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Cost of Deconstruction Depots for Diversified, Waste-Based Lignocellulosic Sugars Using Distillable Solvents

  • Nawa Raj Baral
  • , Xueli Chen
  • , Joseph M. Palasz
  • , Ramkrishna Singh
  • , Anagha Krishnamoorthy
  • , Venkataramana R. Pidatala
  • , Tyrell S.A. Lewis
  • , Chang Dou
  • , Ling Ding
  • , Hemant Choudhary
  • , Ning Sun
  • , Blake A. Simmons
  • , Corinne D. Scown

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Transitioning to a bioeconomy that makes use of low-emission and waste feedstocks requires greater flexibility to accommodate seasonal variations and mitigate long-term storage challenges, such as material loss and fire risk. To achieve this goal, biomass deconstruction technologies must efficiently handle diverse feedstocks. Here, we assess the cost of using butylamine─a distillable solvent─to deconstruct 22 different biomass feedstocks: 7 herbaceous, 9 woody, 4 food processing residues, and 2 blends. Lignocellulosic sugar production costs, based on current empirical data, range from $1.3 to 6.1/kg, suggesting that substantial improvements are required to compete with conventional sugars. The high solvent loading (850 g/kg of whole slurry) is a process bottleneck. Lowering the solvent loading to 59 g/kg of whole slurry, demonstrated in an L-scale reactor using poplar biomass, reduces the minimum sugar selling price by 33%. Solvent loading and recovery, solid loading, sugar yield, enzyme use, and delivered biomass cost all play key roles in reaching sugar production costs of $0.45–0.79/kg. Strategic feedstock blending to maximize carbohydrate content, process optimization to improve conversion efficiency, and the selection of low-cost feedstocks are important to advancing feedstock-flexible biorefineries.

Original languageEnglish
Pages (from-to)13100-13111
Number of pages12
JournalACS Sustainable Chemistry and Engineering
Volume13
Issue number32
Early online dateAug 5 2025
DOIs
StatePublished - Aug 18 2025

Keywords

  • biomass pretreatment
  • distillable solvent recovery
  • enzymatic hydrolysis
  • herbaceous biomass
  • lignocellulosic sugar
  • sugar recovery
  • woody biomass

INL Publication Number

  • INL/JOU-25-85522
  • 201601

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