INFORMAZIONI SU QUESTO ARTICOLO

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1. K. M. LEE, S. B. Abdul HAMID, C. W. LAI. 2015. Multivariate analysis of photocatalytic-mineralization of Eriochrome Black T dye using ZnO catalyst and UV irradiation. Mater. Sci. Semicond. Process., Vol. 39, pp. 40–48.10.1016/j.mssp.2015.04.036Open DOISearch in Google Scholar

2. T. LIU, Y. LI, Q. DU, J. SUN, Y. JIAO, G. YANG, Z. WANG, Y. XIA, W. ZHANG, K. WANG, H. ZHU, D. WU. 2012. Adsorption of methylene blue from aqueous solution by graphene. Colloids Surfaces B Biointerfaces, Vol. 90, pp. 197–203.Search in Google Scholar

3. M. RAFATULLAH, O. SULAIMAN, R. HASHIM, A. AHMAD. 2010. Adsorption of methylene blue on low-cost adsorbents: A review, J. Hazard. Mater., 177(1), pp. 70–80.Search in Google Scholar

4. M. ZUBAIR, N. JARRAH, M. S. MANZAR, M. Al-HARTHI, M. DAUD, N. D. MU’AZU, S. HALADU. 2017. Adsorption of eriochrome black T from aqueous phase on MgAl-, CoAl- and NiFe-calcined layered double hydroxides: Kinetic, equilibrium and thermodynamic studies. J. Mol. Liq., Vol. 230, No. January, pp. 344–352.Search in Google Scholar

5. D. PATHANIA, A. SHARMA, Z. M. SIDDIQI. 2016. Removal of congo red dye from aqueous system using Phoenix dactylifera seeds. J. Mol. Liq., Vol. 219, pp. 359–367.Search in Google Scholar

6. C. E. SILVA, L. P. SILVA, H. G. M. EDWARDS, L. F. C. De OLIVEIRA. 2006. Diffuse reflection FTIR spectral database of dyes and pigments. Anal. Bioanal. Chem., 386(7–8), pp. 2183–2191.Search in Google Scholar

7. F. AHMED, R. DEWANI, M. K. PERVEZ, S. J. MAHBOOB, S. A. SOOMRO. 2016. Non-destructive FT-IR analysis of mono azo dyes. 48(1), pp. 71–77.Search in Google Scholar

8. A. K. and H. R. NAFISUR RAHMAN. 2012. Studies on the Development of Spectrophotometric Method for the Determination of. Quim. Nov., 35(2), pp. 392–397.Search in Google Scholar

9. Z. L. YANEVA, N. V GEORGIEVA. 2012. Insights into Congo Red Adsorption on Agro-Industrial Materials - Spectral, Equilibrium, Kinetic, Thermodynamic, Dynamic and Desorption Studies. A Review, Vol. 4, No. September 2003, pp. 127–146.Search in Google Scholar

10. M. M. A. HAMED, N. M. ISMAIL, S. A. IBRAHIM. 1994. Solvent characteristics in the spectral behaviour of eriochrome black T. Dye. Pigment., 26(4), pp. 297–305.Search in Google Scholar

11. K. M. LEE, S. B. ABDUL HAMID, C. W. LAI. 2015. Multivariate analysis of photocatalytic-mineralization of Eriochrome Black T dye using ZnO catalyst and UV irradiation. Mater. Sci. Semicond. Process., Vol. 39, pp. 40–48.Search in Google Scholar

12. National Center for Biotechnology Information. Eriochrome black T. PubChem Compound Database; CID=5351620.Search in Google Scholar

13. T. LIU, Y. LI, Q. DU, J. SUN, Y. JIAO, G. YANG, Z. WANG, Y. XIA, W. ZHANG, K. WANG, H. ZHU, D. WU. 2012. Adsorption of methylene blue from aqueous solution by graphene. Colloids Surfaces B Biointerfaces, 90(1), pp. 197–203.Search in Google Scholar

14. M. RAFATULLAH, O. SULAIMAN, R. HASHIM, A. AHMAD. 2010. Adsorption of methylene blue on low-cost adsorbents: A review. J. Hazard. Mater., 177(1–3), pp. 70–80.Search in Google Scholar

