Biological saccharification coupled with anaerobic digestion using corn straw for sustainable methane production

Bioresour Technol. 2023 Jan:367:128277. doi: 10.1016/j.biortech.2022.128277. Epub 2022 Nov 7.

Abstract

In this study, accumulated fermentable sugars from biosaccharified corn straw were used to generate methane through anaerobic digestion (AD). The results showed that reducing sugars from biosaccharification expanded corn straw (BECS) treated with Clostridium thermocellum XF811 accumulated with yields of 94.9 mg/g. The BECS used for AD was converted into a high methane yield (7436 mL), which was 49.3 % higher than that of expanded corn straw (ECS). High-throughput microbial analysis suggested that Methanoculleus and Methanobacterium greatly contributed to the high methane yield. Industrial experiments demonstrated that the methane production from BECS by AD was 72,955 m3, which increased by 13.2 % compared to that from ECS. Biosaccharification pretreatment accelerated ECS destruction and accumulated sugars, thereby increasing methane yields. This study provides a strategy for producing clean energy from lignocellulose biomass.

Keywords: Biosaccharification; Clostridium thermocellum XF811; Industrial-scale production; Reducing sugars.

MeSH terms

  • Anaerobiosis
  • Biofuels
  • Biomass
  • Methane*
  • Sugars
  • Zea mays*

Substances

  • Methane
  • Sugars
  • Biofuels