Xiao-Ping Zheng , Meng Li , Yu Chai , Ya-Peng Du , Yu-Cang Zhang , Yan-Zhen Zheng
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Characterizations of the cellulose rich solid residues were performed using FTIR, SEM, and XRD techniques, confirming the effectiveness of lignin removal and cellulose retention through the pretreatment. The regenerated lignin exhibited homogeneous distribution and well-preserved structure, as evidenced by 2D-HSQC analysis. Furthermore, it displayed notable antioxidant activity and antibacterial property. The mechanism underlying the pretreatment was elucidated through density functional theory (DFT) calculations, confirming hydrogen-bond interactions between DESs and lignin, which positively contributed to lignin dissolution. 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引用次数: 0
摘要
用可再生木质纤维素替代化石燃料对经济发展和环境保护至关重要。在木质纤维素预处理过程中,深共晶溶剂(DES)在促进高纯度木质素和纤维素的分馏方面表现出了功效。本研究使用氯化胆碱(ChCl)和有机酸组成的 DESs 对农副产品百香果壳进行预处理,旨在有效分离纤维素和木质素。在测试的各种 DES 中,氯化胆碱与乳酸(LA)的组合在预处理过程中表现出最佳性能。这种组合在分解木质素-碳水化合物复合键和解构百香果外皮方面表现出了显著的协同效应。利用傅立叶变换红外光谱(FTIR)、扫描电镜(SEM)和 XRD 技术对富含纤维素的固体残留物进行了表征,证实了通过预处理去除木质素和保留纤维素的效果。2D-HSQC 分析表明,再生木质素分布均匀,结构保存完好。此外,它还具有显著的抗氧化活性和抗菌特性。通过密度泛函理论(DFT)计算阐明了预处理的机理,证实了 DESs 与木质素之间的氢键相互作用,这对木质素的溶解起到了积极作用。此外,还揭示了 DESs 与木质素之间的氢键特性。
Efficient pretreatment of passion fruit husks using choline chloride based deep eutectic solvents
Substituting renewable lignocellulose for fossil fuels is crucial for economic development and environmental protection. Deep eutectic solvents (DESs) demonstrate efficacy in facilitating the fractionation of high-purity lignin and cellulose during lignocellulose pretreatment. In this study, agricultural by-product passion fruit husks underwent pretreatment using DESs comprised of choline chloride (ChCl) and organic acids, aiming to efficiently separate cellulose and lignin. Among the various DESs tested, ChCl combined with lactic acid (LA) exhibited optimal performance in the pretreatment process. This combination demonstrated a remarkable synergistic effect in breaking down the lignin-carbohydrate complex bonds and deconstructing passion fruit husks. Characterizations of the cellulose rich solid residues were performed using FTIR, SEM, and XRD techniques, confirming the effectiveness of lignin removal and cellulose retention through the pretreatment. The regenerated lignin exhibited homogeneous distribution and well-preserved structure, as evidenced by 2D-HSQC analysis. Furthermore, it displayed notable antioxidant activity and antibacterial property. The mechanism underlying the pretreatment was elucidated through density functional theory (DFT) calculations, confirming hydrogen-bond interactions between DESs and lignin, which positively contributed to lignin dissolution. Additionally, hydrogen-bond properties between DESs and lignin were also revealed.
期刊介绍:
Materials Today Sustainability is a multi-disciplinary journal covering all aspects of sustainability through materials science.
With a rapidly increasing population with growing demands, materials science has emerged as a critical discipline toward protecting of the environment and ensuring the long term survival of future generations.