Recalcitrance and structural analysis by water-only flowthrough pretreatment of (13)C enriched corn stover stem
Marcus Foston1, Heather L Trajano2, Reichel Samuel3
1Department of Energy, Environmental & Chemical Engineering, Washington University, 1 Brookings Drive, Saint Louis, MO 63130, USA; BioEnergy Science Center, Division Biological Sciences, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Abstract:
This study presents high temperature water-only continuous flowthrough pretreatment coupled with nuclear magnetic resonance (NMR) as a promising analytical tool to examine the plant cell wall, to understand its recalcitrance (i.e., cell wall resistance to deconstruction), and to probe the chemistry occurring during batch pretreatment of biomass. (13)C-enriched corn stover stems were pretreated at 170°C for 60min with a hot-water flow rate of 20mL/min to control fractionation of the cell wall. This approach helped elucidate the nature of plant cell wall chemical recalcitrance and biomass pretreatment chemistry by tracking cell wall fragmentation as a function of time. Fractions of the reactor effluent were collected in a time-resolved fashion and characterized by various NMR techniques to determine the degree and sequence of fragments released, as well as, the chemical composition, molecular structure, and relative molecular weight of those released fragments.


