Wang Dengfeng, Liu Lin, Shen Rongsheng, Chen Yangliu, Diao Mengyuan, Yao Juming
School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, China.
School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, China; Zhejiang Provincial Innovation Center of Advanced Textile Technology, Shaoxing 312000, China.
Int J Biol Macromol. 2023 Apr 15;234:123780. doi: 10.1016/j.ijbiomac.2023.123780. Epub 2023 Feb 21.
Due to the complexity, heterogeneity and recalcitrant structure of lignin, the extraction of multifunctional lignin directly from lignocellulose is still a challenge. Here, a green and recyclable route was proposed to separate high-quality lignin and tailor its functionalities. Through tuning the components of deep eutectic solvent (DES) and separation procedures, DES extracted lignin (DESL) exhibited high purity of 99.6 %, yield of 83.2 % and phenolic hydroxyl content of 8.33 wt%. The results of FTIR and C NMR demonstrated that DESL possessed more oxygen-containing reactive groups compared with commercial lignin (CL), enabling DESL with more superior functional activities. DESL exhibited higher antioxidant activity with the DPPH capture rate of 73.2 %. Meanwhile, DESL showed strong bactericidal effects against E. coli (100 %) and S. aureus (100 %) due to higher phenolic hydroxyl content, which could destroy bacterial cell membranes and inhibit bacterial metabolism by interacting with phospholipid layer and protein. Additionally, DESL displayed strong UV absorption and could be blended with polyurethane to enhance UV shielding property of polyurethane composite film with >50 of UPF value. In summary, DES treatment is a suitable strategy for high-quality lignin separation, which opens a broad spectrum of possibilities for lignin valorization.
由于木质素结构复杂、具有异质性且难以降解,直接从木质纤维素中提取多功能木质素仍然是一项挑战。在此,我们提出了一种绿色且可循环利用的方法来分离高质量木质素并调整其功能。通过调节低共熔溶剂(DES)的成分和分离程序,DES提取的木质素(DESL)表现出99.6%的高纯度、83.2%的产率以及8.33 wt%的酚羟基含量。傅里叶变换红外光谱(FTIR)和碳核磁共振(C NMR)结果表明,与商业木质素(CL)相比,DESL含有更多的含氧反应性基团,这使得DESL具有更优异的功能活性。DESL表现出更高的抗氧化活性,其对二苯基苦味酰基自由基(DPPH)的捕获率为73.2%。同时,由于酚羟基含量较高,DESL对大肠杆菌(100%)和金黄色葡萄球菌(100%)显示出很强的杀菌效果,它可以通过与磷脂层和蛋白质相互作用破坏细菌细胞膜并抑制细菌代谢。此外,DESL表现出很强的紫外线吸收能力,并且可以与聚氨酯共混以提高聚氨酯复合膜的紫外线屏蔽性能,其紫外线防护系数(UPF)值大于50。总之,DES处理是分离高质量木质素的合适策略,为木质素的高值化利用开辟了广阔的可能性。