Electro-oxidative depolymerization of lignin for production of value-added chemicals
Green Chemistry Pub Date: 2022-09-14 DOI: 10.1039/D2GC02660K
Abstract
Lignin is the most abundant aromatic polymer naturally produced in the world. Conversion of lignin by depolymerization to aromatic monomers has attracted more and more interest in recent years. The electro-oxidative depolymerization of lignin with renewable electricity pertains to be a versatile and sustainable method because it can be performed under relatively mild conditions and it is easy to control the reaction degree. In this work, we have reviewed recent research progress in the electro-oxidative depolymerization of lignin for value-added products, focusing on the catalysts, electrodes, processes, electrocatalytic systems and additives, as well as the challenges faced in potential application of the technologies. It is recommended that more efficient electrocatalysts should be developed with regards to activity, selectivity and stability for direct use in the electro-oxidative depolymerization of lignin. New technology with less pollution and high selectivity should be developed for efficient recovery and purification of target aromatic products from the mixture of various degradation products. Understanding of the mechanisms of lignin depolymerization by electro-oxidation should be deepened, which will guide the design of catalysts and processes for increasing the yield of the desired target product.
Recommended Literature
- [1] Essential effect of the electrolyte on the mechanical and chemical degradation of LiNi0.8Co0.15Al0.05O2 cathodes upon long-term cycling?? Xiaoming Liu,Zachary D. Hood,Wangda Li,Donovan N. Leonard,Arumugam Manthiram,Miaofang ChiJ. Mater. Chem. A, 2021,9, 2111-2119 10.1039/D0TA07814J
- [2] Empowering microfluidics by micro-3D printing and solution-based mineral coating? Hongxia Li,Aikifa Raza,Qiaoyu Ge,Jin-You Lu,TieJun ZhangSoft Matter, 2020,16, 6841-6849 10.1039/D0SM00958J
- [3] Excellent energy storage performance in NaNbO3-based relaxor antiferroeic ceramics under a low electric field XuxinCheng,XiaomingChen,PengyuanFan 10.1007/s10832-022-00283-w
- [4] Emergence of microfluidic wearable technologies Joo Chuan Yeo,KenryLab Chip, 2016,16, 4082-4090 10.1039/C6LC00926C
- [5] Excellent kinetics of single-phase Gd-doped ceria fuel electrodes in solid oxide cells? Andreas Nenning,Manuel Holzmann,Jürgen Fleig,Alexander K. OpitzMater. Adv., 2021,2, 5422-5431 10.1039/D1MA00202C
- [6] Exchangeability of amino acid residues with similar physicochemical properties in coiled-coil interactions? Guiying Zhang,Maosheng Cheng,Yanni Li,Keliang Liu,Lifeng CaiChem. Commun., 2013,49, 11086-11088 10.1039/C3CC46560H
- [7] Excellent lithium ion storage property of porous MnCo2O4 nanorods? Peiyuan Zeng,Xiaoxiao Wang,Ming Ye,Qiuyang Ma,Jianwen Li,Wanwan Wang,Baoyou Geng,Zhen FangRSC Adv., 2016,6, 23074-23084 10.1039/C5RA26176G
- [8] Dissolved oxygen sensor based on fluorescence quenching of oxygen-sensitive ruthenium complexes immobilized in sol–gel-derived porous silica coatings Analyst, 1996,121, 785-788 10.1039/AN9962100785
- [9] Dissociation of large gaseous serine clusters produces abundant protonated serine octamer Jacob S. Jordan,Evan R. WilliamsAnalyst, 2021,146, 2617-2625 10.1039/D1AN00273B
- [10] Enabling high-throughput single-animal gene-expression studies with molecular and micro-scale technologies Jason WanLab Chip, 2020,20, 4528-4538 10.1039/D0LC00881H
Journal Name:Green Chemistry
research_products
-
CAS no.: 89640-58-4