supercritical ethanol
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Fuel ◽  
2022 ◽  
Vol 315 ◽  
pp. 123249
Author(s):  
Chang Li ◽  
Jingjing Shi ◽  
Ke Zhang ◽  
Yishuang Wang ◽  
Zhiyuan Tang ◽  
...  

2022 ◽  
Vol 157 ◽  
pp. 106330
Author(s):  
Guojun Hao ◽  
Hongying Liu ◽  
Zhibing Chang ◽  
Kechen Song ◽  
Xin Yang ◽  
...  

Fuel ◽  
2021 ◽  
pp. 122616
Author(s):  
Chuxuan Zhang ◽  
Xun Gong ◽  
Yang Peng ◽  
Tianyi Feng ◽  
Xiaomin Li

Fuel ◽  
2021 ◽  
Vol 303 ◽  
pp. 121332
Author(s):  
Mingqiang Chen ◽  
Jingjing Shi ◽  
Yishuang Wang ◽  
Zhiyuan Tang ◽  
Zhonglian Yang ◽  
...  

Author(s):  
Erika Bartolomei ◽  
Yann Le Brech ◽  
Roger Gadiou ◽  
Frédérique Bertaud ◽  
Sébastien Leclerc ◽  
...  

Catalysts ◽  
2021 ◽  
Vol 11 (8) ◽  
pp. 970
Author(s):  
Aleksandr S. Kazachenko ◽  
Angelina V. Miroshnikova ◽  
Valery E. Tarabanko ◽  
Andrey M. Skripnikov ◽  
Yuriy N. Malyar ◽  
...  

Thermal conversion of flax shives was studied in sub- and supercritical ethanol medium at 225 and 250 °C in the presence of the bifunctional catalyst 3% Ru/C. The use of 3% Ru/C catalyst in the process of thermal conversion of flax shives in supercritical ethanol was found to increase the conversion of the shives by 27% and the yield of liquid products by 10%. The use of 3% Ru/C catalyst in sub- and supercritical ethanol led to the destruction of both lignin and cellulose. The degree of delignification in the non-catalytic thermal conversion increased upon transition from subcritical (225 °C) to supercritical (250 °C) conditions. Main monomeric products of the thermal conversion process were guaiacylpropene or guaiacylpropane depending on the process temperature. In the presence of Ru/C catalyst, the molecular weight distribution was shifted towards an increase in the content of monomeric compounds in the liquid products.


Chemosphere ◽  
2021 ◽  
pp. 131491
Author(s):  
Dhakshinamoorthy Gnana Prakash ◽  
Kannappan Panchamoorthy Gopinath ◽  
Viswanathan Vinatha ◽  
Suresh Shreya ◽  
Ramachandran Sivaramakrishnan ◽  
...  

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