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The increasing contamination of water bodies with toxic dyes, particularly methyl orange (MO), has become a significant environmental challenge. In this study, we present an adsorbent, zinc ferrite-loaded hydroxyethyl cellulose/chitosan film (ZnFe₂O₄@HEC/Cs), designed for the efficient removal of MO dye from aqueous solutions. These composites combine the magnetic properties of ZnFe₂O₄ with the biocompatibility of HEC and Cs, forming a robust material with excellent MO dye adsorption capabilities. For comparison, three different concentrations of ZnFe₂O₄ (0.1, 0.2, and 0.3 g) were added to the HEC/Cs solution prior to the film preparations. These prepared films that loaded with the different concentrations of ZnFe₂O₄ were nominated as 1ZnFe₂O₄@HEC/Cs, 2ZnFe₂O₄@HEC/Cs, and 3ZnFe₂O₄@HEC/Cs films and compared with the films (HEC/Cs) that prepared without ZnFe₂O₄ loading. The prepared films (1ZnFe₂O₄@HEC/Cs, 2ZnFe₂O₄@HEC/Cs, and 3ZnFe₂O₄@HEC/Cs) exhibited rough morphological surface. The influence of various parameters such as pH, dye concentration, adsorbent dose, and contact time were systematically explored to optimize the adsorption conditions. Compared to pure HEC/Cs (199 mg/g), the adsorption power of MO dye sequestration in the presence of 3ZnFe₂O₄@HEC/Cs was 288 mg/g. The experimental results are described by chemical kinetics with a pseudo-second order. The Freundlich and Langmuir adsorption models were employed to analyze the experimental results indicating multilayer adsorption of MO dye. The results reveal that the ZnFe₂O₄@HEC/Cs composite demonstrates a rapid adsorption rate and high dye removal efficiency, with the ability to maintain its performance even in the presence of common contaminants. Moreover, the composite can be easily regenerated, offering a sustainable solution for dye removal in wastewater treatment. This study provides valuable insights into designing advanced, environmentally friendly adsorbents to remove dyes from polluted water. The exceptional performance and reusability of ZnFe₂O₄@HEC/Cs films highlight their potential for large-scale wastewater treatment applications.
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http://dx.doi.org/10.1016/j.ijbiomac.2025.142232 | DOI Listing |
Int J Biol Macromol
September 2025
Department of Chemistry, Faculty of Science, University of Tabuk, Tabuk 71491, Saudi Arabia.
Artif Cells Nanomed Biotechnol
December 2025
School of Materials Science and Engineering, South China University of Technology, Guangzhou, China.
Recent advances in photothermal therapy (PTT) using nanoparticles (NPs), particularly benzothiadiazole-based agents, offer promising strategies for targeted cancer treatment with enhanced efficacy and reduced side effects. However, challenges such as poor stability and limited retention at the tumour site persist, necessitating the development of advanced delivery systems to optimize the effectiveness of these NPs in clinical applications. In this study, we synthesized a benzothiadiazole-based photothermal small molecule, BPD-BBTD NPs, with a median particle size of 116 nm.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Beijing Key Laboratory of Plant Resources Research and Development, School of Light Industry Science and Engineering, Beijing Technology and Business University, Beijing 100048, China. Electronic address:
This study reports a facial approach to fabricate hydrogel membranes with tailored application in topical acne therapy by incorporating tea tree oil (TTO)-loaded Pickering emulsion stabilized by dodecyl triethoxysilane-modified palygorskite in chitosan (CS)/hydroxyethyl cellulose (HEC) polymer matrix. This adding Pickering encapsulated TTO strategy endowed the CS/HEC membrane with increased membrane thickness, mechanical strength, surface hydrophilicity and body fluid absorbability as well as a decreased transparency, all of which could be tailored by adjusting the content of TTO Pickering emulsion in the polymer matrix during preparation. Compared with the TTO directly added membrane, the composite membranes possessed well-distributed small droplets of TTO in the continuous phase of membrane matrix, which can be slowly released at skin physicochemical conditions within 10 h, providing favorable antioxidant scavenging of DPPH and potent bacterial inhibitory effects against Propionibacterium acnes and Staphylococcus aureus.
View Article and Find Full Text PDFCarbohydr Polym
June 2025
Institute of Applied Synthetic Chemistry, TU Wien, Vienna, Austria.
Driven by the quest for greener flocculants, this study explores how cationized polysaccharides can enhance coagulation-flocculation efficiency, filling a gap in systematic comparative analyses. We introduce here a flocculation score which provides a robust framework for flocculation evaluation and comparison. Starch, chitosan, inulin, guar gum, pullulan, and hydroxyethyl cellulose were tested, both unmodified and modified with quaternary ammonium compounds.
View Article and Find Full Text PDFInt J Biol Macromol
May 2025
Department of Chemistry, Faculty of Science, University of Tabuk, Tabuk 71491, Saudi Arabia.
The increasing contamination of water bodies with toxic dyes, particularly methyl orange (MO), has become a significant environmental challenge. In this study, we present an adsorbent, zinc ferrite-loaded hydroxyethyl cellulose/chitosan film (ZnFe₂O₄@HEC/Cs), designed for the efficient removal of MO dye from aqueous solutions. These composites combine the magnetic properties of ZnFe₂O₄ with the biocompatibility of HEC and Cs, forming a robust material with excellent MO dye adsorption capabilities.
View Article and Find Full Text PDF