解聚
木质素
催化作用
化石燃料
生物燃料
有机化学
同种类的
生化工程
化学
材料科学
制浆造纸工业
废物管理
工程类
热力学
物理
作者
Hina Ramzan,Muhammad Usman,Faiqa Nadeem,Muhammad Shahzaib,Muneeb Ur Rahman,Reeta Rani Singhania,Farzana Jabeen,Anil Kumar Patel,Chunyao Qing,Shengyong Liu,Grzegorz Piechota,Nadeem Tahir
标识
DOI:10.1016/j.biortech.2023.129492
摘要
The need for alternative sources of energy became increasingly urgent as demand for energy and the use of fossil fuels both soared. When processed into aromatic compounds, lignin can be utilized as an alternative to fossil fuels, however, lignin's complex structure and recalcitrance make depolymerization impractical. This article presented an overview of the most recent advances in lignin conversion, including process technology, catalyst advancement, and case study-based end products. In addition to the three established methods (thermochemical, biochemical, and catalytic depolymerization), a lignin-first strategy was presented. Depolymerizing different forms of lignin into smaller phenolic molecules has been suggested using homogeneous and heterogeneous catalysts for oxidation or reduction. Limitations and future prospects of lignin depolymerization have been discussed which suggests that solar-driven catalytic depolymerization through photocatalysts including quantum dots offers a unique pathway to obtain the highly catalytic conversion of lignin.
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