References

  1. N. Echegaray, N. Guzel, M. Kumar, M. Guzel, A. Hassoun, J.M. Lorenzo, Recent advancements in natural colorants and their application as coloring in food and in intelligent food packaging, Food Chem., 404 (2023) 134453, doi: 10.1016/j.foodchem.2022.134453.
  2. L.E.N.D. Castro, D.A.J. Battocchio, L.F. Ribeiro, L.M.S. Colpini, Development of adsorbent materials using residue from coffee industry and application in food dye adsorption processes, Braz. Arch. Biol. Technol., 66 (2023) e23210125.
  3. S.I.S. Al-Hawary, A.O. Bali, S. Askar, H.A. Lafta, Z.J. Kadhim, B. Kholdorov, Y. Riadi, R. Solanki, Q.I. Kadhem, Y.F. Mustafa, Recent advances in nanomaterials-based electrochemical and optical sensing approaches for detection of food dyes in food samples: a comprehensive overview, Microchem. J., 189 (2023) 108540, doi: 10.1016/j.microc.2023.108540.
  4. A.K. Biswal, M. Sahoo, P.K. Suna, L. Panda, C. Lenka, P.K. Misra, Exploring the adsorption efficiency of a novel cellulosic material for removal of food dye from water, J. Mol. Liq., 350 (2022) 118577, doi: 10.1016/j.molliq.2022.118577.
  5. S. Lalnunhlimi, V. Krishnaswamy, Decolorization of azo dyes (Direct Blue 151 and Direct Red 31) by moderately alkaliphilic bacterial consortium, Braz. J. Microbiol., 47 (2016) 39–46.
  6. S. Natarajan, H.C. Bajaj, R.J. Tayade, Recent advances based on the synergetic effect of adsorption for removal of dyes from wastewater using photocatalytic process, J. Environ. Sci., 65 (2018) 201–222.
  7. M.M.G. Lopes, P.D.E.T.F. Sales, L.C. Campos, F. Schimidt, M.F. Santiago, Estudo da descoloração do corante FD&C azul no 2 Indigotina pelo tratamento combinado do fungo Trametes versicolor e processo de filtração lenta [Study of the discoloration of FD&C blue dye no 2 Indigotine by the combined treatment of the fungus Trametes versicolor and slow filtration process], Eng. Sanit. Ambiente., 19 (2014) 113–120.
  8. J.M.N. dos Santos, C.R. Pereira, L.A.A. Pinto, T. Frantz, É.C. Lima, E.L. Foletto, G.L. Dotto, Synthesis of a novel CoFe2O4/chitosan magnetic composite for fast adsorption of indigotine blue dye, Carbohydr. Polym., 217 (2019) 6–14.
  9. A. Saravanan, V.C. Deivayanai, P. Senthil Kumar, G. Rangasamy, R.V. Hemavathy, T. Harshana, N. Gayathri, K. Alagumalai, A detailed review on advanced oxidation process in treatment of wastewater: mechanism, challenges and future outlook, Chemosphere, 308 (2022) 136524, doi: 10.1016/j.chemosphere.2022.136524.
  10. A. Manassero, O.M. Alfano, M.L. Satuf, Radiation modeling and performance evaluation of a UV-LED photocatalytic reactor for water treatment, J. Photochem. Photobiol., A, 436 (2023) 114367, doi: 10.1016/j.jphotochem.2022.114367.
  11. A. Kulišťáková, Removal of pharmaceutical micropollutants from real wastewater matrices by means of photochemical advanced oxidation processes – a review, J. Water Process Eng., 53 (2023) 103727, doi: 10.1016/j.jwpe.2023.103727.
  12. O. Sacco, V. Vaiano, L. Rizzo, D. Sannino, Photocatalytic activity of a visible light active structured photocatalyst developed for municipal wastewater treatment, J. Cleaner Prod., 175 (2018) 38–49.
