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Deacetylation and Mechanical Refining Pathway for the Bioconversion of Sugarcane Bagasse: Article No. 73

  • Fernando Roberto Paz Cedeno
  • , Gustavo Gomes
  • , Jessica Silva
  • , Fabricia Menezes
  • , Viviane Nascimento
  • , George Rocha
  • , Renata Rodriguez
  • , Xiaowen Chen
  • , Antonio Bonomi
  • , Carlos Driemeier
  • Brazilian Center for Research in Energy & Materials
  • Federal University of Alfenas
  • University of Minnesota

Research output: Contribution to journalArticlepeer-review

Abstract

Advancing lignocellulose biorefining is imperative for the deployment of cellulosic (2G) biofuels. This work investigates the tailoring of the alkaline deacetylation and mechanical refining (DMR) pathway for the bioconversion of sugarcane bagasse. Experiments are conducted at laboratory and pilot scales, varying the pretreatment conditions (70-92 degrees C; 48-100 gNaOH/kg) and the mechanical refining technologies (PFI and disk refining). The pretreatments selectively solubilize acetyl groups (> 86%) and lignin (10-63%) while mostly preserving structural carbohydrates in the solid phase. Enzymatic hydrolysis generates hydrolysates of clean sugars (glucose and xylose), with sugar yields increasing up to 81% for glucose and 89% for xylose in response to delignification and mechanical refining. Biochemical methane potential assays reveal specific methane productions of up to 568 NmL CH4 gVS-1 for alkaline liquor monodigestion and 344 NmL CH4 gVS-1 for co-digestion with sugarcane vinasse from the conventional (1G) sugarcane ethanol, indicating a strong potential for bioenergy recovery from this process stream. Synergies are identified in integrating 1G ethanol, 2GDMR processing of bagasse, and anaerobic co-digestion of 1G vinasse and 2GDMR alkaline liquor. This technology enables sugarcane biorefineries to enhance the co-production of ethanol, methane, and concentrated streams of CO2.
Original languageAmerican English
Number of pages14
JournalBioenergy Research
Volume19
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5100-100644

Keywords

  • alkaline pretreatment
  • biofuel
  • biogas
  • biomass

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