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King Oyster, Eryngii · 2011 · Journal Article

Medium relevance

Bioethanol Production by Pichia stipitis from Enzymatic Hydrolysates of Corncob-based Spent Mushroom Substrate

Pleurotus eryngii

Metabolic health
SpeciesKing Oyster, Eryngii
JournalFood science and technology research
Year2011

Key points

  • The potential of spent mushroom substrate after cultivation of Pleurotus eryngii as a biomass resource for bioethanol production was investigated
  • Materials were pretreated by ball milling for 1 h, and enzymatic hydrolysis was then carried out
  • Glucose, xylose, arabinose and galactose were detected in enzymatic hydrolysates, and a > 59.0% yield of total sugars was obtained, even at a substrate concentration of 30% (w/v)
  • Enzymatic hydrolysates were fermented using Pichia stipitis
  • When enzymatic hydrolysates obtained from a 20% (w/v) substrate concentration were fermented, the maximum ethanol concentration was 17.7 g l -1 and ethanol yield was 67.0%
  • These results indicate that corncob-based spent mushroom substrate can be used as a raw material for bioethanol production

From the paper

Abstract

The potential of spent mushroom substrate after cultivation of Pleurotus eryngii as a biomass resource for bioethanol production was investigated. Materials were pretreated by ball milling for 1 h, and enzymatic hydrolysis was then carried out. Glucose, xylose, arabinose and galactose were detected in enzymatic hydrolysates, and a > 59.0% yield of total sugars was obtained, even at a substrate concentration of 30% (w/v). Enzymatic hydrolysates were fermented using Pichia stipitis. When enzymatic hydrolysates obtained from a 20% (w/v) substrate concentration were fermented, the maximum ethanol concentration was 17.7 g l -1 and ethanol yield was 67.0%. These results indicate that corncob-based spent mushroom substrate can be used as a raw material for bioethanol production.

Citation

Oguri E, Takimura O, Matsushika A, Inoue H, Sawayama S (2011). Bioethanol Production by Pichia stipitis from Enzymatic Hydrolysates of Corncob-based Spent Mushroom Substrate. Food science and technology research https://doi.org/10.3136/fstr.17.267

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