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一步法活化氧化木质素制备三维分级多孔碳用于高性能超级电容器。

3-D hierarchical porous carbon from oxidized lignin by one-step activation for high-performance supercapacitor.

机构信息

Institute of Ecological and Environmental Sciences, Sichuan Agricultural University, Chengdu, Sichuan 611130, PR China; Rural Environment Protection Engineering & Technology Center of Sichuan Province, Sichuan Agricultural University, Chengdu, Sichuan 611130, PR China.

Institute of Ecological and Environmental Sciences, Sichuan Agricultural University, Chengdu, Sichuan 611130, PR China; Rural Environment Protection Engineering & Technology Center of Sichuan Province, Sichuan Agricultural University, Chengdu, Sichuan 611130, PR China.

出版信息

Int J Biol Macromol. 2021 Jun 1;180:51-60. doi: 10.1016/j.ijbiomac.2021.03.048. Epub 2021 Mar 13.

Abstract

To convert lignin into high-valued carbon materials and understand the lignin structure function, oxidized lignin, a by-product from lignocellulose PHP-pretreatment (phosphoric acid plus hydrogen peroxide), was carbonized by one-step KOH-activation; the physico-chemical characteristics and electrochemical performances of the harvested carbons were also investigated. Results indicated the resultant carbons displayed 3-dimensional hierarchical porous morphology with maximum specific surface area of 3094 m g and pore volume of 1.72 cm g using 3:1 KOH/lignin ratio for carbonization. Three-electrode determination achieved a specific capacitance of 352.9 F g at a current of 0.5 A g, suggesting a superior rate performance of this carbon. Two-electrode determination obtained an excellent energy density of 9.5 W h kg at power density of 25.0 W kg. Moreover, 5000 cycles of charge/discharge reached 88.46% retention at 5 A g, implying an outstanding cycle stability. Basically, low molecular weight and abundant oxygen-containing functional groups of employed lignin mainly related to the excellent porous morphology and the outstanding electrochemical performances, suggesting the oxidized lignin was an ideal precursor to facilely prepare activated carbon for high-performance supercapacitor. Overall, this work provides a new path to valorize lignin by-product derived from oxidative pretreatment techniques, which can further promote the integrality of lignocellulose biorefinery.

摘要

为了将木质素转化为高附加值的碳材料并了解木质素的结构功能,我们采用一步 KOH 活化法将木质素氧化产物(木质素纤维素 PHP 预处理(磷酸加过氧化氢)的副产物)碳化;还研究了收获的碳的物理化学特性和电化学性能。结果表明,使用 3:1 的 KOH/木质素比例进行碳化,得到的碳具有 3 维分层多孔形貌,最大比表面积为 3094 m²/g,孔体积为 1.72 cm³/g。三电极测定在 0.5 A/g 的电流下获得了 352.9 F/g 的比电容,表明该碳具有优异的倍率性能。在 25.0 W/kg 的功率密度下,两电极测定获得了 9.5 W h/kg 的优异能量密度。此外,在 5 A/g 下,经过 5000 次充放电循环,保留率达到 88.46%,表明具有出色的循环稳定性。基本上,所使用的木质素的低分子量和丰富的含氧官能团主要与优异的多孔形貌和出色的电化学性能有关,这表明氧化木质素是一种理想的前体制备用于高性能超级电容器的活性炭的前体。总的来说,这项工作为利用氧化预处理技术衍生的木质素副产物提供了一条新途径,这可以进一步促进木质纤维素生物炼制的完整性。

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