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Articles

Adsorption of Azorubine E122 dye via Na-mordenite with tryptophan composite: batch adsorption, Box–Behnken design optimisation and antibacterial activity

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Pages 3496-3515 | Received 01 Apr 2023, Accepted 20 May 2023, Published online: 01 Jun 2023

References

  • Balarak D, Zafariyan M, Igwegbe CA, et al. Adsorption of acid blue 92 dye from aqueous solutions by single-walled carbon nanotubes: isothermal, kinetic, and thermodynamic studies. J Environ Process. 2021;8:869–888. doi:10.1007/s40710-021-00505-3.
  • Kausar A, Iqbal M, Javed A, et al. Dyes adsorption using clay and modified clay: a review. J Mol Liq. 2018;256:395–407. doi:10.1016/j.molliq.2018.02.034.
  • Wang X, Jiang C, Hou B, et al. Carbon composite lignin-based adsorbents for the adsorption of dyes. J Chemosphere. 2018;206:587–596. doi:10.1016/j.chemosphere.2018.04.183.
  • Hu E, Wu X, Shang S, et al. Catalytic ozonation of simulated textile dyeing wastewater using mesoporous carbon aerogel supported copper oxide catalyst. J Clean Prod. 2016;112:4710–4718. doi:10.1016/j.jclepro.2015.06.127.
  • Kono H, Kusumoto R. Removal of anionic dyes in aqueous solution by flocculation with cellulose ampholytes. J Water Process Eng. 2015;7:83–93. doi:10.1016/j.jwpe.2015.05.007.
  • Rodrigues CS, Carabineiro S, Maldonado-Hódar F, et al. Wet peroxide oxidation of dye-containing wastewaters using nanosized Au supported on Al2O3. J Catal Today. 2017;280:165–175. doi:10.1016/j.cattod.2016.06.031.
  • Liu M, Chen Q, Lu K, et al. High efficient removal of dyes from aqueous solution through nanofiltration using diethanolamine-modified polyamide thin-film composite membrane. J Separ Purif Technol. 2017;173:135–143. doi:10.1016/j.seppur.2016.09.023.
  • Yeap KL, Teng TT, Poh BT, et al. Preparation and characterization of coagulation/flocculation behavior of a novel inorganic–organic hybrid polymer for reactive and disperse dyes removal. J Chem Eng J. 2014;243:305–314. doi:10.1016/j.cej.2014.01.004.
  • Messih MA, Ahmed M, Soltan A, et al. Facile approach for homogeneous dispersion of metallic silver nanoparticles on the surface of mesoporous titania for photocatalytic degradation of methylene blue and indigo carmine dyes. Journal of Photochem Photobiol A: Chem. 2017;335:40–51. doi:10.1016/j.jphotochem.2016.11.001.
  • Guz L, Curutchet G, Sanchez RT, et al. Adsorption of crystal violet on montmorillonite (or iron modified montmorillonite) followed by degradation through Fenton or photo-Fenton type reactions. J Environ Chem Eng. 2014;2:2344–2351. doi:10.1016/j.jece.2014.02.007.
  • Esteves BM, Rodrigues CS, Boaventura RA, et al. Coupling of acrylic dyeing wastewater treatment by heterogeneous Fenton oxidation in a continuous stirred tank reactor with biological degradation in a sequential batch reactor. J Environ Manage 2016;166:193–203. doi:10.1016/j.jenvman.2015.10.008.
  • Gupta VK, Carrott P, Ribeiro Carrott M., Suhas Low-cost adsorbents: growing approach to wastewater treatment—a review. J Crit Rev Environ Sci Technol. 2009;39:783–842. doi:10.1080/10643380801977610.
  • Peláez-Cid A-A, Herrera-González A-M, Salazar-Villanueva M, et al. Elimination of textile dyes using activated carbons prepared from vegetable residues and their characterization. J. Environ. Manage. 2016;181:269–278. doi:10.1016/j.jenvman.2016.06.026.
  • Gamoudi S, Srasra E. Adsorption of organic dyes by HDPy+-modified clay: effect of molecular structure on the adsorption. J Mol Struct. 2019;1193:522–531. doi:10.1016/j.molstruc.2019.05.055.
  • Nabil GM, Mahmoud ME, Makled SO. Green synthesis of novel magnetite mixed metal oxides with cationic surfactant nanocomposite: Investigation of its effective removal of Azorubin E122 food dye and antimicrobial activity. Appl Organomet Chem; e6996.
