Skip to main content
Top

2016 | OriginalPaper | Chapter

Exposure to Crystal Violet, Its Toxic, Genotoxic and Carcinogenic Effects on Environment and Its Degradation and Detoxification for Environmental Safety

Authors : Sujata Mani, Ram Naresh Bharagava

Published in: Reviews of Environmental Contamination and Toxicology Volume 237

Publisher: Springer International Publishing

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Crystal Violet (CV), a triphenylmethane dye, has been extensively used in human and veterinary medicine as a biological stain, as a textile dye in textile processing industries and also used to provide a deep violet color to paints and printing ink. CV is also used as a mutagenic and bacteriostatic agent in medical solutions and antimicrobial agent to prevent the fungal growth in poultry feed. Inspite of its many uses, CV has been reported as a recalcitrant dye molecule that persists in environment for a long period of time and pose toxic effects. It acts as a mitotic poison, potent carcinogen and a potent clastogene promoting tumor growth in some species of fish. Thus, CV is regarded as a biohazard substance. Although, there are several physico-chemical methods such as adsorption, coagulation and ion-pair extraction reported for the removal of CV, but these methods are insufficient for the complete removal of CV from industrial wastewaters and also produce large quantity of sludge containing secondary pollutants. However, biological methods are regarded as cost-effective and eco-friendly for the treatment of industrial wastewaters, but these methods also have certain limitations. Therefore, there is an urgent need to develop such eco-friendly and cost-effective biological treatment methods, which can effectively remove the dye from industrial wastewaters for the safety of environment, as well as human and animal health.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Adams EQ, Rosenstein L (1914) The color and ionization of crystal-violet. J Am Chem Soc 36(7):1452–1473CrossRef Adams EQ, Rosenstein L (1914) The color and ionization of crystal-violet. J Am Chem Soc 36(7):1452–1473CrossRef
go back to reference Aguilar MI, Sáez J, Llorens M, Soler A, Ortuno JF, Meseguer V, Fuente A (2005) Improvement of coagulation-flocculation process using anionic polyacryl amide as coagulant aid. Chemosphere 58:47–56CrossRef Aguilar MI, Sáez J, Llorens M, Soler A, Ortuno JF, Meseguer V, Fuente A (2005) Improvement of coagulation-flocculation process using anionic polyacryl amide as coagulant aid. Chemosphere 58:47–56CrossRef
go back to reference Ahmad R (2009) Studies on adsorption of crystal violet dye from aqueous solution onto coniferous pinus bark powder (CPBP). J Hazard Mater 171:767–773CrossRef Ahmad R (2009) Studies on adsorption of crystal violet dye from aqueous solution onto coniferous pinus bark powder (CPBP). J Hazard Mater 171:767–773CrossRef
go back to reference Ahmad R, Kumar R (2010a) Kinetic and thermodynamic studies of brilliant green adsorption onto activated carbon/iron oxide nanocomposite. J Korean Chem Soc 54(1):125–130CrossRef Ahmad R, Kumar R (2010a) Kinetic and thermodynamic studies of brilliant green adsorption onto activated carbon/iron oxide nanocomposite. J Korean Chem Soc 54(1):125–130CrossRef
go back to reference Ahmad R, Kumar R (2010b) Conducting polyaniline/iron oxide composite: a novel adsorbent for the removal of amido black 10 B. J Chem Eng Data 55(9):3489–3493CrossRef Ahmad R, Kumar R (2010b) Conducting polyaniline/iron oxide composite: a novel adsorbent for the removal of amido black 10 B. J Chem Eng Data 55(9):3489–3493CrossRef
go back to reference Ahmad R, Kumar R (2010c) Adsorptive removal of congo red dye from aqueous solution using bale shell carbon. Appl Surf Sci 257(5):1628–1633CrossRef Ahmad R, Kumar R (2010c) Adsorptive removal of congo red dye from aqueous solution using bale shell carbon. Appl Surf Sci 257(5):1628–1633CrossRef
go back to reference Ahmad R, Kumar R (2011) Adsorption of amaranth dyes onto alumina reinforced polystyrene. Clean Soil Air Water 39(1):74–82CrossRef Ahmad R, Kumar R (2011) Adsorption of amaranth dyes onto alumina reinforced polystyrene. Clean Soil Air Water 39(1):74–82CrossRef
go back to reference Ahmad R, Mondal PK (2009) Application of acid treated almond peel for removal and recovery of brilliant green from industrial wastewater by column operation. Sep Sci Technol 44(7):1638–1655CrossRef Ahmad R, Mondal PK (2009) Application of acid treated almond peel for removal and recovery of brilliant green from industrial wastewater by column operation. Sep Sci Technol 44(7):1638–1655CrossRef
