Electroflotation enables treatment of effluents generated during pyrolytic biomass revalorization

[Display omitted] •Scaled-up electroflotation reactor was employed to treat pyrolytic wastewater.•Removal performance increased at higher applied current density and solution flow.•Complete color abatement was attained after treatment.•Phenolic compounds were completely degraded.•Partial mineralizat...

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Veröffentlicht in:Separation and purification technology 2021-12, Vol.277, p.119458, Article 119458
Hauptverfasser: Nicolau dos Santos, Gláucia, José Alves Felisardo, Raul, Gomes Galrão, Diego, Paulo Rosa Barbosa, Marcus, Menezes Santos, Roberta, Francisco da Silva, Gabriel, dos Santos Freitas, Lisiane, Maria Egues Dariva, Silvia, Garcia-Segura, Sergi, Bezerra Cavalcanti, Eliane
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Sprache:eng
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Zusammenfassung:[Display omitted] •Scaled-up electroflotation reactor was employed to treat pyrolytic wastewater.•Removal performance increased at higher applied current density and solution flow.•Complete color abatement was attained after treatment.•Phenolic compounds were completely degraded.•Partial mineralization of organic load was achieved. Wastewater produced during biomass revalorization contains high organic load. Organic compounds generated during pyrolysis of biomass are hardly removed by conventional treatments. If sustainable treatment of these effluents can be enforced, biomass revalorization would be an excellent sustainable approach for energy production. This work explores the competitiveness of electroflotation as emerging electrochemically-driven separation technology using a scaled-up continuous-flow electroflotation reactor (CFER). Electrogeneration of gas bubbles drives the separation of hydrophobic organic compounds from aqueous solution. Experimental designed was employed to optimize the operational variables (i.e., applied current density and sodium chloride concentration) at different flow rates. Under conditions of 3.5 mA cm−2, 2.0 g L-1 of NaCl, and flowrate of 100 L h−1, complete decolorization of effluent was obtained with a total organic abatement of 55%. Chromatographic analyses demonstrated complete removal of phenolic compounds. These results identify electroflotation as suitable and promising pre-treatment to decrease the high-organic loads of pyrolytic wastewater.
ISSN:1383-5866
1873-3794
DOI:10.1016/j.seppur.2021.119458