Preconcentration of trace amount Cu(II) by solid-phase extraction method using activated carbon-based ion-imprinted
Kübra Turan1, Rukiye Saygili Canlidinç1, Orhan Murat Kalfa1
1Department of Chemistry, Science and Art Faculty, Kütahya Dumlupınar University, Kütahya, Turkey.
Turkish Journal of Chemistry
|December 25, 2023
Summary
A novel activated carbon-based ion-imprinted sorbent (Cu(II)-IAC) was synthesized for selective copper ion preconcentration. This method achieved high adsorption capacity and low detection limits, proving effective for environmental water analysis.
Area of Science:
- Environmental Chemistry
- Analytical Chemistry
- Materials Science
Background:
- Accurate determination of trace copper ions is crucial for environmental monitoring.
- Solid-phase extraction (SPE) offers efficient preconcentration of metal ions.
- Developing selective sorbents enhances analytical method performance.
Purpose of the Study:
- To synthesize and characterize a novel activated carbon-based ion-imprinted sorbent (Cu(II)-IAC) for selective copper ion preconcentration.
- To optimize SPE conditions for trace copper determination using the synthesized sorbent.
- To evaluate the method's accuracy and validity using real water samples and certified reference materials.
Main Methods:
- Synthesis of activated carbon-based ion-imprinted sorbent (Cu(II)-IAC).
- Solid-phase extraction (SPE) for preconcentration of copper ions.
- Flame atomic absorption spectrometry (FAAS) for copper ion determination.
- Characterization using SEM/EDX and FTIR.
- Adsorption isotherm studies (Freundlich and Langmuir).
Main Results:
- The Cu(II)-IAC sorbent exhibited a maximum adsorption capacity of 312.5 mg/g (Langmuir isotherm).
- Optimized SPE conditions yielded low limits of determination (0.038 μg/L) and quantification (0.113 μg/L).
- The method demonstrated high accuracy and validity with quantitative recoveries from tap water and certified reference materials.
Conclusions:
- The developed Cu(II)-IAC sorbent provides a selective and efficient approach for trace copper ion preconcentration.
- The SPE-FAAS method is accurate, sensitive, and suitable for determining copper in environmental water samples.
- This novel sorbent represents a significant advancement in analytical techniques for heavy metal monitoring.
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