go back to reference Ahmad R, Mondal PK (2010) Application of modified water nut carbon as a sorbent in congo red and malachite green dye contaminated wastewater remediation. Sep Sci Technol 45:394–403CrossRef Ahmad R, Mondal PK (2010) Application of modified water nut carbon as a sorbent in congo red and malachite green dye contaminated wastewater remediation. Sep Sci Technol 45:394–403CrossRef
go back to reference Ahmad R, Mondal PK (2012a) Adsorption and photodegradation of methylene blue by using PAni/TiO2 nanocomposite. J Dispers Sci Technol 33(3):380–386CrossRef Ahmad R, Mondal PK (2012a) Adsorption and photodegradation of methylene blue by using PAni/TiO2 nanocomposite. J Dispers Sci Technol 33(3):380–386CrossRef
go back to reference Ahmad R, Mondal PK (2012b) Bioremediation of p-nitrophenol containing wastewater by aerobic granule. J Environ Eng Manag 13(3):493–498 Ahmad R, Mondal PK (2012b) Bioremediation of p-nitrophenol containing wastewater by aerobic granule. J Environ Eng Manag 13(3):493–498
go back to reference Ahmad R, Mondal PK, Usmani SQ (2010) Hybrid UASFB-aerobic bioreactor for biodegradation of acid yellow-36 in wastewater. Bioresour Technol 101(10):3787–3790CrossRef Ahmad R, Mondal PK, Usmani SQ (2010) Hybrid UASFB-aerobic bioreactor for biodegradation of acid yellow-36 in wastewater. Bioresour Technol 101(10):3787–3790CrossRef
go back to reference Ajao AT, Adebayo GB, Yakubu SE (2011) Bioremediation of textile industrial effluent using mixed culture of Pseudomonas aeruginosa and Bacillus subtilis immobilized on agar-agar in a bioreactor. J Microbiol Biotechnol Res 1:50–56 Ajao AT, Adebayo GB, Yakubu SE (2011) Bioremediation of textile industrial effluent using mixed culture of Pseudomonas aeruginosa and Bacillus subtilis immobilized on agar-agar in a bioreactor. J Microbiol Biotechnol Res 1:50–56
go back to reference Akar ST, Ozcan AS, Akar T, Ozcan A, Kaynak Z (2009) Biosorption of a reactive textile dye from aqueous solutions utilizing an agro-waste. Desalination 249:757–761CrossRef Akar ST, Ozcan AS, Akar T, Ozcan A, Kaynak Z (2009) Biosorption of a reactive textile dye from aqueous solutions utilizing an agro-waste. Desalination 249:757–761CrossRef
go back to reference Aksu Z (2005) Application of biosorption for the removal of organic pollutants: a review. Process Biochem 40:997–1026CrossRef Aksu Z (2005) Application of biosorption for the removal of organic pollutants: a review. Process Biochem 40:997–1026CrossRef
go back to reference Amini M, Younesi H (2009) Biosorption of Cd(II), Ni(II) and Pb(II) from aqueous solution by dried biomass of Aspergillus niger. Application of response surface methodology to the optimization of process parameters. Clean 37:776–786 Amini M, Younesi H (2009) Biosorption of Cd(II), Ni(II) and Pb(II) from aqueous solution by dried biomass of Aspergillus niger. Application of response surface methodology to the optimization of process parameters. Clean 37:776–786
go back to reference Amini M, Younesi H, Bahramifar N, Akbar A, Lorestani Z, Ghorbani F, Daneshi A, Sharifzadeh M (2008) Application of response surface methodology for optimization of lead biosorption in an aqueous solution by Aspergillus niger. J Hazard Mater 154:694–702CrossRef Amini M, Younesi H, Bahramifar N, Akbar A, Lorestani Z, Ghorbani F, Daneshi A, Sharifzadeh M (2008) Application of response surface methodology for optimization of lead biosorption in an aqueous solution by Aspergillus niger. J Hazard Mater 154:694–702CrossRef
go back to reference Aplin R, Wait TD (2000) Comparison of three advanced oxidation processes for degradation of textile dyes. Water Sci Technol 42:345–354 Aplin R, Wait TD (2000) Comparison of three advanced oxidation processes for degradation of textile dyes. Water Sci Technol 42:345–354
go back to reference Assadi MM, Maryam M, Taher SN, Noohi A, Shahamat M, Levin M (2003) Biosorption of Baftkar textile effluent. Indian J Exp Biol 41:900–905 Assadi MM, Maryam M, Taher SN, Noohi A, Shahamat M, Levin M (2003) Biosorption of Baftkar textile effluent. Indian J Exp Biol 41:900–905
go back to reference Au W, Pathak S, Colie CL, Hsu TC (1978) Cytogenetic toxicity of gentian violet and crystal violet on mammalian cells in vitro. Mutat Res 58(2-3):269–276CrossRef Au W, Pathak S, Colie CL, Hsu TC (1978) Cytogenetic toxicity of gentian violet and crystal violet on mammalian cells in vitro. Mutat Res 58(2-3):269–276CrossRef
