Maraviglia, Chiara (2025) Exploring single-cell proteins as bio-based adsorbent for heavy metals removal from contaminated marine environments. [Tesi di dottorato]
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| Tipologia del documento: | Tesi di dottorato |
|---|---|
| Lingua: | English |
| Titolo: | Exploring single-cell proteins as bio-based adsorbent for heavy metals removal from contaminated marine environments |
| Autori: | Autore Email Maraviglia, Chiara chiara.maraviglia@unina.it |
| Data: | 11 Dicembre 2025 |
| Numero di pagine: | 174 |
| Istituzione: | Università degli Studi di Napoli Federico II |
| Dipartimento: | Ingegneria Civile, Edile e Ambientale |
| Dottorato: | Ingegneria dei sistemi civili |
| Ciclo di dottorato: | 38 |
| Coordinatore del Corso di dottorato: | nome email Papola, Andrea papola@unina.it |
| Tutor: | nome email Pirozzi, Francesco [non definito] Matassa, Silvio [non definito] Cesaro, Alessandra [non definito] |
| Data: | 11 Dicembre 2025 |
| Numero di pagine: | 174 |
| Parole chiave: | bonifica; biosorbenti; metalli pesanti |
| Settori scientifico-disciplinari del MIUR: | Area 08 - Ingegneria civile e Architettura > ICAR/03 - Ingegneria sanitaria-ambientale |
| Informazioni aggiuntive: | Ciclo di effettiva appartenenza: 38 |
| Depositato il: | 19 Dic 2025 15:49 |
| Ultima modifica: | 12 Ago 2026 05:37 |
| URI: | https://www.fedoa.unina.it/id/eprint/15994 |
Abstract
This study explores the potential of bio-based materials for the adsorption and immobilization of heavy metals in marine environments, with a focus on their application in active capping systems for the remediation of contaminated sediments. Two strategies were examined: the use of single-cell proteins (SCP) as raw adsorbents and their incorporation into electrospun cellulose acetate fibers (CASCP). Batch adsorption tests showed that SCP efficiently removed Zn and Cr from synthetic seawater, exhibiting a higher affinity for Cr and synergistic behaviour when combined with activated carbon, confirming their potential as sustainable adsorbents derived from agro-industrial by-products. To address the solubility and compositional variability of SCP, the research also developed composite electrospun fibers in which SCP were embedded within a cellulose acetate matrix. CASCP fibers demonstrated significant adsorption capacity and marked selectivity toward Pb, driven by the synergistic interaction between cellulose acetate and protein-based functional groups. Overall, the results confirm the feasibility of using single-cell proteins and polymer-protein composites as innovative tools for metal remediation in aquatic environments. Their affinity for heavy metals, environmental compatibility, and potential for integration into active capping systems highlight a viable pathway toward innovative and sustainable remediation technologies.
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