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Application of cellulase and hemicellulase to pure xylan, pure cellulose, and switchgrass solids from leading pretreatments. | LitMetric

AI Article Synopsis

  • Several enzymes, including Accellerase 1000 and Multifect xylanase, were tested for their efficiency in breaking down different types of cellulose and xylan derived from various pretreatments of switchgrass and other cellulose materials.
  • Significant sugar release patterns were observed, highlighting the accumulation of xylooligomers during xylan hydrolysis, which negatively impacted cellulase activity by inhibiting cellulase adsorption.
  • The effectiveness of switchgrass digestion after pretreatment varied, and while initial hydrolysis rates aligned well with cellulase adsorption for most pretreatments, further research is needed to better understand the relationship between digestibility and the physical/compositional characteristics of the pretreated materials.

Article Abstract

Accellerase 1000 cellulase, Spezyme CP cellulase, β-glucosidase, Multifect xylanase, and beta-xylosidase were evaluated for hydrolysis of pure cellulose, pure xylan, and switchgrass solids from leading pretreatments of dilute sulfuric acid, sulfur dioxide, liquid hot water, lime, soaking in aqueous ammonia, and ammonia fiber expansion. Distinctive sugar release patterns were observed from Avicel, phosphoric acid swollen cellulose (PASC), xylan, and pretreated switchgrass solids, with accumulation of significant amounts of xylooligomers during xylan hydrolysis. The strong inhibition of cellulose hydrolysis by xylooligomers could be partially attributed to the negative impact of xylooligomers on cellulase adsorption. The digestibility of pretreated switchgrass varied with pretreatment but could not be consistently correlated to xylan, lignin, or acetyl removal. Initial hydrolysis rates did correlate well with cellulase adsorption capacities for all pretreatments except lime, but more investigation is needed to relate this behavior to physical and compositional properties of pretreated switchgrass.

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Source
http://dx.doi.org/10.1016/j.biortech.2011.04.003DOI Listing

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