go back to reference Azargohar R, Dalai AK (2005) Production of activated carbon from Luscar char: experimental and modeling studies. Micropor Mesopor Mater 85:219–225CrossRef Azargohar R, Dalai AK (2005) Production of activated carbon from Luscar char: experimental and modeling studies. Micropor Mesopor Mater 85:219–225CrossRef
go back to reference Azmi W, Banerjee UC (2001) Biological decolorization of crystal violet by a newly isolated Bacillus sp. and microbial assessment of toxicity of untreated and treated dye. Scientia Iranica 8(3):171–178 Azmi W, Banerjee UC (2001) Biological decolorization of crystal violet by a newly isolated Bacillus sp. and microbial assessment of toxicity of untreated and treated dye. Scientia Iranica 8(3):171–178
go back to reference Azmi W, Sani RK, Banerjee UC (1998) Biodegradation of triphenylmethane dyes. Enzyme Microb Technol 22(3):185–191CrossRef Azmi W, Sani RK, Banerjee UC (1998) Biodegradation of triphenylmethane dyes. Enzyme Microb Technol 22(3):185–191CrossRef
go back to reference Banat IM, Nigam P, Singh D, Marchant R (1996) Microbial decolorization of textile-dye-containing effluxents: a review. Biores Technol 58:217–227CrossRef Banat IM, Nigam P, Singh D, Marchant R (1996) Microbial decolorization of textile-dye-containing effluxents: a review. Biores Technol 58:217–227CrossRef
go back to reference Banat IM, McMullan G, Meehan C, Kirby N, Nigam P, Smyth WF, Marchant R (1999) Microbial decolorization of textile dyes present in textile industries effluent. In: Proceedings of the industrial waste technical conference, Indianapolis, IN, pp 1–16 Banat IM, McMullan G, Meehan C, Kirby N, Nigam P, Smyth WF, Marchant R (1999) Microbial decolorization of textile dyes present in textile industries effluent. In: Proceedings of the industrial waste technical conference, Indianapolis, IN, pp 1–16
go back to reference Bansode RR, Losso JN, Marshall WE, Rao RM, Portier RJ (2003) Adsorption of metal ions by pecan shell-based granular activated carbons. Biores Technol 89:115–119CrossRef Bansode RR, Losso JN, Marshall WE, Rao RM, Portier RJ (2003) Adsorption of metal ions by pecan shell-based granular activated carbons. Biores Technol 89:115–119CrossRef
go back to reference Beekeepers Y (2000) Arising from reactive dyes in textile industry color fenton process remedy with, ITU Institute of Science, M.Sc., Istanbul Beekeepers Y (2000) Arising from reactive dyes in textile industry color fenton process remedy with, ITU Institute of Science, M.Sc., Istanbul
go back to reference Bizuneh A (2012) Textile effluent treatment & decolorization techniques. Chem Bulg J Sci Edu 21:434–456 Bizuneh A (2012) Textile effluent treatment & decolorization techniques. Chem Bulg J Sci Edu 21:434–456
go back to reference Bonney V (1981) Browning CH: sterilization of the skin and other surfaces by a mixture of crystal violet and brilliant green. Br Med J 1:562–563CrossRef Bonney V (1981) Browning CH: sterilization of the skin and other surfaces by a mixture of crystal violet and brilliant green. Br Med J 1:562–563CrossRef
go back to reference Bumpus JA, Brock BJ (1988) Biodegradation of crystal violet by the white rot fungus Phanerochaete chrysosporium. Appl Environ Microbiol 54:1143–1150 Bumpus JA, Brock BJ (1988) Biodegradation of crystal violet by the white rot fungus Phanerochaete chrysosporium. Appl Environ Microbiol 54:1143–1150
go back to reference Camarero S, Ibarra D, Martinez M, Martinez AT (2005) Lignin derived compounds as efficient laccase mediators for decolorization of different types of recalcitrant dyes. Appl Environ Microbiol 71:1775–1784CrossRef Camarero S, Ibarra D, Martinez M, Martinez AT (2005) Lignin derived compounds as efficient laccase mediators for decolorization of different types of recalcitrant dyes. Appl Environ Microbiol 71:1775–1784CrossRef
go back to reference Carneiro PA, Osugi ME, Fugivara CS, Boralle N, Furlan M, Zanoni MV (2005) Evaluation of different electrochemical methods on the oxidation and degradation of Reactive Blue 4 in aqueous solution. Chemosphere 59:431–439CrossRef Carneiro PA, Osugi ME, Fugivara CS, Boralle N, Furlan M, Zanoni MV (2005) Evaluation of different electrochemical methods on the oxidation and degradation of Reactive Blue 4 in aqueous solution. Chemosphere 59:431–439CrossRef
go back to reference Caro H, Kern A (1883) Manufacture of dye-stuff. Caro H, Kern A (1883) Manufacture of dye-stuff.
