently functionalized with nitrogen groups using mild conditions. As-synthesized ACs were also heat-treated to enhance the electrical conductivity, improving the electrochemical performance. As a proof of concept, electrochemical capacitors (ECs) based on as-prepared ACs in aqueous and organic electrolytes, showing energy densities comparable to those of a capacitor based on an AC used in commercial capacitors. The most attractive outcome of this study is the straightforward, cost-effective, and sustainable methodology to prepare high added-value functional ACs with great potential for energy and environmental applications.
机译:生物质升级是应对当前能源消耗和化学品生产的一种有前途的方法。木质纤维素生物质残渣在该领域处于领先地位。在本研究中,采用低浓度的H3PO4(25?wt%)通过H3PO4辅助水热碳化(HTC)制备了大麻渣基活性炭(ACs)。获得了孔隙率高的ACs(SBET?>1200?m2?g?1),随后在温和条件下用氮基团对其进行功能化。合成的ACs也经过热处理以提高导电性,改善电化学性能。作为概念证明,在水溶液和有机电解质中,基于制备的ACs的电化学电容器(ECs)显示出与商用电容器中基于AC的电容器的能量密度相当的能量密度。这项研究最有吸引力的结果是简单、经济、可持续的方法,用于制备高附加值的功能性ACs,具有巨大的能源和环境应用潜力。

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