Comparison of MAF-32 and a One-Pot Synthesized Superparamagnetic Iron Oxide/MAF-32 Composite for the Adsorption of Diclofenac

Author:

Ramírez Erick1,Carmona-Pérez Daniela1,Marco J. F.2ORCID,Sanchez-Lievanos Karla R.3ORCID,Sabinas-Hernández Sergio A.4ORCID,Knowles Kathryn E.3ORCID,Elizalde-González María P.1ORCID

Affiliation:

1. Centro de Química, Instituto de Ciencias, Benemérita Universidad Autónoma de Puebla, Ciudad Universitaria, Edif. IC7, Puebla Pue 72570, Mexico

2. Instituto de Química-Física Blas Cabrera, CSIC, c/Serrano, 119, 28006 Madrid, Spain

3. Department of Chemistry, University of Rochester, Rochester, NY 14627, USA

4. Instituto de Física, Benemérita Universidad Autónoma de Puebla, Ciudad Universitaria, Apartado Postal J-48, Puebla Pue 72570, Mexico

Abstract

The global presence of pharmaceutical pollutants in water sources represents a burgeoning public health concern. Recent studies underscore the urgency of addressing this class of emerging contaminants. In this context, our work focuses on synthesizing a composite material, FexOy/MAF-32, through a streamlined one-pot reaction process, as an adsorbent for diclofenac, an emerging environmental contaminant frequently found in freshwater environments and linked to potential toxicity towards several organisms such as fish and mussels. A thorough characterization was performed to elucidate the structural composition of the composite. The material presents magnetic properties attributed to its superparamagnetic behavior, which facilitates the recovery efficiency of the composite post-diclofenac adsorption. Our study further involves a comparative analysis between the FexOy/MAF-32 and a non-magnetic counterpart, comprised solely of 2-ethylimidazolate zinc polymer. This comparison aims to discern the relative advantages and disadvantages of incorporating magnetic iron oxide nanoparticles in the contaminant removal process facilitated by a coordination polymer. Our findings reveal that even a minimal incorporation of iron oxide nanoparticles substantially enhanced the composite’s overall performance in pollutant adsorption.

Funder

Consejo Nacional de Humanidades, Ciencias y Tecnologías

National Science Foundation

Publisher

MDPI AG

Reference43 articles.

1. World Health Organization (WHO) (2023, September 20). Drinking-Water. Available online: https://www.who.int/news-room/fact-sheets/detail/drinking-water.

2. Greening the Pharmacy;Orive;Science,2022

3. Titanium Dioxide (TiO2)-Based Photocatalyst Materials Activity Enhancement for Contaminants of Emerging Concern (CECs) Degradation: In the Light of Modification Strategies;Anucha;Chem. Eng. J. Adv.,2022

4. Diclofenac in the Marine Environment: A Review of Its Occurrence and Effects;Bonnefille;Mar. Pollut. Bull.,2018

5. Diclofenac and Its Transformation Products: Environmental Occurrence and Toxicity—A Review;Lonappan;Environ. Int.,2016

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