L. Natrayan Et Al. , "Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology," ADSORPTION SCIENCE & TECHNOLOGY , vol.2022, 2022
Natrayan, L. Et Al. 2022. Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology. ADSORPTION SCIENCE & TECHNOLOGY , vol.2022 .
Natrayan, L., Rajalakshmi, R., Singh, K. A., Patil, P. P., Veeman, D., & Paramasivam, P., (2022). Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology. ADSORPTION SCIENCE & TECHNOLOGY , vol.2022.
Natrayan, L. Et Al. "Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology," ADSORPTION SCIENCE & TECHNOLOGY , vol.2022, 2022
Natrayan, L. Et Al. "Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology." ADSORPTION SCIENCE & TECHNOLOGY , vol.2022, 2022
Natrayan, L. Et Al. (2022) . "Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology." ADSORPTION SCIENCE & TECHNOLOGY , vol.2022.
@article{article, author={L. Natrayan Et Al. }, title={Synthesis and Optimization of Cr (VI) Removal from Aqueous Solution by Activated Carbon with Magnetic Fe(3)O(4)Nanoparticles by Response Surface Methodology}, journal={ADSORPTION SCIENCE & TECHNOLOGY}, year=2022}