  13. N.M. Melo, C.M. Moraes, D.C. Oliveira, J.J. Freitas, F.F. Dias, C.G. Oliveira, M. Benachour, Y. Brandão, Toxicidade nas Sementes da Lactuca sativa (alface) por Amostras de Efluentes de Esgoto Doméstico Coletadas no Recife-PE com Análise Físico-Química e Microbiológica [Toxicity in Lactuca sativa seeds (lettuce) by domestic sewage effluent samples collected in recife-PE with physical-chemical and microbiological analysis], Conjecturas, 21 (2021) 483–514.
  14. USEPA, Ecological Effects Test Guidelines OPPTS 850.4200: Seed Germination/Root Elongation Toxicity Test, United States Environmental Protection Agency, Washington, D.C., 1996.
  15. L.O. Viana, K.G. Martins, K.V.D. Souza, E.C. Stroparo, Fitotoxicidade de efluente da indústria cervejeira em sementes de Lactuca sativa L [Phytotoxicity of brewing industry effluent on Lactuca sativa L. seeds], Rev. Int. Cienc., 7 (2018) 265–275.
  16. N.N.D. Brito, J.E.S. Paterniani, G.A. Brota, E.M.D. Santos, N.B. Silva, R.T. Pelegrini, Ensaios Biológicos Com Sementes Para Avaliar a Redução Da Toxicidade Do Chorume Tratado Por Processo Fotoquímico [Biological tests with seeds to evaluate the toxicity reduction of leachate treated by photochemical process], Rev. Min., 6 (2007) 219–228.
  17. A.J.R. Romero, C.A.R. Salazar, R.A.R. Picos, E.L. Lopez, J.E.S. Díaz, A.R. Dorantes, Índices de germinación y elongación radical de Lactuca sativa en el biomonitoreo de la calidad del agua del río Chalma [Germination and radical elongation indices of Lactuca sativa in the biomonitoring of Chalma River water quality], Rev. Int. Contam. Ambie., 30 (2014) 307–316.
  18. M.G.B. González, C.E. Molina, F.M. Peinado, S.M. Ruano, Toxicity assessment using Lactuca sativa L. bioassay of the metal (loid)s As, Cu, Mn, Pb and Zn in soluble-in-water saturated soil extracts from an abandoned mining site, J. Soils Sediments, 11 (2011) 281–289.
  19. C.A.P. Lima, B.A. Araujo, K.S. Silva, C.B. Silva, G.G.C. Lima, F.F. Vieira, K.M. Medeiros, Advanced oxidative process by heterogeneous photocatalysis for chemical laboratories effluents treatment, Desal. Water Treat., 174 (2020) 248–257.
  20. U.G. Akpan, B.H. Hameed, Parameters affecting the photocatalytic degradation of dyes using TiO2-based photocatalysts: a review, J. Hazard. Mater., 170 (2009) 520–529.
  21. N. Naciri, A. Farahi, S. Rafqah, H. Nasrellah, M.A.E. Mhammedi, I.T. Litar, M. Bakasse, Effective photocatalytic decolorization of indigo carmine dye in Moroccan natural phosphate–TiO2 aqueous suspensions, Opt. Mater., 52 (2016) 38–43.
  22. L.G.S. da Silva, A.K. Alves, Análise da fotoatividade de fibras de TiO2 observadas através da descoloração do corante alaranjado de metila [Analysis of the photoactivity of TiO2 fibers observed through discoloration of the methyl orange dye], Lat. Am. J. Dev., 3 (2021) 712–724.
  23. S. Sood, S. Kumar, A. Umar, A. Kaur, S.K. Mehta, S.K. Kansal, TiO2 quantum dots for the photocatalytic degradation of indigo carmine dye, J. Alloys Compd., 650 (2015) 193–198.
  24. A. Dabrowski, P. Podkoscielny, Z. Hubicki, M. Barczak, Adsorption of phenolic compounds by activated carbon—a critical review, Chemosphere, 58 (2005) 1049–1070.
  25. L.R. Radovic, C. Moreno-Castilla, J. Rivera-Utrilla, Carbon materials as adsorbents in aqueous solution, Chem. Phys. Carbon, 27 (2001) 227–406.