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Waste to Worth: A Circular Solution Through Lignin Engineering

  • Aleesha Nabhai
  • , Zhengbai Li
  • , Ilma Mainardi
  • , Qaseem Haider
  • , Yun Wang
  • , Jinxia Yuan
  • , Xiaowen Chen
  • , Xianzhi Meng
  • , Arthur Ragauskas
  • , Xuewen Wang
  • , James Springstead
  • , Qingliu Wu
  • , Jinghao Li
  • Western Michigan University
  • University of Minnesota
  • Oak Ridge National Laboratory
  • University of Tennessee, Knoxville
  • Washington University St. Louis

Research output: Contribution to journalArticlepeer-review

1 Scopus Citations

Abstract

The inefficient management of industrial waste threatens environmental sustainability, necessitating scalable resource recovery solutions. To address these challenges, we propose a novel and sustainable in situ one-step strategy for the simultaneous recovery and functionalization of lignin from industrial black liquor, using a sustainable organic acid system assisted by choline chloride. The functionalized lignin adsorbent material (FLAM) exhibited superior adsorption performance, effectively treating animal feedlot wastewater to recover ammonia. The ammonia enriched FLAM was subsequently repurposed as a slow-release fertilizer, enhancing plant growth and demonstrating a closed-loop pathway for waste valorization and nutrient recycling. Methylene blue was used as a model cationic compound to simulate the adsorption behavior and interactions. FLAM achieved a high adsorption capacity of 725.98 mg g-1 across a broad pH range, significantly outperforming commercial kraft lignin. This sustainable approach advances circular economy principles by integrating remediation and resource recovery, offering a scalable, eco-friendly solution for environmental applications.
Original languageAmerican English
Pages (from-to)7130-7145
Number of pages16
JournalGreen Chemistry
Volume28
Issue number16
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5100-100401

Keywords

  • functionalized lignin adsorbent material
  • in situ
  • waste management

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