[Publication of the Brazilian Society for Microbiology] 49(2):285–295. https://doi.org/10.1016/
j.bjm.2017.06.010
Qazilbash AA (2004) Isolation and characterization of heavy metal tolerant biota from industrially
polluted soils and their role in bioremediation. Biological Sci 41:210–256
Ramalho PA, Cardoso MH, Cavaco-Paulo A, Ramalho MT (2004) Characterization of azo reduction activity in a novel ascomycete yeast strain. Appl Environ Microbiol 70:2279–2288
Ramalingam S, Saraswathy N, Shanmugapriya S, Shakthipriyadarshani S, Sadasivam S,
Sanmugaprakash M (2010) Decolorization of textile dyes by Aspergillus tamari, mixed fungal
culture and Peniceillium purpurogenum. J Sci Ind Res 69:151–153
Ramsay LM, Gadd GM (1997) Mutants of Saccharomyces cerevisiae defective invacuolar function
confirm a role for the vacuole intoxic metalion detoxification. FEMS Microbiol Lett 152
(2):293–298
Rani B, Vivek K, Jagvijay S, Sandeep B, Priyanku T, Shivesh S, Ritu K (2014) Bioremediation of
dyes by fungi isolated from contaminated dye effluent sites for bio-usability. Braz J Microbiol
45(3):1055–1063
Ren S, Guo J, Zeng G, Sun G (2006) Decolorization of triphenylmethane, azo, and anthraquinone
dyes by a newly isolated Aeromonas hydrophila strain. Appl Microbiol Biotechnol 72
(6):1316–1321. https://doi.org/10.1007/s00253-006-0418-2
Roy DC, Biswas SK, Saha AK, Sikdar B, Rahman M, Roy AK, Prodhan ZH, Tang SS (2018)
Biodegradation of Crystal Violet dye by bacteria isolated from textile industry effluents. PeerJ 6:
e5015. https://doi.org/10.7717/peerj.5015
Saha P, Datta S, Sanyal SK (2010) Application of natural clayey soil as adsorbent for the removal of
copper from wastewater. J Environ Eng 136:1409–1417. https://doi.org/10.1061/(ASCE)EE.
1943-7870.0000289
Saibaba KVN, King P (2013a) Equilibrium and thermodynamic studies for dye removal using
biosorption. Int J Res Eng & Technol 1(3):17–24
Saibaba KVN, King P (2013b) Modelling and optimization of dye removal process using hybrid
response surface methodology and genetic algorithm approach. J Fundam Renew Energy Appl 4
(1). https://doi.org/10.4172/2090-4541.1000126
Saibaba KVN, King P, Gopinadh R, Sreelakshmi V (2011) Response surface optimization of dye
removal by using Waste prawn shells. Int J Chem Sci Appl 2(3):186–193
Saibaba KVN, King P, Gopinadh R, Lakshmi DKN (2012) Response surface optimization for the
decolorization of crystal violet dye from aqueous solutions by waste crab shells. Int J App
Environ Sci 7(2):149–154
Semrany S, Favier L, Djelal H, Taha S, Amrane A (2012) Bioaugmentation: possible solution in the
treatment of bio-refractory organic compounds (BioROCs). Biochem Eng J 69:75–86
Shahid A, Singh J, Bisht S, Teotia P, Kumar V (2013) Biodegradation of textile dyes by fungi
isolated from North Indian field soil. Env Asia 6(2):51–57
Shanker AK, Cervantes C, Loza-Tavera H, Avudainayagam S (2005) Chromium toxicity in plants.
