References

  1. R. Ananthashankar, Treatment of Textile Effluent Containing Reactive Red 120 Dye Using Advanced Oxidation, M.Sc. A Thesis, Dalhousie University, Halifax, Nova Scotia, 2012, 145p.
  2. M.A. Hassaan, A. El Nemr, Advanced oxidation processes for textile wastewater treatment, Int. J. Photochem. Photobiol., 2 (2017) 85–93.
  3. M.A. Hassaan, A. El Nemr, Health and environmental impacts of dyes: mini review, Am. J. Environ. Sci. Eng., 1 (2017) 64–67.
  4. E.R. Ferraz, M.D. Grando, D.P. Oliveira, The azo dye disperse orange 1 induces DNA damage and cytotoxic effects but does not cause ecotoxic effects in Daphnia similis and Vibrio fischeri, J. Hazard. Mater., 192 (2011) 628–633.
  5. E.R. Ferraz, G.A. Umbuzeiro, G.A. de-Almeida, Caloto- Oliveira, F.M. Chequer, Differential toxicity of Disperse Red 1 and Disperse Red 13 in the Ames test, HepG2 cytotoxicity assay, and Daphnia acute toxicity test, Environ. Toxicol., 26 (2011) 489–497.
  6. K.A. Amin, H. Abdel Hameid, A.H. Abd Elsttar, Effect of food azo dyes tartrazine and carmoisine on biochemical parameters related to renal, hepatic function and oxidative stress biomarkers in young male rats, Food Chem. Toxicol., 48 (2010) 2994–2999.
  7. P.K. Wong, P.Y. Yuen, Decolourization and biodegradation of N,N›-dimethyl-p-phenylenediamine by Klebsiella pneumoniae RS-13 and Acetobacter liquefaciens S-1, J. Appl. Microbiol., 85 (1998) 79–87.
  8. M. Khadhraoui, H. Trabelsi, M. Ksibi, S. Bouguerra, B. Elleuch, Discoloration and detoxicification of a Congo red dye solution by means of ozone treatment for a possible water reuse, J. Hazard. Mater., 161 (2009) 974–981.
  9. Commonwealth of Pennsylvania Department of Environmental Resources and Mill Service, Inc., Permittee, Ebb docket no. 86-515-r, 1987, pp. 658–1032.
  10. E. Rybichi, T. Swiech, E. Lesniewska, J. Albinska, M.I. Szynkowska, Paryjezak, S. Sypniewski, Changes in hazardous substances in cotton after mechanical and chemical treatments of textiles, Fibres Text. East. Eur, 12 (2004) 67–73.
  11. P.C. Eck, W. Wilson, Copper Toxicity, The Eck Institute of Applied Nutrition and Bioenergetics, Ltd., Wilson Consultants, Inc., 602 (1989) 995–1580.
  12. J. Forss, U. Welander, Decolorization of reactive azo dyes with microorganisms growing on soft wood chips, Int. Biodeterior. Biodegrad., 63 (2009) 752–758.
  13. M.M. El-Sheekh, M.M. Gharieb, G.W. Abou El-Souod, Biodegradation of dyes by some green algae and cynaobacteria, Int. Biodeterior. Biodegrad., 63 (2009) 699–704.
  14. H. Guolan, S. Hongwen, L.L. Cong, Study on the physiology and degradation of dye with immobilized algae, Artif. Cells, Blood Substitues, Immobilization Biotechnol., 28 (2002) 347–363.
  15. N. Satiroglu, Y. Yalcinkaya, A.M.Y. Denizli, Arica, S. Bektas, O. Genc, Application of NaOH treated Polyporus versicolor for removal of divalent ions of group IIB elements from synthetic wastewater, Process Biochem., 38 (2002) 65–72.
  16. D. Onyancha, W. Mavura, J.C. Nglia, P. Ongoma, J. Chacha, Studies of chromium removal from tannery wastewaters by algae biosorbents, Spirogyra condensata and Rhizoclonium heiroglyphicum, J. Hazard. Mater., 158 (2008) 605–614.
  17. T.G. Luan, J. Jin, S.M.N. Chan, S.Y. Wong, N.F.Y. Tam, Biosorption and biodegradation of tributyltin (TBT) by alginate immobilized Chlorella vulgrais beads in several treatment cycles, Process Biochem., 41 (2006) 1560–1565.
  18. N.F.Y. Tam, Y.S. Wong, Effect of immobilized microalgal bead concentrations on wastewater nutrient removal, Environ. Pollut., 107 (2002) 145–151.
  19. H.W. Bischoff, H.C. Bold, Some Soil Algae from Enchanted Rock and Related Algal Species, University of Texas, Publication, Austin, 1963, p. 95.
  20. A. Telke, D. Kalyani, J. Jadhav, S. Govindwar, Kinetics and mechanism of reactive red 141 degradation by a bacterial isolate Rhizobium radiobacter MTCC 8161, Acta Chim. Slovenica, 55 (2008) 320–329.
  21. M.M. El-Sheekh, G.W. Abou El-Souod, H.A. El Asrag, Biodegradation of some dyes by the cyanobacteria species Pseudoanabaena sp. and Microcystis aeruginosa Kützing, Egypt. J. Exp. Biol., 13 (2017) 233–243.
  22. M.M. El-sheekh, G.W. Abou-El-Souod, H.A. El Asrag, Biodegradation of some dyes by the green alga Chlorella vulgaris and the cyanobacterium Aphanocapsa elachista, Egypt J. Bot., 58 (2018) 311–320.
