1 |
Theoretical insight into the hydrogenolysis mechanism of lignin dimer compounds based on experiments Zhu C, Cao JP, Feng XB, Zhao XY, Yang Z, Li J, Zhao M, Zhao YP, Bai HC Renewable Energy, 163, 1831, 2021 |
2 |
Controlled hydrogenolysis over heterogeneous catalysts for lignin valorization Phan DP, Lee EY Catalysis Reviews-Science and Engineering, 62(4), 607, 2020 |
3 |
Immobilized laccase on magnetic nanoparticles for enhanced lignin model compounds degradation Chen XY, He B, Feng M, Zhao DW, Sun J Chinese Journal of Chemical Engineering, 28(8), 2152, 2020 |
4 |
Degradation of the phenolic beta-ether lignin model dimer and dyes by dye-decolorizing peroxidase from Bacillus amyloliquefaciens Yang J, Gao TG, Zhang YR, Wang S, Li HY, Li SN, Wang SX Biotechnology Letters, 41(8-9), 1015, 2019 |
5 |
Investigation on pyrolysis mechanism of guaiacol as lignin model compound at atmospheric pressure Liu CJ, Ye LL, Yuan WH, Zhang Y, Zou JB, Yang JZ, Wang YZ, Qi F, Zhou ZY Fuel, 232, 632, 2018 |
6 |
Effects of HZSM-5 on volatile products obtained from the fast pyrolysis of lignin and model compounds Yang HM, Norinaga K, Li J, Zhu WY, Wang HJ Fuel Processing Technology, 181, 207, 2018 |
7 |
Selective hydrogenolysis of alpha-O-4, beta-O-4, 4-O-5 C-O bonds of lignin-model compounds and lignin -containing stillage derived from cellulosic bioethanol processing Gomez-Monedero B, Ruiz MP, Bimbela F, Faria J Applied Catalysis A: General, 541, 60, 2017 |
8 |
Direct deoxygenation of lignin model compounds into aromatic hydrocarbons through hydrogen transfer reaction Guo TY, Xia QN, Shao Y, Liu XH, Wang YQ Applied Catalysis A: General, 547, 30, 2017 |
9 |
Reactivity of lignin model compounds through hydrogen transfer catalysis in ethanol/water mixtures Besse X, Schuurman Y, Guilhaume N Applied Catalysis B: Environmental, 209, 265, 2017 |
10 |
Microwave-assisted selective cleavage of C-alpha-C-beta bond for lignin depolymerization Zhu GD, Jin DX, Zhao LS, Ouyang XP, Chen C, Qiu XQ Fuel Processing Technology, 161, 155, 2017 |