Biotechnology for Biofuels · 2014 · 63 citations · 42 references
We were able to identify that sugarcane bagasse modification under acid and basic pretreatments change the water accessibility to different sites of the sample, associated with both bagasse structure (lumens and cell walls) and hydrophilicity (lignin removal). Furthermore, we show that the substrates with increased water accessibility correspond to those with higher hydrolysis yields and that there is a correlation between experimentally NMR-measured transverse relaxation times and the efficiency of enzymatic hydrolysis. This might allow for semiquantitative estimates of the enzymatic hydrolysis efficiency of biomass samples using inexpensive and non-destructive low-field (1)H NMR relaxometry methods.
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Biomass Recalcitrance: Engineering Plants and Enzymes for Biofuels Production
Michael E. Himmel, Shi-You Ding, David K. Johnson et al. · Science · 2007 · 4.5K citations
Biomass Utilization, Biomass Conversion, Engineering Plants +14