go back to reference Chakraborty S, Purkait MK, DasGupta S, De S, Basu JK (2003) Nanofiltration of textile plant effluent for color removal and reduction in COD. Sep Purif Technol 31:141–151CrossRef Chakraborty S, Purkait MK, DasGupta S, De S, Basu JK (2003) Nanofiltration of textile plant effluent for color removal and reduction in COD. Sep Purif Technol 31:141–151CrossRef
go back to reference Chakraborty S, Chowdhury S, Saha PD (2012a) Adsorption of crystal violet from aqueous solution onto sugarcane bagasse: central composite design for optimization of process variables. J Water Reuse Desal 2:55–65CrossRef Chakraborty S, Chowdhury S, Saha PD (2012a) Adsorption of crystal violet from aqueous solution onto sugarcane bagasse: central composite design for optimization of process variables. J Water Reuse Desal 2:55–65CrossRef
go back to reference Chakraborty S, Chowdhury S, Saha PD (2012b) Fish (Labeo rohita) scales as a new biosorbent for removal of textile dyes from aqueous solutions. J Water Reuse Desal 2:175–184CrossRef Chakraborty S, Chowdhury S, Saha PD (2012b) Fish (Labeo rohita) scales as a new biosorbent for removal of textile dyes from aqueous solutions. J Water Reuse Desal 2:175–184CrossRef
go back to reference Chakraborty S, Chowdhury S, Saha PD (2012c) Batch removal of crystal violet from aqueous solution by H2SO4 modified sugarcane bagasse: equilibrium, kinetic, and thermodynamic profile. Sep Sci Technol 47:1898–1905CrossRef Chakraborty S, Chowdhury S, Saha PD (2012c) Batch removal of crystal violet from aqueous solution by H2SO4 modified sugarcane bagasse: equilibrium, kinetic, and thermodynamic profile. Sep Sci Technol 47:1898–1905CrossRef
go back to reference Chakraborty S, Chowdhury S, Saha PD (2012d) Biosorption of hazardous textile dyes from aqueous solutions by hen feathers: batch and column studies. Korean J Chem Eng 29:1567–1576CrossRef Chakraborty S, Chowdhury S, Saha PD (2012d) Biosorption of hazardous textile dyes from aqueous solutions by hen feathers: batch and column studies. Korean J Chem Eng 29:1567–1576CrossRef
go back to reference Chakraborty S, Chowdhury S, Saha PD (2013) Artificial neural network (ANN) modelling of dynamic adsorption of crystal violet from aqueous solution using citric-acid modified rice (Oryza sativa) straw as adsorbent. Clean Technol Environ Policy 15:255–264CrossRef Chakraborty S, Chowdhury S, Saha PD (2013) Artificial neural network (ANN) modelling of dynamic adsorption of crystal violet from aqueous solution using citric-acid modified rice (Oryza sativa) straw as adsorbent. Clean Technol Environ Policy 15:255–264CrossRef
go back to reference Charaborty S, Chowdhury S, Saha PS (2011) Adsorption of crystal violet from aqueous solution onto NaOH-modified rice husk. Carbohydr Polym 86:1533–1541CrossRef Charaborty S, Chowdhury S, Saha PS (2011) Adsorption of crystal violet from aqueous solution onto NaOH-modified rice husk. Carbohydr Polym 86:1533–1541CrossRef
go back to reference Chen CC, Liao HJ, Cheng CY, Yen CY, Chung YC (2007) Biodegradation of crystal violet by Pseudomonas putida. Biotechnol Lett 29(3):391–396CrossRef Chen CC, Liao HJ, Cheng CY, Yen CY, Chung YC (2007) Biodegradation of crystal violet by Pseudomonas putida. Biotechnol Lett 29(3):391–396CrossRef
go back to reference Cheriaa J, Khaireddine M, Rouabhia M, Bakhrouf A (2012) Removal of triphenylmethane dyes by bacterial consortium. Scientific World Journal 9 Cheriaa J, Khaireddine M, Rouabhia M, Bakhrouf A (2012) Removal of triphenylmethane dyes by bacterial consortium. Scientific World Journal 9
go back to reference Cho BP, Yang T, Blankenship LR, Moody JD, Churchwell M, Bebland FA, Culp SC (2003) Synthesis and characterization of N-demethylated metabolites of malachite green and leuco malachite green. Chem Res Toxicol 16:285–294CrossRef Cho BP, Yang T, Blankenship LR, Moody JD, Churchwell M, Bebland FA, Culp SC (2003) Synthesis and characterization of N-demethylated metabolites of malachite green and leuco malachite green. Chem Res Toxicol 16:285–294CrossRef
go back to reference Chowdhury S, Saha P (2010) Sea shell powder as a new adsorbent to remove Basic Green 4 (Malachite Green) from aqueous solutions: equilirium, kinetic and thermodynamic studies. Chem Eng J 164:168–177CrossRef Chowdhury S, Saha P (2010) Sea shell powder as a new adsorbent to remove Basic Green 4 (Malachite Green) from aqueous solutions: equilirium, kinetic and thermodynamic studies. Chem Eng J 164:168–177CrossRef
go back to reference Chowdhury S, Chakraborty S, Saha PD (2013a) Removal of crystal violet from aqueous solution by adsorption onto eggshells: equilibrium, kinetics, thermodynamics and artificial neural network modeling. Waste Biomass Valorization 4:655–664CrossRef Chowdhury S, Chakraborty S, Saha PD (2013a) Removal of crystal violet from aqueous solution by adsorption onto eggshells: equilibrium, kinetics, thermodynamics and artificial neural network modeling. Waste Biomass Valorization 4:655–664CrossRef
go back to reference Chowdhury S, Chakraborty S, Saha PD (2013b) Adsorption of crystal violet from aqueous solution by citric acid modified rice straw: equilibrium, kinetics, and thermodynamics. Sep Sci Technol 48:1348–1399CrossRef Chowdhury S, Chakraborty S, Saha PD (2013b) Adsorption of crystal violet from aqueous solution by citric acid modified rice straw: equilibrium, kinetics, and thermodynamics. Sep Sci Technol 48:1348–1399CrossRef
