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Zn2+ adsorption from wastewater using a chitosan/β-cyclodextrin-based composite membrane
Jiaxin Liu1, Siqi Wang1, Jingyi Fu1
1College of Food Science and Engineering, Changchun University, Changchun, China.
Journal of Food Biochemistry
|October 13, 2020
Summary
A novel chitosan/β-cyclodextrin polymer composite membrane effectively adsorbs zinc ions (Zn2+) from wastewater. This biomass-based material offers high adsorption efficiency and potential for cost-effective wastewater treatment applications.
Area of Science:
- Materials Science
- Environmental Chemistry
- Chemical Engineering
Background:
- Industrial wastewater frequently contains toxic heavy metal ions like zinc (Zn2+).
- Effective removal of these ions is crucial for environmental protection and human health.
- Existing treatment methods can be costly and complex.
Purpose of the Study:
- To synthesize a novel biomass-based composite membrane for zinc ion adsorption.
- To investigate the preparation conditions influencing the membrane's adsorption performance.
- To evaluate the adsorption efficiency of the developed composite membrane for Zn2+.
Main Methods:
- Synthesis of a β-cyclodextrin polymer (β-CDP) using β-cyclodextrin (β-CD) and citric acid (CA).
- Cross-linking of chitosan (CTS) with β-CDP to form a CTS/β-CDP composite membrane.
- Optimization of preparation conditions (temperature, acid concentration, solvent dosage, soaking time) in sodium hydroxide.
- Characterization using FTIR, SEM, and XRD; evaluation of adsorption capacity and rate for Zn2+.
Main Results:
- Optimal conditions yielded a maximum Zn2+ adsorption of 123.7 μg/g and an adsorption rate of 94.14%.
- The CTS/β-CDP composite membrane demonstrated superior Zn2+ adsorption compared to individual components.
- Characterization confirmed successful synthesis, increased surface roughness, amorphous structure, and improved recyclability potential.
Conclusions:
- The developed CTS/β-CDP composite membrane is highly effective for Zn2+ adsorption from simulated wastewater.
- This biomass-based material presents a promising, cost-effective solution for small-scale industrial wastewater treatment.
- The study highlights the potential for treating heavy metal ion contamination in wastewater.