  • Beyerlein R, Choi-Feng C, Hall J, et al. Effect of steaming on the defect structure and acid catalysis of protonated zeolites. J Topics Catal. 1997;4:27–42. doi:10.1023/A:1019188105794.
  • Bejblová M, Žilková N, Čejka J. Transformations of aromatic hydrocarbons over zeolites. J Res Chem Intermed. 2008;34:439–454. doi:10.1163/156856708784795572.
  • Vlasova E, Yakimov S, Naidenko E, et al. Application of metal–organic frameworks for purification of vegetable oils. J Food Chem. 2016;190:103–109. doi:10.1016/j.foodchem.2015.05.078.
  • Liu Y, Huang J, Wang X. Adsorption isotherms for bleaching soybean oil with activated attapulgite. J Amer Oil Chemists’ Soc. 2008;85:979–984. doi:10.1007/s11746-008-1278-y.
  • Su D, Xiao T, Gu D, et al. Ultrasonic bleaching of rapeseed oil: Effects of bleaching conditions and underlying mechanisms. J Food Eng. 2013;117:8–13. doi:10.1016/j.jfoodeng.2013.01.039.
  • Li Z, Sellaoui L, Franco D, et al. Adsorption of hazardous dyes on functionalized multiwalled carbon nanotubes in single and binary systems: Experimental study and physicochemical interpretation of the adsorption mechanism. J Chem Eng. 2020;389:124467), doi:10.1016/j.cej.2020.124467.
  • El-Metwaly NM, Katouah HA, El-Desouky M, et al. Fabricating of Fe3O4@ Ag-MOF nanocomposite and evaluating its adsorption activity for removal of doxorubicin. J Environ Sci Health, Part A. 2022: 1–17. In press.
  • Al-Hazmi GH, Adam AMA, El-Desouky MG, et al. Efficient adsorption of Rhodamine B using a composite of Fe3O4@ zif-8: Synthesis, characterization, modeling analysis, statistical physics and mechanism of interaction. Bull Chem Soc Ethiop. 2023;37:211–229. doi:10.4314/bcse.v37i1.17.
  • Gamil AAA-H, El-Bindary MA, El-Desouky MG, et al. Efficient adsorptive removal of industrial dye from aqueous solution by synthesized zeolitic imidazolate framework-8 loaded date seed activated carbon and statistical physics modeling. Desalin Water Treat. 2022;258:85–103.
  • Altalhi TA, Ibrahim MM, Mersal GA, et al. Adsorption of doxorubicin hydrochloride onto thermally treated green adsorbent: Equilibrium, kinetic and thermodynamic studies. J Mol Struct. 2022;1263:133160), doi:10.1016/j.molstruc.2022.133160.
  • AlHazmi GAA, AbouMelha KS, El-Desouky MG, et al. Effective adsorption of doxorubicin hydrochloride on zirconium metal-organic framework: equilibrium, Kinetic and Thermodynamic Studies. J Mol Struct. 2022;1258:132679), doi:10.1016/j.molstruc.2022.132679.
  • El-Desouky MG, El-Bindary AA, El-Afify MAM, et al. Synthesis, characterization, theoretical calculation, DNA binding, molecular docking, anticovid-19 and anticancer chelation studies of some transition metal complexes. Inorg Nano-Met Chem. 2022;52:1–16.
  • Al-Wasidi AS, AlZahrani IIS, Thawibaraka HI, et al. Adsorption studies of carbon dioxide and anionic dye on green adsorbent. J Mol Struct. 2022;1250:131736), doi:10.1016/j.molstruc.2021.131736.
  • El-Desouky MG, El-Bindary AA, El-Bindary MA. Low-temperature adsorption study of carbon dioxide on porous magnetite nanospheres iron oxide. Biointerface Res Appl Chem. 2021;12:6252–6268.
  • Al-Wasidi AS, AlZahrani IIS, Naglah AM, et al. Effective removal of methylene blue from aqueous solution using metal-organic framework; modelling analysis, statistical physics treatment and DFT calculations. ChemistrySelect. 2021;6:11431–11447.
  • El-Desouky M, El-Bindary A. Magnetic metal-organic framework (Fe3O4@ ZIF-8) nanocomposites for adsorption of anionic dyes from wastewater. J Inorg Nano-Metal Chem. 2021: 1–15.
  • El-Desouky MG, El-Bindary MA, El-Bindary AA. Effective adsorptive removal of anionic dyes from aqueous solution. Viet J Chem. 2021;59:341–361.