15. Y. LI, Q. DU, T. LIU, X. PENG, J. WANG, J. SUN, Y. WANG, S. WU, Z. WANG, Y. XIA, L. XIA. 2013. Comparative study of methylene blue dye adsorption onto activated carbon, graphene oxide, and carbon nanotubes. Chem. Eng. Res. Des., 91(2), pp. 361–368.10.1016/j.cherd.2012.07.007Open DOISearch in Google Scholar

16. B. MYEK, S. O. IDRIS, J. F. IYUN. 2014. Kinetics and Mechanism of the Oxidation of Naphthol Green B by Dichromate Ion in Aqueous Hydrochloric Acid Medium. Aceh Int. J. Sci. Technol., 3(1), pp. 37–42.Search in Google Scholar

17. W. ZHANG, C. MA, Z. SU, and Y. BAI. 2016. Resonance Rayleigh Scattering Spectra of an Ion-Association Complex of Naphthol Green B–Chitosan System and Its Application in the Highly Sensitive Determination of Chitosan. Mar. Drugs, 14(4), p. 71.10.3390/md14040071484907527096866Open DOISearch in Google Scholar

18. S. CHITRAVATHI, B. E. KUMARA SWAMY, G. P. MAMATHA, B. S. SHERIGARA. 2012. Electrochemical behavior of poly (naphthol green B)-film modified carbon paste electrode and its application for the determination of dopamine and uric acid. J. Electroanal. Chem., Vol. 667, pp. 66–75.Search in Google Scholar

19. G. KRISHNA, A. N. BABU, K. RAVINDHRANATH. 2016. Removal of naphthol green B dye from polluted waters using hydrogen peroxide treated red mud. No. December.Search in Google Scholar

20. B. MYEK, S. O. IDRIS, J. F. IYUN. 2014. Preliminary Study on the Kinetics and Mechanism of the Oxidation of Naphthol Green B by Dichromate Ion in Aqueous Hydrochloric Acid Medium. Aceh Int. J. Sci. Technol., 3(1), pp. 37–42.Search in Google Scholar

21. X. XIAO, C. C. XU, Y. M. WU, P. J. CAI, W. W. LI, D. L. DU, H. Q. YU. 2012. Biodecolorization of Naphthol Green B dye by Shewanella oneidensis MR-1 under anaerobic conditions. Bioresour. Technol., Vol. 110, pp. 86–90.Search in Google Scholar

22. National Center for Biotechnology Information, “Naphthol Green B,” PubChem Compound Database; CID=6915910.Search in Google Scholar

23. M. C. GRIEVE, R. M. GRIFFIN, and R. MALONE. 1998. Characteristic dye absorption peaks found in the FTIR spectra of coloured acrylic fibres., Sci. justice, 38(1), pp. 27–37.Search in Google Scholar

24. L. ADDNAN. 2016. “SYNTHESIS AND CHARACTERIZATION OF NEW AZO DYE (1-(4-SULFONYL ANTIBACTERIAL ACTIVITY,” 1(1), pp. 271–277.Search in Google Scholar

25. O. V OVCHINNIKOV, A. V EVTUKHOVA, T. S. KONDRATENKO, M. S. SMIRNOV, V. Y. KHOKHLOV, O. V ERINA. 2016. Vibrational Spectroscopy Manifestation of intermolecular interactions in FTIR spectra of methylene blue molecules. Vib. Spectrosc., Vol. 86, pp. 181–189.10.1016/j.vibspec.2016.06.016Open DOISearch in Google Scholar

26. P. R. SOMANI, R. MARIMUTHU, A. VISWANATh, S. RADHAKRISHNAN. 2003. Thermal degradation properties of solid polymer electrolyte (poly(vinyl alcohol)+phosphoric acid)/methylene blue composites. Polym. Degrad. Stab., 79(1), pp. 77–83.Search in Google Scholar

27. F. ZHANG, Z. NI, S. XIA, X. LIU, Q. WANG. 2009. Removal of naphthol green B from aqueous solution by calcined layered double hydroxides: Adsorption property and mechanism studies. Chinese J. Chem., 27(9), pp. 1767–1772.Search in Google Scholar

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