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A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics
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A. Bahçıvan Et Al. , "A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics," Journal of Nanoparticle Research , vol.27, no.3, 2025

Bahçıvan, A. Et Al. 2025. A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics. Journal of Nanoparticle Research , vol.27, no.3 .

Bahçıvan, A., Atakol, A., Zaman, B. T., DALGIÇ BOZYİĞİT, G., DEMİR, S., & BAKIRDERE, S., (2025). A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics. Journal of Nanoparticle Research , vol.27, no.3.

Bahçıvan, Aleyna Et Al. "A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics," Journal of Nanoparticle Research , vol.27, no.3, 2025

Bahçıvan, Aleyna Et Al. "A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics." Journal of Nanoparticle Research , vol.27, no.3, 2025

Bahçıvan, A. Et Al. (2025) . "A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics." Journal of Nanoparticle Research , vol.27, no.3.

@article{article, author={Aleyna Bahçıvan Et Al. }, title={A quick and effective approach for removing Ni(II) from paper mill wastewater with magnesium ferrite nanoadsorbent: method development, reusability, isotherm models, and adsorption kinetics}, journal={Journal of Nanoparticle Research}, year=2025}