Environ Int 31(5):739–753
Shedbalkar U, Jadhav JP (2011) Detoxification of malachite green and textile industrial effluent by
Penicillium ochrochloron. Biotechnol Bioproc E 16:196. https://doi.org/10.1007/s12257-0100069-0
Siddique M, Mahmmod A, Sheikh M, Gafoor A, Khaliq S, Bukhai M, Yousaf K, Rehman K,
Andleeb S, Naeem MM (2012) A study on the biodegradation of some reactive textile dyes by
white rot fungus (Pleurotus ostreatus). World Appl Sci J 18(2):181–185
Singh RP, Singh PK, Singh RL (2014) Bacterial decolorization of textile azo dye acid orange by
Staphylococcus hominis RMLRT03. Toxicol Int 21(2):160–166. https://doi.org/10.4103/09716580.139797
Siti ZM, Nurhaslina CR, Ku HKH (2013) Removal of synthetic dyes from wastewater by using
Bacteria, Lactobacillus delbruckii. Int Refereed J Eng & Sci (IRJES) 2(5):01–07
Tamás MJ, Wysocki R (2010) How Saccharomyces cerevisiae copes with toxic metals and
metalloids. FEMS Microbiol Rev 34:925–951
9 Removal of Dyes From Industrial Effluents Using Bioremediation Technique
193
j.bjm.2017.06.010
Qazilbash AA (2004) Isolation and characterization of heavy metal tolerant biota from industrially
polluted soils and their role in bioremediation. Biological Sci 41:210–256
Ramalho PA, Cardoso MH, Cavaco-Paulo A, Ramalho MT (2004) Characterization of azo reduction activity in a novel ascomycete yeast strain. Appl Environ Microbiol 70:2279–2288
Ramalingam S, Saraswathy N, Shanmugapriya S, Shakthipriyadarshani S, Sadasivam S,
Sanmugaprakash M (2010) Decolorization of textile dyes by Aspergillus tamari, mixed fungal
culture and Peniceillium purpurogenum. J Sci Ind Res 69:151–153
Ramsay LM, Gadd GM (1997) Mutants of Saccharomyces cerevisiae defective invacuolar function
confirm a role for the vacuole intoxic metalion detoxification. FEMS Microbiol Lett 152
(2):293–298
Rani B, Vivek K, Jagvijay S, Sandeep B, Priyanku T, Shivesh S, Ritu K (2014) Bioremediation of
dyes by fungi isolated from contaminated dye effluent sites for bio-usability. Braz J Microbiol
45(3):1055–1063
Ren S, Guo J, Zeng G, Sun G (2006) Decolorization of triphenylmethane, azo, and anthraquinone
dyes by a newly isolated Aeromonas hydrophila strain. Appl Microbiol Biotechnol 72
(6):1316–1321. https://doi.org/10.1007/s00253-006-0418-2
Roy DC, Biswas SK, Saha AK, Sikdar B, Rahman M, Roy AK, Prodhan ZH, Tang SS (2018)
Biodegradation of Crystal Violet dye by bacteria isolated from textile industry effluents. PeerJ 6:
e5015. https://doi.org/10.7717/peerj.5015
Saha P, Datta S, Sanyal SK (2010) Application of natural clayey soil as adsorbent for the removal of
copper from wastewater. J Environ Eng 136:1409–1417. https://doi.org/10.1061/(ASCE)EE.
1943-7870.0000289
Saibaba KVN, King P (2013a) Equilibrium and thermodynamic studies for dye removal using
biosorption. Int J Res Eng & Technol 1(3):17–24
Saibaba KVN, King P (2013b) Modelling and optimization of dye removal process using hybrid
response surface methodology and genetic algorithm approach. J Fundam Renew Energy Appl 4
(1). https://doi.org/10.4172/2090-4541.1000126
Saibaba KVN, King P, Gopinadh R, Sreelakshmi V (2011) Response surface optimization of dye
removal by using Waste prawn shells. Int J Chem Sci Appl 2(3):186–193
Saibaba KVN, King P, Gopinadh R, Lakshmi DKN (2012) Response surface optimization for the
decolorization of crystal violet dye from aqueous solutions by waste crab shells. Int J App
Environ Sci 7(2):149–154
Semrany S, Favier L, Djelal H, Taha S, Amrane A (2012) Bioaugmentation: possible solution in the
treatment of bio-refractory organic compounds (BioROCs). Biochem Eng J 69:75–86
Shahid A, Singh J, Bisht S, Teotia P, Kumar V (2013) Biodegradation of textile dyes by fungi
isolated from North Indian field soil. Env Asia 6(2):51–57
Shanker AK, Cervantes C, Loza-Tavera H, Avudainayagam S (2005) Chromium toxicity in plants.
Environ Int 31(5):739–753
Shedbalkar U, Jadhav JP (2011) Detoxification of malachite green and textile industrial effluent by
Penicillium ochrochloron. Biotechnol Bioproc E 16:196. https://doi.org/10.1007/s12257-0100069-0
Siddique M, Mahmmod A, Sheikh M, Gafoor A, Khaliq S, Bukhai M, Yousaf K, Rehman K,
Andleeb S, Naeem MM (2012) A study on the biodegradation of some reactive textile dyes by
white rot fungus (Pleurotus ostreatus). World Appl Sci J 18(2):181–185
Singh RP, Singh PK, Singh RL (2014) Bacterial decolorization of textile azo dye acid orange by
Staphylococcus hominis RMLRT03. Toxicol Int 21(2):160–166. https://doi.org/10.4103/09716580.139797
Siti ZM, Nurhaslina CR, Ku HKH (2013) Removal of synthetic dyes from wastewater by using
Bacteria, Lactobacillus delbruckii. Int Refereed J Eng & Sci (IRJES) 2(5):01–07
Tamás MJ, Wysocki R (2010) How Saccharomyces cerevisiae copes with toxic metals and
metalloids. FEMS Microbiol Rev 34:925–951
9 Removal of Dyes From Industrial Effluents Using Bioremediation Technique
193
