References

  1. E.U. Etim, Removal of methyl blue dye from aqueous solution by adsorption unto ground nut waste, Biomed. J. Sci. Technol. Res., 15 (2019) 11365–11371.
  2. O.S. Bayomie, H. Kandeel, T. Shoeib, H. Yang, N. Youssef, M.M.H. El-Sayed, Novel approach for effective removal of methylene blue dye from water using fava bean peel waste, Sci. Rep., 10 (2020) 7824, doi:10.1038/s41598-020-64727-5.
  3. M. Berradi, R. Hsissou, M. Khudhair, M. Assouag, O. Cherkaoui, A. El Bachiri, A. El Harfi, Textile finishing dyes and their impact on aquatic environs, Heliyon, 5 (2019) e02711, doi: 10.1016/j. heliyon.2019.e02711.
  4. S.M. Kanawade, R.W. Gaikwad, Removal of methylene blue from effluent by using activated carbon and water hyacinth as adsorbent, Int. J. Chem. Eng. Appl., 2 (2011) 317–319.
  5. L. Baloo, M.H. Isa, N.B. Sapari, A.H. Jagaba, L.J. Wei, S. Yavari, R. Razali, R. Vasu, Adsorptive removal of methylene blue and acid orange 10 dyes from aqueous solutions using oil palm wastes-derived activated carbons, Alexandria Eng. J., 60 (2021) 5611–5629.
  6. S. Giraldo, I. Robles, L.A. Godínez, N. Acelas, E. Flórez, Experimental and theoretical insights on methylene blue removal from wastewater using an adsorbent obtained from the residues of the orange industry, Molecules, 26 (2021) 2021, doi: 10.3390/molecules26154555.
  7. G. Crini, E. Lichtfouse, Advantages and disadvantages of techniques used for wastewater treatment, Environ. Chem. Lett., 17 (2019) 145–155.
  8. R. Arshad, T.H. Bokhari, T. Javed, I.A. Bhatti, S. Rasheed, M. Iqbal, A. Nazir, S. Naz, M.I. Khan, M.K.K. Khosa,
    M. Iqbal, M. Zia-ur-Rehman, Degradation product distribution of Reactive Red-147 dye treated
    by UV/H2O2/TiO2 advanced oxidation process, J. Mater. Res. Technol., 9 (2020) 3168–3178.
  9. M. Contreras, C.D. Grande-Tovar, W. Vallejo, C. Chaves-López, Bio-removal of methylene blue from aqueous solution by Galactomyces geotrichum KL20A, Water, 11 (2019) 282, doi: 10.3390/w11020282.
  10. V.L. Er Siong, K.M. Lee, J.C. Juan, C.W. Lai, X.H. Tai, C.S. Khe, Removal of methylene blue dye by solvothermally reduced graphene oxide: a metal-free adsorption and photodegradation method, RSC Adv., 9 (2019) 37686–37695.
  11. K. Gautam, S. Kamsonlian, S. Kumar, Removal of Reactive Red 120 dye from wastewater using electrocoagulation: optimization using multivariate approach, economic analysis, and sludge characterization, Sep. Sci. Technol., 55 (2020) 3412–3426.
  12. M.R. Samarghandi, A. Dargahi, A. Shabanloo, H.Z. Nasab, Y. Vaziri, A. Ansari, Electrochemical degradation of methylene blue dye using a graphite doped PbO2 anode: optimization of operational parameters, degradation pathway and improving the biodegradability of textile wastewater, Arabian J. Chem., 13 (2020) 6847–6864.
  13. E. Misran, O. Bani, E.M. Situmeang, A.S. Purba, Banana stem based activated carbon as a low-cost adsorbent for methylene blue removal: isotherm, kinetics, and reusability, Alexandria Eng. J., 61 (2022) 1946–1955.
  14. R. Tang, C. Dai, C. Li, W. Liu, S. Gao, C. Wang, Removal of methylene blue from aqueous solution using agricultural residue walnut shell: equilibrium, kinetic, and thermodynamic studies, J. Chem., 2017 (2017) 8404965, doi: 10.1155/2017/8404965.
  15. R. Ahmad, K. Ansari, Comparative study for adsorption of congo red and methylene blue dye on chitosan modified hybrid nanocomposite, Process Biochem., 108 (2021) 90–102.
  16. A. Aichour, H. Zaghouane-Boudiaf, F.B. Mohamed Zuki, M. Kheireddine Aroua, C.V. Ibbora, Low-cost, biodegradable and highly effective adsorbents for batch and column fixed bed adsorption processes of methylene blue, J. Environ. Chem. Eng., 7 (2019) 103409, doi: 10.1016/j.jece.2019.103409.
  17. R. Ahmad, K. Ansari, Polyacrylamide-grafted Actinidia deliciosa peels powder (PGADP) for the sequestration of crystal violet dye: isotherms, kinetics and thermodynamic studies, Appl. Water Sci., 10 (2020) 195, doi:10.1007/s13201-020-01263-7.
