• Caracterización reológica de nanofluidos basados en hierro para remoción in situ de contaminantes inorgánicos 

    Crespi, Julieta; Binetti Basterrechea, Gian Franco; Quici, Natalia; 0000-0003-0535-3502 (Luis Fernandez Luco (compilador), 2022)
    Las nanopartículas de hierro cerovalente son materiales eficaces para remoción de contaminantes presentes en agua. La estabilización de suspensiones acuosas de nanopartículas empleando polielectrolitos evita su aglomeración ...
  • Iron nanoparticles based nanofluids for in situ environmental remediation 

    Crespi, Julieta; Binetti Basterrechea, Gian Franco; Finoli, Agostina Sol; Montesinos, Victor Nahuel; Quici, Natalia; 0000-0003-0535-3502 (Oscar Pagola (Asociación Argentina de Ingenieros Químicos), 2024)
    In this work, stabilization of commercial nZVI (NANOFER STAR, hereafter NSTAR, provided by NANOIRON s.r.o.) with carboxymethyl cellulose (CMC) was studied. NFs prepared with CMC (CMC-NSTAR) were compared and with NFs ...
  • Photocatalytic NOx removal with TiO2-impregnated 3D-printed PET supports 

    Binetti Basterrechea, Gian Franco; Montesinos, Victor Nahuel; Quici, Natalia; https://orcid.org/0000-0002-8057-5191 (2023-11-20)
    In this work, we investigated the photocatalytic removal of NOx using 3D-printed supports. Monolithic supports with internal channels were fabricated by Fused Modelling Deposition (FDM) using PET as the filament feedstock. ...
  • Photocatalytic NOx removal with TiO2-impregnated 3D-printed PET supports 

    Binetti Basterrechea, Gian Franco; Montesinos, Victor Nahuel; Quici, Natalia; https://orcid.org/0000-0002-8057-5191 (2023)
    In this work, the photocatalytic removal of NOx with 3D-printed supports was studied. The technology consisted of a continuous gas flow phase reactor containing a 3D printed PET support impregnated with TiO2 as photocatalyst. ...