...
首页> 外文期刊>Advanced Sustainable Systems >Recent Advances in the Valorization of Lignin: A Key Focus on Pretreatment, Characterization, and Catalytic Depolymerization Strategies for Future Biorefineries
【24h】

Recent Advances in the Valorization of Lignin: A Key Focus on Pretreatment, Characterization, and Catalytic Depolymerization Strategies for Future Biorefineries

机译:木质素:稳定物价的最新进展重点在预处理、特征和未来催化解聚作用的策略生物炼制

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract Lignin is the largest renewable source of aromatics with an annual production of ≈50 to 70 million tons worldwide. Unfortunately, despite being a rich source of aromatic chemicals, almost 98% to 99% of lignin is burned as a low‐value fuel and only 1% to 2% is utilized as high‐value chemicals. It is noteworthy that lignin is cross‐linked with carbohydrate fractions of lignocellulosic biomass (LCB) through a stable lignin‐carbohydrate covalent complex, making it the main hurdle in converting LCB. Moreover, the stability of the inter‐unit linkages (COC, CC) and the strong interactions among the aromatic units, makes the separation into aromatic monomers challenging. Hence, a delignification pathway through a sustainable approach represents a formidable challenge for the development of future biorefineries. A breakthrough in several technological pathways, e.g., LCB fractionation, lignin characterization/depolymerization, and economic analysis are being considered. However, there remains a dearth of in‐depth understanding and a thorough know‐how. This review navigates readers through the latest cutting‐edge innovations in these four interconnected biorefinery aspects, and may inspire others to propagate the growth of biorefineries in the upcoming years. Overall, the objective of this review is to provide insights into lignin valorization technologies which may guide the future research toward sustainable biorefineries.
机译:抽象的木质素是最大的可再生能源的来源芳烃≈50到70年生产全球数百万吨。作为一个丰富的芳香物质,几乎98%到99%的木质素燃烧作为一个低价值燃料,只有1%到2%是利用高价值化学物质。横量与碳水化合物的分数木质生物质(LCB)通过一个稳定木质素高碳水化合物共价复杂LCB转换的主要障碍。国际米兰的稳定性检测单位联系(C OC, CC)和强相互作用的芳香单位,使分离成芳香单体具有挑战性。通过可持续的方法是途径发展的一个强大的挑战未来的生物炼制。技术途径,例如,LCB分离,木质素特征/解聚,经济分析也被考虑进来。还有一个缺乏在深度理解和一个彻底的知道如何去做。读者通过最新的切割边缘创新在这四个相互联系的生物炼制方面,可能会激励他人生物炼制的发展传播即将到来的年。审查是提供洞察木质素稳定物价的技术指导未来的研究走向可持续的生物炼制。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号