Department of Civil Engineering, Anna University Regional Campus, Tirunelveli, India.
Department of Physics, Anna University Regional Campus, Tirunelveli, India.
Bioresour Technol. 2019 Oct;290:121790. doi: 10.1016/j.biortech.2019.121790. Epub 2019 Jul 11.
Lignin based biopolymer (value added products) production is the most promising technology in the perspective of lignin valorization and sustainable development. Valorization of lignin gain the potentials to produce biopolymers such as polyhydroxyalkanoates, polyhydroxybutyrates, polyurethane etc. However, lignin valorization processes still needs development due to the recalcitrant nature of lignin which restricts its potential to produce valuable products. Many novel extraction strategies have been developed to fragment the lignin structure and make ease the recovery of valuable products. Achieving in depth insights on lignin characteristics and structure will help to understand the metabolic and catalytic degradative pathways needed for lignin valorization. In the view of multipurpose characteristics of lignin for biopolymer production, this review will spot light the potential applications of lignin and lignin based derivatives on biopolymer production, various lignin separation technologies, lignin depolymerization process, biopolymers production strategies and the challenges in lignin valorization will be addressed and discussed.
木质素基生物聚合物(增值产品)的生产是木质素增值和可持续发展方面最有前途的技术。木质素的增值有潜力生产生物聚合物,如聚羟基烷酸酯、聚羟基丁酸酯、聚氨酯等。然而,由于木质素的顽固性,其增值过程仍需要发展,这限制了其生产有价值产品的潜力。已经开发了许多新型提取策略来破坏木质素的结构,使其更容易回收有价值的产品。深入了解木质素的特性和结构将有助于理解木质素增值所需的代谢和催化降解途径。鉴于木质素在生物聚合物生产方面的多种用途,本综述将重点介绍木质素及其衍生物在生物聚合物生产、各种木质素分离技术、木质素解聚过程、生物聚合物生产策略以及木质素增值面临的挑战方面的潜在应用。