go back to reference Chowdhury S, Chakraborty S, Saha PD (2013c) Response surface optimization of a dynamic dye adsorption process: a case study of crystal violet adsorption onto NaOH-modified rice husk. Environ Sci Pollut Res 20:1698–1705CrossRef Chowdhury S, Chakraborty S, Saha PD (2013c) Response surface optimization of a dynamic dye adsorption process: a case study of crystal violet adsorption onto NaOH-modified rice husk. Environ Sci Pollut Res 20:1698–1705CrossRef
go back to reference Chu W, Ma CW (2000) Quantitative prediction of direct and indirect dye ozonation kinetics. Water Res 34:3153–3160CrossRef Chu W, Ma CW (2000) Quantitative prediction of direct and indirect dye ozonation kinetics. Water Res 34:3153–3160CrossRef
go back to reference Claus H, Faber G, Konig H (2002) Redox mediated decolorization of synthetic dyes by fungal laccases. Appl Microbial Biotechnol 59:672–678CrossRef Claus H, Faber G, Konig H (2002) Redox mediated decolorization of synthetic dyes by fungal laccases. Appl Microbial Biotechnol 59:672–678CrossRef
go back to reference Cowley ID, Wase DAJ (1981) Anaerobic digestion of farm wastes; a review – part 1. Process Biochem 28–33 Cowley ID, Wase DAJ (1981) Anaerobic digestion of farm wastes; a review – part 1. Process Biochem 28–33
go back to reference Crites R, Tchobanoglous G (1998) Small and decentralized wastewater management systems. McGraw-Hill, New York, NY, pp 527–558 Crites R, Tchobanoglous G (1998) Small and decentralized wastewater management systems. McGraw-Hill, New York, NY, pp 527–558
go back to reference Cunningham WP, Siago BW (2001) Environment science global concern. McGraw Hill, New York, NY, pp 267–269 Cunningham WP, Siago BW (2001) Environment science global concern. McGraw Hill, New York, NY, pp 267–269
go back to reference Daneshvar N, Khataee AR, Rasoulifard MH, Pourhassan M (2006) Biodegradation of dye solution containing malachite green: optimization of effective parameters using Taguchi method. J Hazard Mat 143:214–219CrossRef Daneshvar N, Khataee AR, Rasoulifard MH, Pourhassan M (2006) Biodegradation of dye solution containing malachite green: optimization of effective parameters using Taguchi method. J Hazard Mat 143:214–219CrossRef
go back to reference Daneshvar N, Ayazloo M, Khataee AR, Pourhassan M (2007) Biological decolorization of dye solution containing Malachite Green by Microalgae Cosmarium sp. Biores Technol 98:1176–1182CrossRef Daneshvar N, Ayazloo M, Khataee AR, Pourhassan M (2007) Biological decolorization of dye solution containing Malachite Green by Microalgae Cosmarium sp. Biores Technol 98:1176–1182CrossRef
go back to reference Das SS, Dey S, Bhattacharyya BC (1995) Dye decolorization in a column bioreactor using the wood-degrading fungus Phanerochaete chrysosporium. Ind Chem Eng 37:176–180 Das SS, Dey S, Bhattacharyya BC (1995) Dye decolorization in a column bioreactor using the wood-degrading fungus Phanerochaete chrysosporium. Ind Chem Eng 37:176–180
go back to reference Diamante C, Bergfeld WF, Belsito DV, Klaassen CD, Marks JG Jr, Shank TJ, Snyder PW, Alan Andersen F (2009) Final report on the safety assessment of Basic Violet 1, Basic Violet 3 and Basic Violet 4. Int J Toxicol 28:193–204CrossRef Diamante C, Bergfeld WF, Belsito DV, Klaassen CD, Marks JG Jr, Shank TJ, Snyder PW, Alan Andersen F (2009) Final report on the safety assessment of Basic Violet 1, Basic Violet 3 and Basic Violet 4. Int J Toxicol 28:193–204CrossRef
go back to reference US Food and Drug Administration (2009) Accessed 18 Aug 2010 US Food and Drug Administration (2009) Accessed 18 Aug 2010
go back to reference Fan HJ, Huang ST, Chung WH, Jan JL, Lin WY, Chen CC (2009) Degradation pathways of crystal violet by fenton and fenton-like systems: condition optimization and intermediate separation and identification. J Hazard Mat 171:1032–1044CrossRef Fan HJ, Huang ST, Chung WH, Jan JL, Lin WY, Chen CC (2009) Degradation pathways of crystal violet by fenton and fenton-like systems: condition optimization and intermediate separation and identification. J Hazard Mat 171:1032–1044CrossRef
go back to reference Ferreira VS, Magalhaes DB, King SH, De Silva JG, Bon EP (2000) N-Demethylation of methylene blue by lignin peroxidase from Phanerochaete chrysosporium. Appl Biochem Biotechnol 84:255–265CrossRef Ferreira VS, Magalhaes DB, King SH, De Silva JG, Bon EP (2000) N-Demethylation of methylene blue by lignin peroxidase from Phanerochaete chrysosporium. Appl Biochem Biotechnol 84:255–265CrossRef
go back to reference Forgacs E, Cserhati T, Oros G (2004) Removal of synthetic dyes from wastewaters: a review. Environ Int 30:953–971CrossRef Forgacs E, Cserhati T, Oros G (2004) Removal of synthetic dyes from wastewaters: a review. Environ Int 30:953–971CrossRef
