Nathan S. Mosier

Affiliations: 
Agricultural and Biological Engineering Purdue University, West Lafayette, IN, United States 
Area:
Agricultural Engineering, Energy, Chemical Engineering
Website:
https://engineering.purdue.edu/ABE/people/ptProfile?resource_id=7208
Google:
"Nathan Mosier"
Bio:

https://engineering.purdue.edu/ABE/research/Faculty%20CV/mosier1pg

Parents

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Michael R. Ladisch grad student 2003 Purdue
 (Enzyme mimetics for cellulose hydrolysis.)

Children

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Yulin Lu grad student 2008 Purdue
Arun Athmanathan grad student 2013 Purdue
Isaac R. Emery grad student 2013 Purdue
BETA: Related publications

Publications

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Chen X, Freitas Dos Santos AC, Gutierrez DMR, et al. (2023) Effect of pelleting on the enzymatic digestibility of corn stover. Bioresource Technology. 129338
Serra LA, da Silva Cruz RG, Gutierrez DMR, et al. (2022) Screening Method for Enzyme-based Liquefaction of Corn Stover Pellets at High Solids. Bioresource Technology. 127999
Szeto R, Overton JC, Dos Santos AF, et al. (2021) Rheology of Enzyme Liquefied Corn Stover Slurries: The Effect of Solids Concentration on Yielding and Flow Behavior. Biotechnology Progress. e3216
Dos Santos ACF, Overton JC, Szeto R, et al. (2021) New strategy for liquefying corn stover pellets. Bioresource Technology. 341: 125773
Yang H, Zhang X, Luo H, et al. (2019) Overcoming cellulose recalcitrance in woody biomass for the lignin-first biorefinery. Biotechnology For Biofuels. 12: 171
Overton JC, Engelberth AS, Mosier NS. (2019) Single-Vessel Synthesis of 5-Hydroxymethylfurfural (HMF) from Milled Corn Acs Sustainable Chemistry & Engineering. 8: 18-21
Overton JC, Zhu X, Mosier NS. (2019) Molecular Dynamics Simulations and Experimental Verification to Determine Mechanism of Cosolvents on Increased 5-Hydroxymethylfurfural Yield from Glucose Acs Sustainable Chemistry & Engineering. 7: 12997-13003
Hooker CA, Hillman ET, Overton JC, et al. (2018) Hydrolysis of untreated lignocellulosic feedstock is independent of S-lignin composition in newly classified anaerobic fungal isolate, sp. UH3-1. Biotechnology For Biofuels. 11: 293
Zhang X, Qu T, Mosier NS, et al. (2018) Cellulose modification by recyclable swelling solvents. Biotechnology For Biofuels. 11: 191
Shiga TM, Xiao W, Yang H, et al. (2017) Enhanced rates of enzymatic saccharification and catalytic synthesis of biofuel substrates in gelatinized cellulose generated by trifluoroacetic acid. Biotechnology For Biofuels. 10: 310
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