High-Value Valorization of Agricultural Waste Biomass into Lignin-Based Magnetic Nanocomposites: Multifunctional Catalytic Systems with Near-Infrared-Responsive Liquid Marbles for Controllable and Sustainable Dye Removal

  • Chenxi Li
  • , Qian Ren
  • , Jiayi Song
  • , Xiaofeng Lyu
  • , Liqin Liu
  • , Zhengbai Cheng
  • , Hao Zhang
  • , Hongbin Liu
  • , Xingye An

Research output: Contribution to journalArticleScientificpeer-review

Abstract

The development of green, efficient, and sustainable noble metal nanocatalysts is critical for addressing industrial wastewater pollution. Herein, we report a high-value utilization strategy for agricultural waste biomass by transforming lignin nanoparticles (LNPs) derived from agricultural residues into multifunctional supports for Fe 3O 4and Pd nanoparticles. Through a two-step process─antisolvent self-assembly followed by in situ reduction─LNPs@Fe 3O 4@Pd magnetic nanocomposites are synthesized, combining lignin’s inherent eco-friendly properties with the magnetic recyclability of Fe 3O 4and the catalytic activity of Pd. The catalytic study showed that LNPs@Fe 3O 4@Pd presented excellent catalytic efficiency for the fade of methylene blue (catalytic rate constant is 5.89 min –1). The incorporation of stable superparamagnetism imparted the LNPs@Fe 3O 4@Pd with an exceptional cycling performance. Additionally, the nanocomposites exhibit robust photothermal conversion capabilities, enabling the construction of NIR laser-responsive liquid marbles via simple assembly. These liquid marbles combine magnetic separability and light-triggered controllability, offering a dynamic and reusable platform for dye wastewater treatment. Consequently, LNPs@Fe 3O 4@Pd and their liquid marble assemblies hold significant potential for industrial-scale applications in sustainable dye removal and beyond.

Original languageEnglish
Pages (from-to)29913-29923
JournalLangmuir
Volume41
Issue number44
DOIs
Publication statusPublished - 11 Nov 2025
MoE publication typeA1 Journal article-refereed

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