Byssus is a thread-like seafood waste that has a natural high efficiency in anchoring many metal ions thanks to its richness of diverse functional groups. It also has structural stability in extreme chemical, physical and mechanical conditions. The combination of these properties, absent in other waste materials, has novelty suggested its use as matrix for water remediation. Thus, pristine byssus, upon de-metalation, was studied to remove metal ions from ideal solutions at pH 4 and 7, as model chemical systems of industrial and environmental polluted waters, respectively. The byssus matrix’s uptake of metal ions was determined by ICP-OES and its surface microstructure investigated by SEM. The results showed that the byssus matrix excellently uptakes metal ions slightly reorganizing its surface micro-structure. As example of its efficiency: 50 mg of byssus absorbed 21.7 mg·g−1 of Cd2+ from a 10 mM solution at pH 7. The adsorption isotherm models of Freundlich and Langmuir were mainly used to describe the system at pH 7 and pH 4, respectively. In conclusion, we showed that the byssus, a waste material that is an environmental issue, has the potential to purify polluted industrial and environmental waters from metal ions.

Metal ion removal using waste byssus from aquaculture / Montroni D.; Giusti G.; Simoni A.; Cau G.; Ciavatta C.; Marzadori C.; Falini G.. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - ELETTRONICO. - 10:1(2020), pp. 22222.1-22222.10. [10.1038/s41598-020-79253-7]

Metal ion removal using waste byssus from aquaculture

Montroni D.
Membro del Collaboration Group
;
Giusti G.
Membro del Collaboration Group
;
Ciavatta C.
Membro del Collaboration Group
;
Marzadori C.
Membro del Collaboration Group
;
Falini G.
Membro del Collaboration Group
2020

Abstract

Byssus is a thread-like seafood waste that has a natural high efficiency in anchoring many metal ions thanks to its richness of diverse functional groups. It also has structural stability in extreme chemical, physical and mechanical conditions. The combination of these properties, absent in other waste materials, has novelty suggested its use as matrix for water remediation. Thus, pristine byssus, upon de-metalation, was studied to remove metal ions from ideal solutions at pH 4 and 7, as model chemical systems of industrial and environmental polluted waters, respectively. The byssus matrix’s uptake of metal ions was determined by ICP-OES and its surface microstructure investigated by SEM. The results showed that the byssus matrix excellently uptakes metal ions slightly reorganizing its surface micro-structure. As example of its efficiency: 50 mg of byssus absorbed 21.7 mg·g−1 of Cd2+ from a 10 mM solution at pH 7. The adsorption isotherm models of Freundlich and Langmuir were mainly used to describe the system at pH 7 and pH 4, respectively. In conclusion, we showed that the byssus, a waste material that is an environmental issue, has the potential to purify polluted industrial and environmental waters from metal ions.
2020
Metal ion removal using waste byssus from aquaculture / Montroni D.; Giusti G.; Simoni A.; Cau G.; Ciavatta C.; Marzadori C.; Falini G.. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - ELETTRONICO. - 10:1(2020), pp. 22222.1-22222.10. [10.1038/s41598-020-79253-7]
Montroni D.; Giusti G.; Simoni A.; Cau G.; Ciavatta C.; Marzadori C.; Falini G.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/802218
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