June 12, 2019

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Scientists develop a chemocatalytic approach for one-pot reaction of cellulosic ethanol

One-pot production of cellulosic ethanol via tandem catalysis over multifunctional Mo/Pt/WOx catalyst Credit: WANG Aiqin
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One-pot production of cellulosic ethanol via tandem catalysis over multifunctional Mo/Pt/WOx catalyst Credit: WANG Aiqin

Scientists at the Dalian Institute of Chemical Physics (DICP) of the Chinese Academy of Sciences have developed a chemocatalytic approach to convert cellulose into ethanol in a one-pot process by using a multifunctional Mo/Pt/WOx catalyst. This approach opens up an alternative avenue for biofuel production. The findings were published in Joule.

Cellulosic ethanol is one of the most important biofuels, yet commercial production is hindered by the low efficiency and high cost of the bioconversion process.

Prof. Wang Aiqin, leader of the research group, and her colleagues developed a chemocatalytic process in which two separate reactions, cellulose conversion to and ethylene glycol conversion to ethanol, were coupled in a one-pot reaction by using a multifunctional Mo/Pt/WOx catalyst, thus achieving an ethanol yield of higher than 40 %.

While noting that the new process can still be made more efficient, Wang said that "in principle" the new process can "overcome the intrinsic limitations on ethanol concentration imposed by the bioconversion process."

"With further improvement in catalyst efficiency and robustness, this one-pot chemocatalytic approach shows great potential in the practical production of in the future," Wang said.

More information: Yanting Liu et al. Integrated Conversion of Cellulose to High-Density Aviation Fuel, Joule (2019). DOI: 10.1016/j.joule.2019.02.005

Journal information: Joule

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