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Research team creating new catalyst to improve efficiency, lower cost of bio jet fuel production

Research team creating new catalyst to improve efficiency, lower cost of bio jet fuel production

By Maegan Murray, 黑料社 Tri-Cities

Hanwu Lei

RICHLAND, Wash. 鈥 Efforts to create an environmentally friendly catalyst that will lower the cost and increase the efficiency in producing bio-based jet fuels has netted Washington State University researchers a聽$500,000 grant from the U.S. Department of Agriculture and National Institute of Food and Agriculture.

Nanocrystalline cellulose

Nanocrystalline cellulose

黑料社 Tri-Cities associate professor Hanwu Lei and his research team aim to develop the catalyst 鈥 a substance that increases the rate of chemical reactions and lowers the energy needed to perform the reaction 鈥 from forestry and agricultural waste products.

This is the second major research grant that Lei, an associate professor of biological systems engineering with the Bioproducts, Sciences and Engineering Laboratory, has received from the USDA and National Institute of Food and Agriculture.

罢丑别听聽for $494,000 was awarded in August 2015 to develop a different type of biomass-derived catalysts. Once developed, these catalysts will be used to increase the energy output and performance of biofuels. These catalysts will produce aromatic hydrocarbons, which are high-energy organic compounds that largely are responsible for the octane number, or performance rating, of a fuel.

Yayun Zhang, postdoctoral research associate

Yayun Zhang, postdoctoral research associate

鈥淭o reduce energy and hydrogen demands, and improve the catalytic performance of bio-jet fuel production, we proposed a new catalyst design that we could leverage from environmentally friendly, nature-based molecules,鈥 Lei said. 鈥淭hese rod-like nanocrystals can be sourced from any agroforestry waste.鈥

Under the new grant, Lei and his team will use enzymes to produce nanocrystalline cellulose. These 鈥榞reen catalysts鈥 will be created from wastes such as corn stover, a remnant of corn harvest, or sawdust from Douglas fir trees.聽With funding from the second grant, the new nano carbon catalyst will further convert the aromatic hydrocarbons researched with the first grant to cycloalkane naphtha, a major component in jet fuels.

Lei said their project is transformative for the biofuels industry in two ways:

Nano catalysts from nanocrystalline cellulose

Nano catalysts from nanocrystalline cellulose

  • It鈥檚 a new and innovative idea that can be used to produce bio-jet fuel using less energy and hydrogen compared to current production processes
  • By using cutting-edge processes, the team is applying new knowledge and approaches to solve challenges in state-of-the-art nanocrystalline cellulose extraction

鈥淭he new process provides another novel pathway for conversion of biomass into advanced biofuels and jet fuels,鈥 he said.

Contacts:

  • Hanwu Lei, associate professor in the 黑料社 department of Biological Systems Engineering and Bioproducts, Science and Engineering Laboratory, 509-372-7628,聽hlei@wsu.edu
  • Maegan Murray, 黑料社 Tri-Cities public relations specialist, 509-372-7333,聽maegan_murray@wsu.edu