Diverse lignocellulosic feedstocks can achieve high field‐scale ethanol yields while providing flexibility for the biorefinery and landscape‐level environmental benefits

Author:

Zhang Yaoping1,Oates Lawrence G.12ORCID,Serate Jose1,Xie Dan1ORCID,Pohlmann Edward1,Bukhman Yury V.1,Karlen Steven D.1,Young Megan K.1,Higbee Alan1ORCID,Eilert Dustin1,Sanford Gregg R.12,Piotrowski Jeff S.1,Cavalier David3,Ralph John14,Coon Joshua J.156,Sato Trey K.1ORCID,Ong Rebecca G.78ORCID

Affiliation:

1. DOE‐Great Lakes Bioenergy Research Center University of Wisconsin‐Madison Madison Wisconsin

2. Department of Agronomy University of Wisconsin‐Madison Madison Wisconsin

3. DOE‐Great Lakes Bioenergy Research Center Michigan State University East Lansing Michigan

4. Department of Biochemistry University of Wisconsin‐Madison Madison Wisconsin

5. Department of Chemistry University of Wisconsin‐Madison Madison Wisconsin

6. Genome Center of Wisconsin University of Wisconsin‐Madison Madison Wisconsin

7. Department of Chemical Engineering Michigan Technological University Houghton Michigan

8. DOE‐Great Lakes Bioenergy Research Center Michigan Technological University Houghton Michigan

Funder

U.S. Department of Energy

Office of Science

Biological and Environmental Research

Office of Energy Efficiency and Renewable Energy

Publisher

Wiley

Subject

Waste Management and Disposal,Agronomy and Crop Science,Renewable Energy, Sustainability and the Environment,Forestry

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