Eco-Friendly Synthesis, Characterization and Cytotoxicity of Zero-Valent Iron Nanoparticles from Spent Coffee Grounds

Autores

  • Filipe Fernandes REQUIMTE/LAQV, Instituto Superior de Engenharia do Porto
  • Maria Freitas REQUIMTE/LAQV, Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Rua Dr. António Bernardino de Almeida, 431, 4249-015 Porto, Portugal;
  • Cláudia Pinho REQUIMTE/LAQV, Escola Superior de Saúde, Rua Dr. António Bernardino de Almeida, 400, 4200-072 Porto;
  • Ana Isabel Oliveira REQUIMTE/LAQV, Escola Superior de Saúde, Rua Dr. António Bernardino de Almeida, 400, 4200-072 Porto;
  • Cristina Delerue-Matos REQUIMTE/LAQV, Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Rua Dr. António Bernardino de Almeida, 431, 4249-015 Porto, Portugal;
  • Clara Grosso REQUIMTE/LAQV, Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Rua Dr. António Bernardino de Almeida, 431, 4249-015 Porto, Portugal;

DOI:

https://doi.org/10.26537/prpaeh.v3i2.6146

Palavras-chave:

Spent coffee grounds, nano zero-valent iron, low-cost approach, green synthesis

Resumo

Background: The agrifood sector generates substantial waste and by-products, creating opportunities for sustainable valorization. The coffee industry, for instance, produces spent coffee grounds (SCG), which can be utilized for eco-friendly nanomaterial production[1,2].

Objectives: the valorisation of spent coffee grounds, the synthesis and characterization of zero-valent iron nanoparticles (nZVI), and the assessment of their toxicity to human cells.

Methods: nZVI, widely studied for soil and water remediation, can be synthesized using SCG hydromethanolic extracts, eliminating toxic solvents. These green nZVIs were further characterized by ultraviolet-visible spectroscopy (UV-Vis), fourier-transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS) thermogravimetric analysis (TG), dynamic light scattering (DLS), and magnetic properties. SCG extract and nZVI cytotoxicity was assessed via MTT assay in MRC-5 (human lung fibroblast) and U-87 (human glioblastoma) cell lines.

Results: HPLC-DAD analysis of SCG extract revealed caffeoylquinic acids, feruloylquinic acids, di-caffeoylquinic acids, caffeine, and trigonelline as key components. SEM and EDS analyses revealed that nZVIs presented spherical shapes with particle sizes of 83.50 ± 14.69 nm and 72.47 ± 12.56 nm for SCG40°C-nZVI and SCG60°C-nZVI, with an elemental composition of carbon (47%), oxygen (34%), and iron (16%). DLS presented relatively lower sizes but in the same order of magnitude (14.64 ± 0.76 nm and 22.68 ± 6.79 nm, with a zeta potential of -5.99 ± 1.71 mV and -6.97 ± 1.15 mV, respectively). TG confirmed EDS results, showing approximately 20% residual mass at 1400 °C. nZVI were shown to be paramagnetic, and FTIR spectra showed the peaks corresponding to the phenolic compounds being incorporated into the nZVI.

Conclusions: Compared to chemically produced nZVI, green nZVI demonstrated improved stability due to organic matter on the surface. The adoption of SCG to produce nZVI is a low-cost approach without toxic reagents and provides new understanding into waste recycling and nZVI synthesis.

Referências

[1] Franca AS, Oliveira LS. Potential Uses of Spent Coffee Grounds in the Food Industry. Foods 2022;11. https://doi.org/10.3390/foods11142064.

[2] Park MH, Lee J, Kim JY. Oxidation resistance of nanoscale zero-valent iron supported on exhausted coffee grounds. Chemosphere 2019;234:179–86. https://doi.org/10.1016/J.CHEMOSPHERE.2019.06.035.

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Publicado

28-08-2026

Como Citar

Fernandes, F., Freitas, M., Pinho, C., Oliveira, A. I., Delerue-Matos, C., & Grosso, C. (2026). Eco-Friendly Synthesis, Characterization and Cytotoxicity of Zero-Valent Iron Nanoparticles from Spent Coffee Grounds. Proceedings of Research and Practice in Allied and Environmental Health, 3(2), 45. https://doi.org/10.26537/prpaeh.v3i2.6146

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