D. Ozdes Et Al. , "Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach," Journal of Analytical Science and Technology , vol.13, no.1, 2022
Ozdes, D. Et Al. 2022. Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach. Journal of Analytical Science and Technology , vol.13, no.1 .
Ozdes, D., Tilki, N., Seker, S., & DURAN, C., (2022). Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach. Journal of Analytical Science and Technology , vol.13, no.1.
Ozdes, Duygu Et Al. "Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach," Journal of Analytical Science and Technology , vol.13, no.1, 2022
Ozdes, Duygu Et Al. "Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach." Journal of Analytical Science and Technology , vol.13, no.1, 2022
Ozdes, D. Et Al. (2022) . "Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach." Journal of Analytical Science and Technology , vol.13, no.1.
@article{article, author={Duygu Ozdes Et Al. }, title={Insights into brewed tea waste as a green and low-priced adsorbent for solid-phase extraction of Cd(II) ions: isotherm, kinetic, and artificial neural network approach}, journal={Journal of Analytical Science and Technology}, year=2022}