Catalytic depolymerization of Kraft lignin towards liquid fuels over bifunctional molybdenum oxide based supported catalyst

Fuel ◽  
2021 ◽  
Vol 306 ◽  
pp. 121599
Author(s):  
Ge Guo ◽  
Dong Chen ◽  
Tauseef Ahmed ◽  
Xiaomeng Dou ◽  
Kun Chen ◽  
...  
RSC Advances ◽  
2021 ◽  
Vol 11 (60) ◽  
pp. 37932-37941
Author(s):  
Ge Guo ◽  
Wenzhi Li ◽  
Tauseef Ahmed ◽  
DuoDuo Hu ◽  
Ru Cui ◽  
...  

The structure and synergy of NiMo@FDC catalyst have a significant effect on realizing the production of lignin-derived liquid fuels from Kraft lignin.


Fuel ◽  
2021 ◽  
Vol 283 ◽  
pp. 118801
Author(s):  
Xiaomeng Dou ◽  
Wenzhi Li ◽  
Chaofeng Zhu
Keyword(s):  

2020 ◽  
Vol 268 ◽  
pp. 118429 ◽  
Author(s):  
Xiaomeng Dou ◽  
Xiao Jiang ◽  
Wenzhi Li ◽  
Chaofeng Zhu ◽  
Qingchuan Liu ◽  
...  

2021 ◽  
pp. 131761
Author(s):  
Mingqiang Chen ◽  
Zhiyuan Tang ◽  
Yishuang Wang ◽  
Jingjing Shi ◽  
Chang Li ◽  
...  
Keyword(s):  

2021 ◽  
Vol 49 (12) ◽  
pp. 1922-1934
Author(s):  
Yi-shuang WANG ◽  
Ming-qiang CHEN ◽  
Jing-jing SHI ◽  
Jin-hui ZHANG ◽  
Chang LI ◽  
...  
Keyword(s):  

2020 ◽  
Vol 4 (3) ◽  
pp. 1332-1339 ◽  
Author(s):  
Baikai Zhang ◽  
Wenzhi Li ◽  
Xiaomeng Dou ◽  
Jindong Wang ◽  
Lele Jin ◽  
...  

A novel non-noble metal catalyst was used to convert Kraft lignin to liquid fuels.


2021 ◽  
Vol 287 ◽  
pp. 119975
Author(s):  
Xiaomeng Dou ◽  
Wenzhi Li ◽  
Chaofeng Zhu ◽  
Xiao Jiang

Author(s):  
V.A. Munoz ◽  
R.J. Mikula ◽  
C. Payette ◽  
W.W. Lam

The transformation of high molecular weight components present in heavy oils into useable liquid fuels requires their decomposition by means of a variety of processes. The low molecular weight species produced recombine under controlled conditions to generate synthetic fuels. However, an important fraction undergo further recombination into higher molecular weight components, leading to the formation of coke. The optical texture of the coke can be related to its originating components. Those with high sulfur and oxygen content tend to produce cokes with small optical texture or fine mosaic, whereas compounds with relatively high hydrogen content are likely to produce large optical texture or domains. In addition, the structure of the parent chemical components, planar or nonplanar, determines the isotropic or anisotropic character of the coke. Planar molecules have a tendency to align in an approximately parallel arrangement to initiate the formation of the nematic mesophase leading to the formation of anisotropic coke. Nonplanar highly alkylated compounds and/or those rich in polar groups form isotropic coke. The aliphatic branches produce steric hindrance to alignment, whereas the polar groups participate in cross-linking reactions.


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