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Green Chemistry Applications Using Complexing Materials for Water Treatment

Journal
Polymers
ISSN
2073-4360
Date issued
2025-05-25
Author(s)
Marin, Nicoleta Mirela  
National Research and Development Institute for Industrial Ecology, ECOIND  
DOI
10.3390/polym17111467
Abstract
In this study, two complexing materials were obtained for Mn2+, Zn2+, Fe3+ and Cr3+ removal from aqueous media. Synthetic cellulose powder (CELL) and cellulosic green material obtained from shredded maize stalk (MS) were modified with direct red 23 (DR 23), a complexing agent, obtaining MS-DR 23 and CELL-DR 23 using batch mode technique. Experimental parameters like interaction time, pH of aqueous solution, and initial concentration of DR 23 were studied to optimize the complexing process. The time necessary to reach equilibrium was 75 min for both cellulose materials. Also, pH 2 was the optimum adsorption value for adsorption of DR 23. The adsorption capacity for MS (56.8 mg/g) was more significant than for CELL (42 mg/g). The applicability of complexing materials was based on checking for Mn2+, Zn2+, Fe3+ and Cr3+ (Mx+) removal. The concentration of Mx+ retained on cellulosic materials was detected by the atomic adsorption spectrometry method (AAS). The complex formation between DR 23 and Mx+ was evaluated at pH 2.0, 4.0, 6.0, 8.0 and 10.0. Batch adsorption experiments were conducted to assess the adsorption of Mx+ onto MS-DR 23 and CELL-DR 23. A high level of Mx+ adsorption was reported at 4 mg/L. Reusability experiments were conducted and complexing cellulose was used for multiple cycles of Mx+ removal from aqueous media. Also, the developed complexing materials tested Mx+ removal from tannery wastewater. Based on experimental study, two complexing materials for metal removal were produced. The good adsorption and regeneration of complexing materials provide an excellent adsorbent for water purification.
Subjects

cellulosic materials

complexing process

adsorption

metal ions

reutilization

wastewater

environmental sustain...

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