go back to reference Franciscon E, Zille A, Dias GF, Ragaanin De Menezes C, Durrant LR, Cavaco-Paulo A (2009) Biodegradation of textile azo dyes by a facultative staphylococcus Arlettae strain VN-11 using a sequential microaerophilic/aerobic process. Int Biodeter Biodegr 63:280–288CrossRef Franciscon E, Zille A, Dias GF, Ragaanin De Menezes C, Durrant LR, Cavaco-Paulo A (2009) Biodegradation of textile azo dyes by a facultative staphylococcus Arlettae strain VN-11 using a sequential microaerophilic/aerobic process. Int Biodeter Biodegr 63:280–288CrossRef
go back to reference Gaehr F, Hermanutz F, Oppermann W (1994) Ozonation an important technique to comply with new German laws for textile wastewater treatment. Water Sci Technol 30:255–263 Gaehr F, Hermanutz F, Oppermann W (1994) Ozonation an important technique to comply with new German laws for textile wastewater treatment. Water Sci Technol 30:255–263
go back to reference Gessner T, Mayer U (2002) Triarylmethane and diarylmethane dyes. Ullmann’s encyclopedia of industrial chemistry, 6th edn. Wiley-VCH, Weinheim Gessner T, Mayer U (2002) Triarylmethane and diarylmethane dyes. Ullmann’s encyclopedia of industrial chemistry, 6th edn. Wiley-VCH, Weinheim
go back to reference Gill PK, Arora DS, Chander M (2002) Biodecolorization of azo and triphenylmethane dyes by Dacoits squalens and Phlebia sp. Ind J Microbiol Biotechnol 28:201–203CrossRef Gill PK, Arora DS, Chander M (2002) Biodecolorization of azo and triphenylmethane dyes by Dacoits squalens and Phlebia sp. Ind J Microbiol Biotechnol 28:201–203CrossRef
go back to reference Gogate PR, Pandit AB (2004) Reviews of imperative technologies for wastewater treatment. I: oxidation technologies at ambient conditions. Adv Environ Res 8:501–551CrossRef Gogate PR, Pandit AB (2004) Reviews of imperative technologies for wastewater treatment. I: oxidation technologies at ambient conditions. Adv Environ Res 8:501–551CrossRef
go back to reference Golob V, Ojstrsek A (2005) Removal of vat and disperse dyes from residual pad liquors. Dyes Pigments 64:57–61CrossRef Golob V, Ojstrsek A (2005) Removal of vat and disperse dyes from residual pad liquors. Dyes Pigments 64:57–61CrossRef
go back to reference Gosavi VD, Sharma S (2014) A general review on various treatment methods for textile wastewater. J Environ Sci Comput Sci Eng Technol 3:29–39 Gosavi VD, Sharma S (2014) A general review on various treatment methods for textile wastewater. J Environ Sci Comput Sci Eng Technol 3:29–39
go back to reference Gregory P (1993) Dyes and dye intermediates. In: Kroschwitz JI (ed) Encyclopedia of chemical technology. Wiley, New York, NY Gregory P (1993) Dyes and dye intermediates. In: Kroschwitz JI (ed) Encyclopedia of chemical technology. Wiley, New York, NY
go back to reference Hao O, Kim H, Chiang PC (2000) Decolorization of wastewater. Crit Rev Environ Sci Technol 30:449–505CrossRef Hao O, Kim H, Chiang PC (2000) Decolorization of wastewater. Crit Rev Environ Sci Technol 30:449–505CrossRef
go back to reference Hashimoto T, Ohori M, Kashima T, Yamamoto H, Tachibana M (2013) Chemical cystitis due to crystal violet dye: a case report. J Med Case Rep 7:145CrossRef Hashimoto T, Ohori M, Kashima T, Yamamoto H, Tachibana M (2013) Chemical cystitis due to crystal violet dye: a case report. J Med Case Rep 7:145CrossRef
go back to reference Henderson AL, Schmitt TC, Heinze TM, Cerniglia CE (1997) Reduction of malachite green to leucomalachite green by intestinal bacteria. Appl Environ Microbiol 63:4099–4101 Henderson AL, Schmitt TC, Heinze TM, Cerniglia CE (1997) Reduction of malachite green to leucomalachite green by intestinal bacteria. Appl Environ Microbiol 63:4099–4101
go back to reference Hodge HC, Indra J, Drobeck HP, Duprey LP, Tainter ML (1972) Acute oral toxicity of methylrosaniline chloride. Toxicol Appl Pharmacol 22:1–5CrossRef Hodge HC, Indra J, Drobeck HP, Duprey LP, Tainter ML (1972) Acute oral toxicity of methylrosaniline chloride. Toxicol Appl Pharmacol 22:1–5CrossRef
go back to reference Husain Q (2009) Peroxidase mediated decolorization and remediation of wastewater containing industrial dyes: a review. Rev Environ Sci Biotechnol 3:117–140 Husain Q (2009) Peroxidase mediated decolorization and remediation of wastewater containing industrial dyes: a review. Rev Environ Sci Biotechnol 3:117–140
go back to reference Jadhave JP, Govindwar SP (2006) Biotransformation of malachite green by Saccharomyces cerevisiae. Yeast 23:315–323CrossRef Jadhave JP, Govindwar SP (2006) Biotransformation of malachite green by Saccharomyces cerevisiae. Yeast 23:315–323CrossRef
go back to reference Kagalkar AN, Jagtap UB, Jhadav JP, Govindwar SP, Bapat SA (2009) Biotechnological strategies for phytoremediation of the sulfonated azo dye direct Red 5B using Blumea malcolmii Hook. Biores Technol 100:4104–4110CrossRef Kagalkar AN, Jagtap UB, Jhadav JP, Govindwar SP, Bapat SA (2009) Biotechnological strategies for phytoremediation of the sulfonated azo dye direct Red 5B using Blumea malcolmii Hook. Biores Technol 100:4104–4110CrossRef
go back to reference Kagalkar NA, Jagtap UB, Jadhav JP, Govindwar SP, Bapat SA (2010) Studies on phytoremediation potentially of Typhonium flagelliforme for the degradation of Brilliant blue R, planta. Kagalkar NA, Jagtap UB, Jadhav JP, Govindwar SP, Bapat SA (2010) Studies on phytoremediation potentially of Typhonium flagelliforme for the degradation of Brilliant blue R, planta.