  18. A.H. Jawad, N. Hum, A.M. Farhan, M.S. Mastuli, Biosorption of methylene blue dye by rice (Oryza sativa L.) straw: adsorption and mechanism study, Desal. Water Treat., 190 (2020) 322–330.
  19. S. Mohebali, D. Bastani, H. Shayesteh, Equilibrium, kinetic and thermodynamic studies of a low-cost biosorbent for the removal of Congo red dye: acid and CTAB-acid modified celery (Apium graveolens), J. Mol. Struct., 1176 (2019) 181–193.
  20. N.D. Shooto, P.M. Thabede, B. Bhila, H. Moloto, E.B. Naidoo, Lead ions and methylene blue dye removal from aqueous solution by mucuna beans (velvet beans) adsorbents, J. Environ. Chem. Eng., 8 (2020) 103557, doi:10.1016/j.jece.2019.103557.
  21. I. Fatimah, I. Sahroni, M.S.E. Dahlyani, A.M.N. Oktaviyani, R. Nurillahi, Surfactant-modified Salacca zalacca skin as adsorbent for removal of methylene blue and Batik’s wastewater, Mater. Today Proc., 44 (2021) 3211–3216.
  22. Y. Dai, K. Zhang, X. Meng, J. Li, X. Guan, Q. Sun, Y. Sun, W. Wang, M. Lin, M. Liu, S. Yang, Y. Chen, F. Gao, X. Zhang, Z. Liu, New use for spent coffee ground as an adsorbent for tetracycline removal in water, Chemosphere, 215 (2019) 163–172.
  23. M.A. Ahmad, M.A.M. Eusoff, M.N.N. Khan, A. Khasri, Microwave-assisted activated carbon from passion fruit peel for methylene blue dye removal, AIP Conf. Proc., 2124 (2019) 30019, doi: 10.1063/1.5117141.
  24. M.A. Ahmad, M.A. Eusoff, P.O. Oladoye, K.A. Adegoke, O.S. Bello, Optimization and batch studies on adsorption of methylene blue dye using pomegranate fruit peel based adsorbent, Chem. Data Collect., 32 (2021) 100676, doi: 10.1016/j. cdc.2021.100676.
  25. A. Kamińska, P. Miądlicki, K. Kiełbasa, M. Kujbida, J. Sreńscek-Nazzal, R.J. Wróbel, A. Wróblewska, Activated carbons obtained from orange peels, coffee grounds, and sunflower husks-comparison of physicochemical properties and activity in the alpha-pinene isomerization process, Mater. (Basel, Switzerland), 14 (2021) 7448, doi: 10.3390/ma14237448.
  26. M.R. Mafra, L. Igarashi-Mafra, D.R. Zuim, É.C. Vasques, M.A. Ferreira, Adsorption of remazol brilliant blue on an orange peel adsorbent, Braz. J. Chem. Eng., 30 (2013) 657–665.
  27. S. Dey, S.R. Basha, G.V Babu, T. Nagendra, Characteristic and biosorption capacities of orange peels biosorbents for removal of ammonia and nitrate from contaminated water, Clean. Mater., 1 (2021) 100001, doi: 10.1016/j.clema.2021.100001.
  28. P. Senthil Kumar, P. Sebastina Anne Fernando, R. Tanvir Ahmed, R. Srinath, M. Priyadharshini, A.M. Vignesh,
    A. Thanjiappan, Effect of temperature on the adsorption of methylene blue dye onto sulfuric acid–treated orange peel, Chem. Eng. Commun., 201 (2014) 1526–1547.
  29. M. Khodaie, N. Ghasemi, B. Moradi, M. Rahimi, Removal of methylene blue from wastewater by adsorption onto ZnCl2 activated corn husk carbon equilibrium studies, J. Chem., 2013 (2013) 383985, doi:10.1155/2013/383985.
  30. M.A. Mohammad Razi, M.N.A. Mohd Hishammudin, R. Hamdan, Factor affecting textile dye removal using adsorbent from activated carbon: a review, MATEC Web Conf., 103 (2017) 06015, doi:10.1051/matecconf/201710306015.
  31. N. Ertugay, E. Malkoc, Adsorption isotherm, kinetic, and thermodynamic studies for methylene blue from aqueous solution by needles of Pinus Sylvestris L., Pol. J. Environ. Stud., 23 (2014) 1995–2006.
  32. L. Liu, X.-B. Luo, L. Ding, S.-L. Luo, 4 – Application of Nanotechnology in the Removal of Heavy Metal From Water, X. Luo, F. Deng, Eds., Nanomaterials for the Removal of Pollutants and Resource Reutilization: Micro and Nano Technologies, Elsevier, Amsterdam, Netherlands, 2019, pp. 83–147.