E. T. Irmak Et Al. , "Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions," In Nanotechnology for Sustainable Water Resources , New-Jersey: John Wiley & Sons, West Sussex, UK , 2018, pp.501-522.
Irmak, E. T. Et Al. Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions. 2018. In Nanotechnology for Sustainable Water Resources , John Wiley & Sons, West Sussex, UK , New-Jersey, 501-522.
Irmak, E. T., Türkmen, D., Akgönüllü, S., Qureshii, T., & Denizli, A., (2018). Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions. Nanotechnology for Sustainable Water Resources (pp.501-522), New-Jersey: John Wiley & Sons, West Sussex, UK .
Irmak, Emel Et Al. "Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions." In Nanotechnology for Sustainable Water Resources , 501-522. New-Jersey: John Wiley & Sons, West Sussex, UK , 2018
Irmak, Emel T. Et Al. "Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions." Nanotechnology for Sustainable Water Resources , John Wiley & Sons, West Sussex, UK , 2018, pp.501-522.
Irmak, E. T. Et Al. (2018) "Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions", Nanotechnology for Sustainable Water Resources . New-Jersey: John Wiley & Sons, West Sussex, UK .
@bookchapter{bookchapter, author ={Emel Tamahkar Irmak Et Al. }, chaptertitle={Bacterial cellulose nanofibers for efficient removal of Hg2+ from aqueous solutions}, booktitle={ Nanotechnology for Sustainable Water Resources}, publisher={John Wiley & Sons, West Sussex, UK }, city={New-Jersey},year={2018} }