go back to reference Kalyani DC, Patil PS, Jadhav JP, Govindwar SP (2008) Biodegradation of reactive textile dye Red BLI by an isolated bacterium Pseudomonas sp. SUK1. Biores Technol 99:4635–4641CrossRef Kalyani DC, Patil PS, Jadhav JP, Govindwar SP (2008) Biodegradation of reactive textile dye Red BLI by an isolated bacterium Pseudomonas sp. SUK1. Biores Technol 99:4635–4641CrossRef
go back to reference Kersten PJ, Kalyanaraman B, Hammel KE, Reinhammar B, Kirk TK (1990) Comparison of lignin peroxidase, Horseradish peroxidase and laccase in the oxidation of methoxybenzenes. Biochem J 268:475–480CrossRef Kersten PJ, Kalyanaraman B, Hammel KE, Reinhammar B, Kirk TK (1990) Comparison of lignin peroxidase, Horseradish peroxidase and laccase in the oxidation of methoxybenzenes. Biochem J 268:475–480CrossRef
go back to reference Kim SJ, Koh DH, Park JS, Ahn HS, Choi JB, Kim YS (2003) Hemorrhagic cystitis due to intravesical instillation of gentian violet completely recovered with conservative therapy. Yonsei Med J 4:163–165CrossRef Kim SJ, Koh DH, Park JS, Ahn HS, Choi JB, Kim YS (2003) Hemorrhagic cystitis due to intravesical instillation of gentian violet completely recovered with conservative therapy. Yonsei Med J 4:163–165CrossRef
go back to reference Kiran I, Ilhan S, Caner N, Iscen CF, Yildiz Z (2009) Biosorption properties of dried Neurospora crassa for the removal of Burazol Blue ED dye. Desalination 24:273–278CrossRef Kiran I, Ilhan S, Caner N, Iscen CF, Yildiz Z (2009) Biosorption properties of dried Neurospora crassa for the removal of Burazol Blue ED dye. Desalination 24:273–278CrossRef
go back to reference Koyuncu I (2002) Reactive dye removal in dye/salt mixtures by nanofiltration membranes containing vinyl sulphone dye: effects of feed concentration and cross flow velocity. Desalination 143:243–253CrossRef Koyuncu I (2002) Reactive dye removal in dye/salt mixtures by nanofiltration membranes containing vinyl sulphone dye: effects of feed concentration and cross flow velocity. Desalination 143:243–253CrossRef
go back to reference Kumar R, Ahmad R (2010) Adsorption studies of hazardous malachite green onto treated ginger waste. J Environ Manage 91(4):1032–1038CrossRef Kumar R, Ahmad R (2010) Adsorption studies of hazardous malachite green onto treated ginger waste. J Environ Manage 91(4):1032–1038CrossRef
go back to reference Kumar R, Ahmad R (2011) Biosorption of hazardous crystal violet dye from aqueous solution onto treated ginger waste (TGW). Desalination 265:112–118CrossRef Kumar R, Ahmad R (2011) Biosorption of hazardous crystal violet dye from aqueous solution onto treated ginger waste (TGW). Desalination 265:112–118CrossRef
go back to reference Kumar MNVR, Sridhari TR, Bhavani KD, Dutta PK (1998) Trends in color removal from textile mill effluents. Colorage 40:25–34 Kumar MNVR, Sridhari TR, Bhavani KD, Dutta PK (1998) Trends in color removal from textile mill effluents. Colorage 40:25–34
go back to reference Kunamneni A, Ballesteros A, Plou FJ, Alcalde M (2007) Communicating current research and educational topics and trends in applied microbiology. World Scientific Publishing Co Pvt Ltd, Singapore, pp 233–245 Kunamneni A, Ballesteros A, Plou FJ, Alcalde M (2007) Communicating current research and educational topics and trends in applied microbiology. World Scientific Publishing Co Pvt Ltd, Singapore, pp 233–245
go back to reference Kunamneni A, Plou FJ, Ballesteros A, Alcalde M (2008) Laccase and their applications – a patent review. Recent Pat Biotechnol 2:10–24CrossRef Kunamneni A, Plou FJ, Ballesteros A, Alcalde M (2008) Laccase and their applications – a patent review. Recent Pat Biotechnol 2:10–24CrossRef
go back to reference Kunjadia PD, Patel FD, Nagee A, Mukhopadhyaya PN, Dave GS (2012) Crystal violet (Triphenylmethane Dye) decolorization potential of pleurotus ostreatus (MTCC 142). Bio Res 7(1):1189–1199 Kunjadia PD, Patel FD, Nagee A, Mukhopadhyaya PN, Dave GS (2012) Crystal violet (Triphenylmethane Dye) decolorization potential of pleurotus ostreatus (MTCC 142). Bio Res 7(1):1189–1199
go back to reference Kwasniewska K (1985) Biodegradation of crystal violet (hexamethyl-prosaniline chloride) by oxidative red yeasts. Bull Environ Contam Toxicol 34:323–330CrossRef Kwasniewska K (1985) Biodegradation of crystal violet (hexamethyl-prosaniline chloride) by oxidative red yeasts. Bull Environ Contam Toxicol 34:323–330CrossRef
go back to reference Libra AJ, Borchert M, Vigelahn L, Storm T (2004) Two stage biological treatment of a diazo reactive textile dye and the fate of the dye metabolites. Chemosphere 56:167–180CrossRef Libra AJ, Borchert M, Vigelahn L, Storm T (2004) Two stage biological treatment of a diazo reactive textile dye and the fate of the dye metabolites. Chemosphere 56:167–180CrossRef
