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Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions
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M. Akdemir Et Al. , "Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions," Materials Chemistry and Physics , vol.291, 2022

Akdemir, M. Et Al. 2022. Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions. Materials Chemistry and Physics , vol.291 .

Akdemir, M., IŞIK, B., ÇAKAR, F., & CANKURTARAN, Ö., (2022). Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions. Materials Chemistry and Physics , vol.291.

Akdemir, Melike Et Al. "Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions," Materials Chemistry and Physics , vol.291, 2022

Akdemir, Melike Et Al. "Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions." Materials Chemistry and Physics , vol.291, 2022

Akdemir, M. Et Al. (2022) . "Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions." Materials Chemistry and Physics , vol.291.

@article{article, author={Melike Akdemir Et Al. }, title={Comparison of the adsorption efficiency of cationic (Crystal Violet) and anionic (Congo Red) dyes on Valeriana officinalis roots: Isotherms, kinetics, thermodynamic studies, and error functions}, journal={Materials Chemistry and Physics}, year=2022}