Scinovex
articleTop 10% cited

Effect of xylan and lignin removal by batch and flowthrough pretreatment on the enzymatic digestibility of corn stover cellulose

Biotechnology and Bioengineering · 2004 · Vol. 86(1) · pp. 88–98
Bin YangCharles E. Wyman

Abstract

Compared with batch systems, flowthrough and countercurrent reactors have important potential advantages for pretreating cellulosic biomass, including higher hemicellulose sugar yields, enhanced cellulose digestibility, and reduced chemical additions. Unfortunately, they suffer from high water and energy use. To better understand these trade-offs, comparative data are reported on xylan and lignin removal and enzymatic digestibility of cellulose for corn stover pretreated in batch and flowthrough reactors over a range of flow rates between 160 degrees and 220 degrees C, with water only and also with 0.1 wt% sulfuric acid. Increasing flow with just water enhanced the xylan dissolution rate, more than doubled total lignin removal, and increased cellulose digestibility. Furthermore, adding dilute sulfuric acid increased the rate of xylan removal for both batch and flowthrough systems. Interestingly, adding acid also increased the lignin removal rate with flow, but less lignin was left in solution when acid was added in batch. Although the enzymatic hydrolysis of pretreated cellulose was related to xylan removal, as others have shown, the digestibility was much better for flowthrough compared with batch systems, for the same degree of xylan removal. Cellulose digestibility for flowthrough reactors was related to lignin removal as well. These results suggest that altering lignin also affects the enzymatic digestibility of corn stover.

Biofuel production and bioconversionAdvanced Cellulose Research StudiesCatalysis for Biomass ConversionCelluloseCorn stoverChemistryHemicelluloseLigninXylanSulfuric acidEnzymatic hydrolysisCellulosic ethanolHydrolysis

MeSH terms

beta-GlucosidaseCellulaseCelluloseZea maysEnzyme ActivationHydrolysisLigninProtonsSubstrate SpecificityTemperatureXylansBioreactors
Citations
677
FWCI
10.32
field-weighted impact
References
40
Percentile
99%
vs. same field & year
Citations per year
References
Measurement of cellulase activities
Pure and Applied Chemistry · 1987 · 6,154 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.