Abstract
Getting over recalcitrance of lignocellulose is effective way to fuel production from lignocellulosic biomass. In current work, different pretreatments were applied to enhance the digestibility of corn stover (CS). Results showed that steam explosion (SE)-treated CS produced maximal methane yield (223.2mL/gvs) at 1.2MPa for 10min, which was 55.2% more than untreated (143.8mL/gvs). Whereas 1.5% KOH-treated CS produced maximum methane yield of 208.6mL/gvs, and significantly (α<0.05) improved 45.1% with respect to untreated. Sequent pretreatment of potassium hydroxide and steam explosion (SPPE) (1.5% KOH-1.2MPa, 10min) achieved a very significant (α<0.01) improvement (80.0%) of methane yield (258.8mL/gvs) compared with untreated CS. Methane production could be well explained by the first-order and modified Gompertz models. Besides, SEM, FTIR, and XRD analyses validated structural changes of CS after SPPE. SPPE might be a promising method to pretreat CS in the future AD industry.
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