Textile Waste-Derived Cobalt Nanoparticles Embedded in Active Carbon Fiber for Efficient Activation of Peroxymonosulfate to Remove Organic Pollutants.

Nanomaterials (Basel)

State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.

Published: October 2023

AI Article Synopsis

  • Burning and dumping textile waste harm the environment and waste resources, prompting research into sustainable alternatives.
  • Cobalt nanoparticles embedded in active carbon fiber (Co/ACF) were created from bio-based textile waste (cotton, flax, and viscose) and used to effectively degrade bisphenol A (BPA) in water.
  • The Co/ACF showed high performance, removing over 97% of BPA in 8 minutes, with low catalyst and PMS consumption, demonstrating its potential as a valuable tool for environmental cleanup.

Article Abstract

Burning and dumping textile wastes have caused serious damage to the environment and are a huge waste of resources. In this work, cobalt nanoparticles embedded in active carbon fiber (Co/ACF) were prepared from bio-based fabric wastes, including cotton, flax and viscose. The obtained Co/ACF was applied as a catalyst for the heterogeneous activation of peroxymonosulfate (PMS) to remove bisphenol A (BPA) from an aqueous solution. The results showed that cotton-, flax- and viscose-derived Co/ACF all exhibited excellent performance for BPA degradation; over ~97.0% of BPA was removed within 8 min. The Co/ACF/PMS system exhibited a wide operating pH range, with a low consumption of the catalyst (0.1 g L) and PMS (0.14 g L). The high specific surface area (342 m/g) and mesoporous structure of Co/ACF allowed the efficient adsorption of pollutants as well as provided more accessible active sites for PMS activation. This study provided an example of using textile wastes to produce a valuable and recyclable catalyst for environmental remediation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574149PMC
http://dx.doi.org/10.3390/nano13192724DOI Listing

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