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将木质素来源与木质素基碳材料的结构和电化学性质相联系。

Linking lignin source with structural and electrochemical properties of lignin-derived carbon materials.

作者信息

Li Wenqi, Zhang Yan, Das Lalitendu, Wang Yikai, Li Mi, Wanninayake Namal, Pu Yunqiao, Kim Doo Young, Cheng Yang-Tse, Ragauskas Arthur J, Shi Jian

机构信息

Biosystems and Agricultural Engineering, University of Kentucky Lexington KY 40506 USA

Department of Chemistry, University of Kentucky Lexington KY 40506 USA.

出版信息

RSC Adv. 2018 Nov 19;8(68):38721-38732. doi: 10.1039/c8ra08539k. eCollection 2018 Nov 16.

Abstract

Valorization of lignin to high-value chemicals and products along with biofuel production is generally acknowledged as a technology platform that could significantly improve the economic viability of biorefinery operations. With a growing demand for electrical energy storage materials, lignin-derived activated carbon (AC) materials have received increasing attention in recent years. However, there is an apparent gap in our understanding of the impact of the lignin precursors (, lignin structure, composition and inter-unit linkages) on the structural and electrochemical properties of the derived ACs. In the present study, lignin-derived ACs were prepared under identical conditions from two different lignin sources: alkaline pretreated poplar and pine. The lignin precursors were characterized using composition analysis, size exclusion chromatography, and 2D HSQC nuclear magnetic resonance (NMR). Distinctive distributions of numerous micro-, meso- and macro-porous channels were observed in the two lignin-derived ACs. Poplar lignin-derived ACs exhibited a larger BET surface area and total mesopore volume than pine lignin-derived AC, which contributed to a larger electrochemical capacitance over a range of scan rates. X-ray photoelectron spectroscopic analysis (XPS) results revealed the presence of oxygen-containing functional groups in all lignin-derived ACs, which participated in redox reactions and thus contributed to an additional pseudo-capacitance. A possible process mechanism was proposed to explain the effects of lignin structure and composition on lignin-derived AC pore structure during thermochemical conversion. This study provides insight into how the lignin composition and structure affect the derived ACs for energy storage applications.

摘要

将木质素转化为高价值化学品和产品以及生产生物燃料,通常被认为是一个能够显著提高生物炼制操作经济可行性的技术平台。随着对电能存储材料需求的不断增长,木质素衍生的活性炭(AC)材料近年来受到了越来越多的关注。然而,我们对木质素前体(即木质素结构、组成和单元间连接)对衍生活性炭的结构和电化学性能的影响的理解存在明显差距。在本研究中,在相同条件下由两种不同的木质素来源制备了木质素衍生的活性炭:碱预处理杨树和松树。使用组成分析、尺寸排阻色谱和二维异核单量子相干核磁共振(NMR)对木质素前体进行了表征。在两种木质素衍生的活性炭中观察到了大量微孔、中孔和大孔通道的独特分布。杨树木质素衍生的活性炭比松树木质素衍生的活性炭表现出更大的比表面积和总中孔体积,这使得在一系列扫描速率下具有更大的电化学电容。X射线光电子能谱分析(XPS)结果表明,所有木质素衍生的活性炭中都存在含氧官能团,这些官能团参与氧化还原反应,从而产生额外的赝电容。提出了一种可能的过程机制来解释木质素结构和组成在热化学转化过程中对木质素衍生活性炭孔结构的影响。本研究深入了解了木质素组成和结构如何影响用于储能应用的衍生活性炭。

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