  • Langmuir I. The constitution and fundamental properties of solids and liquids. Part I Solids J Am Chem Soc. 1916;38:2221–2295. doi:10.1021/ja02268a002.
  • Freundlich HMF. Over the adsorption in solution. J Phys Chem. 1906;57:385–471.
  • Tempkin VPMI. Kinetics of ammonia synthesis on promoted iron catalyst. Acta Phys Chim USSR. 1940;12:327–356.
  • Dubinin M. The equation of the characteristic curve of activated charcoal. Proc Acad Sci USSR Phys Chem Sect. 1947;55:327–329.
  • Zhang L, Zhang H, Guo W, et al. Removal of malachite green and crystal violet cationic dyes from aqueous solution using activated sintering process red mud. Appl Clay Sci. 2014;93-94:85–93. doi:10.1016/j.clay.2014.03.004.
  • Kheradmand A, Negarestani M, Mollahosseini A, et al. Low-cost treated lignocellulosic biomass waste supported with FeCl3/Zn (NO3)2 for water decolorization. Sci Rep. 2022;12:16442), doi:10.1038/s41598-022-20883-4.
  • Lagergren SK. About the theory of so-called adsorption of soluble substances, Sven. Vetenskapsakad Handingarl. 1898;24:1–39.
  • Ho Y-S, McKay G. Pseudo-second order model for sorption processes. J Process Biochem. 1999;34:451–465. doi:10.1016/S0032-9592(98)00112-5.
  • Weber Jr WJ, Morris JC. Kinetics of adsorption on carbon from solution. J Sanit Eng Div. 1963;89:31–59. doi:10.1061/JSEDAI.0000430.
  • Zeldowitsch J. The catalytic oxidation of carbon monoxide on manganese dioxide. Acta Physicochim URSS. 1934;1:364–449.
  • Jiang D, Chen M, Wang H, et al. The application of different typological and structural MOFs-based materials for the dyes adsorption. J Coord Chem Rev. 2019;380:471–483. doi:10.1016/j.ccr.2018.11.002.
  • Tan KB, Vakili M, Horri BA, et al. Adsorption of dyes by nanomaterials: recent developments and adsorption mechanisms. J Separ Purif Technol. 2015;150:229–242. doi:10.1016/j.seppur.2015.07.009.
  • Raji F, Shayesteh H, Rahbar-Kelishami A. YY microfluidic polymer/salt aqueous two-phase system for optimization of dye extraction: evaluation of channel geometry. Sep Sci Technol. 2022;57:2471–2481. doi:10.1080/01496395.2022.2059677.
  • Ngulube T, Gumbo JR, Masindi V, et al. An update on synthetic dyes adsorption onto clay based minerals: A state-of-art review. J Environ Manage. 2017;191:35–57. doi:10.1016/j.jenvman.2016.12.031.
  • Aljohani MM, Al-Qahtani SD, Alshareef M, et al. Highly efficient adsorption and removal bio-staining dye from industrial wastewater onto mesoporous Ag-MOFs. Process Saf Environ Protect. 2023;172:395–407. doi:10.1016/j.psep.2023.02.036.
  • Al-Hazmi GA, El-Zahhar AA, El-Desouky MG, et al. Superior Adsorption and removal of doxorubicin from aqueous solution using activated carbon via thermally treated green adsorbent: isothermal, kinetic, and thermodynamic studies. J Environ Technol. 2022: 1–47.
  • Al-Hazmi GA, El-Zahhar AA, El-Desouky MG, et al. Efficiency of Fe3O4@ ZIF-8 for the removal of Doxorubicin from aqueous solutions: Equilibrium, kinetics and thermodynamic studies. J Environ Technol. 2022: 1–48.
  • Sahin OI. Removal of azo dyes-tartrazine, carmoisine, and Allura Red-from wastewater using Spirulina biomass-immobilized alginate beads: equilibrium, kinetics, thermodynamics, desorption, and reusability; 2021.
  • Ould Brahim I, Belmedani M, Belgacem A, et al. Discoloration of azo dye solutions by adsorption on activated carbon prepared from the cryogenic grinding of used tires. Chem Eng Trans. 2014;38:121–126.
  • Al-Ghouti MA, Issa AA, Al-Saqarat BS, et al. Multivariate analysis of competitive adsorption of food dyes by activated pine wood. Desalin Water Treat. 2016;57:27651–27662.
  • Akinbulu IA, Ogunbayo BT, Ipadeola AK. Thermodynamics of adsorption of food colours. J Res Rev Sci. 2018;5.

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