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https://hdl.handle.net/10442/19841
| Εξειδίκευση τύπου : | Άρθρο σε επιστημονικό περιοδικό |
| Τίτλος: | Dissolved oil and mercury(ii) adsorption under dynamic conditions by thiol-terminated COF-modified sponges |
| Δημιουργός/Συγγραφέας: | Bika, Panagiota Todorova, Nadia Lymperopoulou, Theopisti Tsakanika, Lamprini-Areti Gatou, Maria-Anna Sakellis, Elias Zacharopoulos, Nikolaos Psycharis, Vassilis Kalafatis, Apostolos Stergiopoulos, Thomas Tsoukleris, Dimitrios Pavlatou, Evangelia A. [EL] Δάλλας, Παναγιώτης[EN] Dallas, Panagiotis |
| Ημερομηνία: | 2026 |
| Γλώσσα: | Αγγλικά |
| ISSN: | 2633-5409 |
| DOI: | 10.1039/D6MA00413J |
| Περίληψη: | In this work, a multi-step approach for the fabrication of a unique sponge-based platform with multiple
functionalities and applications in water-remediation technologies under dynamic conditions is
presented. Commercial melamine sponges were rendered hydrophobic through decoration with vinylterminated silane and subsequently functionalized in situ through a two-step process with a thiolterminated covalent organic framework (COF). The materials were extensively characterized and applied
for the removal of dissolved oil from emulsions and mercury cations under dynamic conditions, namely
in a batch reactor under constant stirring for oil adsorption and in a flow reactor with constant metal
concentration for Hg adsorption. The chemical and structural stability of the COF networks were
evaluated via FTIR, EDS, and SEM analysis, respectively. An oil-removal study was conducted using a
100 ppm solution with a volume of 100 mL, was evaluated through UV-vis measurements and the
results demonstrated a first-order kinetics fitted with the Elovich model, which provided the initial rate
a = 0.307 mg cm3 min1 and desorption constant b = 0.323 g cm3 for the active sites of the thiolterminated sponges. The competitiveness of a series of elements against mercury adsorption was
examined through dynamic absorption experiments and inductively coupled plasma optical emission
spectrometry (ICP–OES). Mercury removal efficiencies of 96–99% were achieved over 300 minutes
of continuous flow of a 10 ppm solution, while 77–96% removal was achieved over a subsequent
90 minutes for a 100 ppm mercury solution. The characterization analysis and the environmental remediation studies between the efficiencies of COF-modified sponges without and with the –SH terminal
groups revealed the crucial role of the thiol pendant groups in the removal of both dissolved oil and
mercury. The versatility of the functional material enables its dual functionality in heavily polluted aqueous environments. |
| Τίτλος πηγής δημοσίευσης: | Materials Advances |
| Θεματική Κατηγορία: | [EL] Χημική μηχανική[EN] Chemical engineering [EL] Φυσική και θεωρητική χημεία[EN] Physical and theoretical chemistry |
| Λέξεις-Κλειδιά: | Covalent Organic Frameworks (COFs) Water remediation Mercury adsorption Oil removal Elovich model |
| Χρηματοδότης: | European Union Greek national funds |
| Χρηματοδοτικό πρόγραμμα: | ATTIKA 2014–2020 |
| Αναγνωριστικό χρηματοδοτικού προγράμματος: | 5217185 |
| Όροι και προϋποθέσεις δικαιωμάτων: | This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. |
| Ηλεκτρονική διεύθυνση στον εκδότη (link): | https://doi.org/10.1039/D6MA00413J |
| Εμφανίζεται στις συλλογές: | Ινστιτούτο Θεωρητικής και Φυσικής Χημείας (ΙΘΦΧ) - Επιστημονικό έργο
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