Corn stover for biogas production: Effect of steam explosion pretreatment on the gas yields and on the biodegradation kinetics of the primary structural compounds.

Bioresour Technol

AlpS-GmbH, Centre for Climate Change Adaptation Technologies, Grabenweg 68, A-6010 Innsbruck, Austria; University of Natural Resources and Life Sciences, Vienna, Department of Sustainable Agricultural Systems, Institute of Agricultural Engineering, Konrad-Lorenz-Strasse 24, A-3430 Tulln, Austria. Electronic address:

Published: November 2017

AI Article Synopsis

  • The study investigated how steam explosion affects corn stover's chemical makeup and its potential to produce biomethane, testing temperatures from 140°C to 220°C and times from 2 to 15 minutes.
  • Findings revealed that pretreating corn stover at 160°C for 2 minutes boosted methane yield by 22%, while harsher conditions reduced hemicellulose and methane output but increased lignin levels due to pseudo-lignin formation.
  • Additionally, the anaerobic digestion tests indicated that steam explosion improves the breakdown of structural carbohydrates and reduces acid-insoluble lignin.

Article Abstract

This study evaluated the effect of steam explosion on the chemical composition and biomethane potential of corn stover using temperatures ranging between 140 and 220°C and pretreatment times ranging between 2 and 15min. Biodegradation kinetics during the anaerobic digestion of untreated and corn stover, pretreated at two different intensities, 140°C for 5min and 180°C for 5min, were studied in tandem. Results showed that pretreatment at 160°C for 2min improved the methane yield by 22%. Harsher pretreatment conditions led to lower hemicellulose contents and methane yields, as well as higher lignin contents, which may be due to the formation of pseudo-lignin. The biodegradation kinetics trial demonstrated that steam explosion enhances the degradation of structural carbohydrates and acid insoluble lignin.

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Source
http://dx.doi.org/10.1016/j.biortech.2017.08.042DOI Listing

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