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King Oyster, Eryngii · 2017 · Journal Article

Medium relevance

White-rot fungi pretreatment combined with alkaline/oxidative pretreatment to improve enzymatic saccharification of industrial hemp.

Pleurotus eryngii

Gut & microbiome
SpeciesKing Oyster, Eryngii
JournalBioresource technology
Year2017

Key points

  • White-rot fungi combined with alkaline/oxidative (A/O) pretreatments of industrial hemp woody core were proposed to improve enzymatic saccharification
  • In this study, hemp woody core were treated with only white rot fungi, only A/O and combined with the two methods
  • The results showed that Pleurotus eryngii (P. eryngii) was the most effective fungus for pretreatment
  • Reducing sugars yield was 329mg/g with 30 Filter Paper Unit (FPU)/g cellulase loading when treated 21day
  • In the A/O groups, the results showed that when treated with 3% NaOH and 3% H 2 O 2, the yield of reducing sugars was 288mg/g with 30FPU/g cellulase loading
  • After combination pretreatment with P. eryngii and A/O pretreatment, the reducing sugar yield from enzymatic hydrolysis of combined sample increased 1.10-1.29-fold than that of bio-treated or A/O pretreatment sample at the same conditions, suggesting that P. eryngii combined with A/O pretreatment was an effective method to improve enzyme hydrolysis

Metadata-grounded summary

Citation abstract

White-rot fungi combined with alkaline/oxidative (A/O) pretreatments of industrial hemp woody core were proposed to improve enzymatic saccharification. In this study, hemp woody core were treated with only white rot fungi, only A/O and combined with the two methods. The results showed that Pleurotus eryngii (P. eryngii) was the most effective fungus for pretreatment. Reducing sugars yield was 329mg/g with 30 Filter Paper Unit (FPU)/g cellulase loading when treated 21day. In the A/O groups, the results showed that when treated with 3% NaOH and 3% H 2 O 2, the yield of reducing sugars was 288mg/g with 30FPU/g cellulase loading. After combination pretreatment with P. eryngii and A/O pretreatment, the reducing sugar yield from enzymatic hydrolysis of combined sample increased 1.10-1.29-fold than that of bio-treated or A/O pretreatment sample at the same conditions, suggesting that P. eryngii combined with A/O pretreatment was an effective method to improve enzyme hydrolysis.

Citation

Xie C, Gong W, Yang Q, Zhu Z, Yan L, Hu Z, et al. (2017). White-rot fungi pretreatment combined with alkaline/oxidative pretreatment to improve enzymatic saccharification of industrial hemp. Bioresource technology https://doi.org/10.1016/j.biortech.2017.06.077 PMID: 28662388

Open citation