Cellulose Nanofibrils-Reinforced Pectin Membranes for the Adsorption of Cationic Dyes from a Model Solution

Author:

Ojstršek Alenka1ORCID,Gorgieva Selestina1ORCID

Affiliation:

1. Institute of Engineering Materials and Design, Faculty of Mechanical Engineering, University of Maribor, Smetanova 17, 2000 Maribor, Slovenia

Abstract

In the presented research, a facile, one-step method for the fabrication of cellulose nanofibrils/pectin (CNFs/PC) membranes is described, which were tested further for their ability to remove cationic dyes from the prepared model solutions. For this purpose, ten membranes were prepared with different quantities of CNFs and PC with/without citric acid (CA) or CaCl2 as mediated crosslinking agents, and they were characterised comprehensively in terms of their physical, chemical, and hydrophilic properties. All the prepared CNFs/PC membranes were hydrophilic with a Water Contact Angle (WCA) from 51.23° (without crosslinker) up to 78.30° (CaCl2) and swelling of up to 485% (without crosslinker), up to 437% (CaCl2) and up to 270% (CA). The stability of membranes was decreased with the increase in PC; thus, only four membranes (M1, M2, M3 and M5) were stable enough in water after 24 h, and these were additionally applied in the adsorption trials, using two structurally different cationic dyes, i.e., C.I. Basic Yellow 28 (BY28) and C.I. Basic Blue 22 (BB22), in four concentrations. The highest total surface charge of M3 (2.83 mmol/g) as compared to the other membranes influenced the maximal removal efficiency of both dyes, up to 37% (BY28) and up to 71% (BB22), depending on the initial dye concentration. The final characteristics of the membranes and, consequently, the dye’s absorption ability could be tuned easily by changing the ratio between the CNFs and PC, as well as the type and amount of crosslinker.

Funder

Slovenian Research and Innovation Agency

Publisher

MDPI AG

Reference31 articles.

1. Layered compact textiles applied in fixed-bed column as filters for dye-rich textile wastewaters treatment—A case study;Fakin;Des. Wat. Treat.,2013

2. Effective adsorption of cationic dyes by lignin sulfonate polymer based on simple emulsion polymerization: Isotherm and kinetic studies;Tang;RSC Adv.,2015

3. (2024, January 11). Materials Market Report. Available online: https://textileexchange.org/app/uploads/2023/11/Materials-Market-Report-2023.pdf.

4. (2024, January 11). Market Research Report. Available online: https://www.marketresearchfuture.com/reports/acrylic-fiber-market-2125.

5. Ojstršek, A., Gorjanc, N., and Fakin, D. (2021). Reduction of Lead and Antimony Ions from the Crystal Glass Wastewaters Utilising Adsorption. Sustainability, 13.

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