  23. F. Leganes, E. Sanchez-maeso, E. Fernandez-Valiente, Effect of indole acetic acid on growth and dinitrogen fixation in cyanobacteria, Plant Cell Physiol., 28 (1987) 529–533.
  24. V.L. Singleton, J.A. Rossi, Colorimetry of total phenolics with Enrique, phosphomolybdic–phosphotungstic acid reagents, Am. J. Enol. Vitic., 16 (1965) 144–158.
  25. L.L. Mensor, F.S. Menezes, G.G. Leitao, A.S. Reis, T.C. dos Santos, C.S. Coube, Screening of Brazilian plant extracts for antioxidant activity by the use of DPPH free radical method, Phytother. Res., 15 (2001) 127–130.
  26. M.P. Shah, K.A. Patel, S.S. Nair, A.M. Darji, S.J. Maharaul, Microbial decolorization and Degradation of Orange 16 Dye by a Newly Isolated Aeromonas Spp. Etl-1949, J. Biorem. Biodegrad., 4 (2013) 194.
  27. W.A. Said, D.L. Lewis, Quantitative Assessment of the effects of metals on microbial degradation of organic chemicals, Appl. Environ. Microbiol., 57 (1991) 1498–1503.
  28. G.W. Abou-El-Souod, M.M. El-Sheekh, Biodegradation of basic fuchsin and methyl red by the blue green algae Hydrocoleum oligotrichum and Oscillatoria limnetica, Environ. Eng. Manage. J., 15 (2016) 279–286.
  29. R. Molinari, F. Pirillo, M. Falco, V. Loddo, L. Palmisano, Photocatalytic degradation of dyes by using a membrane reactor, Chem. Eng. Process., 43 (2004) 1103–1114.
  30. K.S. Bilgrami, S. Kumar, Effects of copper, lead and zinc on phytoplankton growth, Biol Plant., 39 (1997) 315–317.
  31. P. Chevalier, J. de la Noue, Wastewater nutrient removal with microalgae immobilized in carrageenan, Enzyme Microb. Technol., 7 (1985) 621–624.
  32. M.S. Abdel Hameed, Effect of algal density in bead, bead size and bead concentrations on wastewater nutrient removal, Afr. J. Biotechnol., 6 (2007) 1185–1191.
  33. S.K. Saha, P. Swaminathan, C. Raghavan, L. Uma, G. Subramanian, Ligninolytic and antioxidative enzymes of a marine cyanobacteium Oscillatori awillei BDU 130511 during Poly R-478 decolourization, Bioresour. Technol., 101 (2010) 3076–3084.
  34. J.P.C. Hording, B.A. Whitton, Resistance of Stigeoclonium tenue in the field and the laboratory, Br. Phycol. J., 11 (1976) 417–426.
  35. P.M. Stokes, Responses of freshwater algae to metals, Prog. Phycol. Res., 2 (1983) 87–112.
  36. Z. Aksu, S. Tezer, Biosorption of reactive dyes on the green alga Chlorella vulgaris, Process Biochem., 40 (2005) 1347–1361.
  37. S. Mahalakshmi, D. Lakshmi, U. Menaga, Biodegradation of different concentrations of dye (Congo red dye) by using green and blue green algae, Int. J. Environ. Res., 9 (2015) 735–744.
  38. P. Kalita, T.K. Barman, P.K. Tapas, K. Ramen, Estimation of total flavonoids content (TFC) and antioxidant activities of methanolic whole plant extract of Biophytum sensitivum linn, J. Drug Delivery Ther., 3 (2013) 33–37.
  39. M. Hajimahmoodi, M.A. Faramarzi, N. Mohammadi, N.M.R. Soltani Oveisi, N. Nafissi Varcheh, Evaluation of antioxidant properties and total phenolic contents of some strains of microalgae, J. Appl. Phycol., 22 (2009) 43–50.
  40. K. Goiris, K. Muylaert, I. Fraeye, I. Foubert, J. De Brabanter, L. De Cooman, Antioxidant potential of microalgae in relation to their phenolic and carotenoid content, J. Appl. Phycol., 24 (2012) 1477–1486.
  41. N.H. Azim, A. Subki, Z. Norhana, B. Yusof, Abiotic stresses induce total phenolic, total flavonoid and antioxidant properties in Malaysian indigenous microalgae and cyanobacterium, Malaysian J. Microbiol., 14 (2018) 25–33.
  42. D. Singh, R. Prabha, K. Meena, Induced accumulation of polyphenolics and flavonoids in cyanobacteria under salt stress protects organisms through enhanced antioxidant activity, Am. J. Plant Sci., 5 (2014) 726–735.
  43. K. Goiris, W. Van Colen, I. Wilches, K. Muylaert, Impact of nutrient stress on antioxidant production in three species of microalgae, Algal Res., 7 (2015) 51–57.
  44. D. Barreiro, W. Prins, F. Ronsse, Hydrothermal liquefaction (HTL) of microalgae for biofuel production, J. Biomass Bioenergy, 53 (2016) 113–127.
  45. K. Manivannan, P. Ananthraman, T. Balasubramanian, Evaluation of antioxidant properties of marine microalga Chlorella marina, Asia-Pac. J. Trop. Biomed., 2 (2012) 42–46.
  46. A.K. Srivastava, P. Bhargava, L.C. Rai, Salinity and copperinduced oxidative damage and changes in the antioxidative defense systems of Anabaena doliolum, World J. Microbiol. Biotechnol., 21 (2005) 1291–1298.