Detalhes do Documento

Ionic and non-ionic organic porous adsorbents for the removal of chloramphenicol and ciprofloxacin from water

Autor(es): Freitas, Sunny K.S. ; Correa, Letícia R.C. ; da Silva, Verônica D. ; Esteves, Pierre M. ; Branco, Luis C.

Data: 2025

Identificador Persistente: http://hdl.handle.net/10362/186777

Origem: Repositório Institucional da UNL

Projeto/bolsa: info:eu-repo/grantAgreement/FCT/3599-PPCDT/PTDC%2FEAM-AMB%2F2023%2F2021/PT; info:eu-repo/grantAgreement/FCT/Concurso de Projetos de I&D em Todos os Domínios Científicos - 2022/2022.07089.PTDC/PT;

Assunto(s): Chemistry (miscellaneous); Analytical Chemistry; Electrochemistry; Organic Chemistry; Chemistry (miscellaneous); Chemistry (miscellaneous); Analytical Chemistry; Analytical Chemistry; Electrochemistry; Electrochemistry; Organic Chemistry; Organic Chemistry


Descrição

The authors acknowledge the CAPES, CNPq, FAPERJ, and FCT-MCTES for financial support and scholarships. Dr Fabio Henrique (UFRJ) is acknowledged for the computed geometries of the COFs at the DFT level. Publisher Copyright: © 2025 The Author(s). Published by the Royal Society of Chemistry

Nanoporous organic materials with varying pore sizes were utilized to remove antibiotics from surface and groundwater. These adsorbents belong to the group of Covalent Organic Frameworks (COFs), known for their high stability, porosity, and large surface area. Given their characteristics, which are well-suited for adsorption applications, these materials demonstrated relatively high capture capacities for emerging organic pollutants such as chloramphenicol (182 mg g−1 for RIO-55) and ciprofloxacin (79 mg g−1 for RIO-55) compared to other organic porous adsorbents. To conduct a comparative study on adsorption efficiency, both ionic and non-ionic materials were selected. Some ionic materials exhibited greater affinity for pharmaceutical compounds due to different adsorption mechanisms. Additionally, tests using a real water sample from the Tagus River confirmed the materials' removal efficiency. A correlation was observed between the maximum adsorption capacity and the pore width of the COFs, suggesting that better fitting of these adsorbates into mesopores enhances adsorption performance.

Tipo de Documento Artigo científico
Idioma Inglês
Contribuidor(es) LAQV@REQUIMTE; Faculdade de Ciências e Tecnologia (FCT); RUN
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