Remediation and Upcycling of Microplastics by Algae with Wastewater Nutrient Removal and Bioproduction Potential: Article No. 11570

  • Bin Long
  • , Qiang Li
  • , Cheng Hu
  • , Yayun Chen
  • , Yining Zeng
  • , Weiwei Li
  • , Sydney Pearson
  • , Mengqiao Liu
  • , Chengcheng Fei
  • , Joshua Yuan
  • , Susie Dai

Research output: Contribution to journalArticlepeer-review

Abstract

Microplastics have emerged as major environmental hazards that require efficient, cost-effective, and sustainable remediation technologies. This study introduces an integrative platform for the remediation and upcycling of microplastics by algae, while synergizing with plastic upcycling, wastewater treatment, and algal production. The strategy employs a mechanism that enhances hydrophobic interactions between the cell surface and microplastics, enabling rapid aggregation and removal. The platform achieves a superior microplastic removal efficiency of 91.4% within 1 hour, with a capacity of 0.1-gram microplastic per gram of biomass. Furthermore, the study demonstrates an upcycling strategy that converts microplastics-enriched cyanobacteria into plastic composites with unique performance. This work also integrates microplastic removal with cyanobacterial bioproduction and wastewater treatment, offering an approach that synergizes remediation with these value-added processes. Ultimately, this platform provides a viable and sustainable pathway to address microplastic pollution by creating value through plastic upcycling, wastewater nutrient removal, and CO2-based bioproduction.
Original languageAmerican English
Number of pages14
JournalNature Communications
Volume16
DOIs
StatePublished - 2025

NLR Publication Number

  • NLR/JA-2800-99148

Keywords

  • algae
  • microplastics
  • upcycling

Fingerprint

Dive into the research topics of 'Remediation and Upcycling of Microplastics by Algae with Wastewater Nutrient Removal and Bioproduction Potential: Article No. 11570'. Together they form a unique fingerprint.

Cite this