go back to reference Lin SH, Lin CM (1993) Treatment of textile waste effluents by ozonation and chemical coagulation. Water Res 27:1743–1748CrossRef Lin SH, Lin CM (1993) Treatment of textile waste effluents by ozonation and chemical coagulation. Water Res 27:1743–1748CrossRef
go back to reference Littlefield NA, Blackwell BN, Hewitt D, Gaylor D (1985) Chronic toxicity and carcinogenicity studies of gentian violet in mice. Fund Appl Toxicol 5:902–912CrossRef Littlefield NA, Blackwell BN, Hewitt D, Gaylor D (1985) Chronic toxicity and carcinogenicity studies of gentian violet in mice. Fund Appl Toxicol 5:902–912CrossRef
go back to reference Liu W, Chao Y, Yang X, Bao H, Qian S (2004) Biodecolorization of azo, anthraquinonic and triphenylmethane dyes by white-rot fungi and a laccase secreting engineered strain. Ind J Microbiol Biotechnol 31:127–132CrossRef Liu W, Chao Y, Yang X, Bao H, Qian S (2004) Biodecolorization of azo, anthraquinonic and triphenylmethane dyes by white-rot fungi and a laccase secreting engineered strain. Ind J Microbiol Biotechnol 31:127–132CrossRef
go back to reference Machenbach I (1998) Membrane technology for dye house effluent treatment. Membr Technol 96:7–10 Machenbach I (1998) Membrane technology for dye house effluent treatment. Membr Technol 96:7–10
go back to reference Mathur N, Bhatnagar P, Bakre P (2005) Assessing mutagenicity of textile dyes from Pali (Rajasthan) using Ames bioassay. Appl Ecol Environ Res 4:111–118CrossRef Mathur N, Bhatnagar P, Bakre P (2005) Assessing mutagenicity of textile dyes from Pali (Rajasthan) using Ames bioassay. Appl Ecol Environ Res 4:111–118CrossRef
go back to reference Mauskan JM (2007) Advanced methods for treatment of textile industry effluents. Central Pollution Control Board Ministry of Environment of Forests, New Delhi Mauskan JM (2007) Advanced methods for treatment of textile industry effluents. Central Pollution Control Board Ministry of Environment of Forests, New Delhi
go back to reference Michaels GB, Lewis DL (1986) Microbial transformation rates of azo and triphenylmethane dyes. Environ Toxicol Chem 5:161–166CrossRef Michaels GB, Lewis DL (1986) Microbial transformation rates of azo and triphenylmethane dyes. Environ Toxicol Chem 5:161–166CrossRef
go back to reference Michaels GB, Lewis DL (2006) Sorption and toxicity of azo and triphyenylmethane dyes to aquatic microbial populations. Environ Toxicol Chem 4:45–50CrossRef Michaels GB, Lewis DL (2006) Sorption and toxicity of azo and triphyenylmethane dyes to aquatic microbial populations. Environ Toxicol Chem 4:45–50CrossRef
go back to reference Mielgo L, Moreira MT, Feijoo G, Lema JM (2001) A packed bed fungal bioreactor for the continuous decolorisation of azo dyes (Orange II). J Biotechnol 89:99–106CrossRef Mielgo L, Moreira MT, Feijoo G, Lema JM (2001) A packed bed fungal bioreactor for the continuous decolorisation of azo dyes (Orange II). J Biotechnol 89:99–106CrossRef
go back to reference Mishra A, Bajpai M (2005) Flocculation behavior of model textile wastewater treated with a food grade polysaccharide. J Hazard Mater 118:213–217CrossRef Mishra A, Bajpai M (2005) Flocculation behavior of model textile wastewater treated with a food grade polysaccharide. J Hazard Mater 118:213–217CrossRef
go back to reference Mishra G, Tripathy M (1993) A critical review of the treatments for decolorization of textile effluent. Colourage 40:35–38 Mishra G, Tripathy M (1993) A critical review of the treatments for decolorization of textile effluent. Colourage 40:35–38
go back to reference Mittal A, Mittal J, Malviya A, Kaur D, Gupta VK (2010) Adsorption of hazardous crystal violet from waste water by waste materials. J Colloid Interface Sci 343:463–473CrossRef Mittal A, Mittal J, Malviya A, Kaur D, Gupta VK (2010) Adsorption of hazardous crystal violet from waste water by waste materials. J Colloid Interface Sci 343:463–473CrossRef
go back to reference Mondal PK, Ahmad R, Usmani SQ (2010) Anaerobic biodegradation of triphenylmethane dyes in a hybrid UASFB reactor for wastewater remediation. Biodegradation 21:1041–1047CrossRef Mondal PK, Ahmad R, Usmani SQ (2010) Anaerobic biodegradation of triphenylmethane dyes in a hybrid UASFB reactor for wastewater remediation. Biodegradation 21:1041–1047CrossRef
go back to reference Moturi B, Singara CMA (2009) Decolorization of crystal violet and malachite green by fungi. Scientific World Journal 4:28–33 Moturi B, Singara CMA (2009) Decolorization of crystal violet and malachite green by fungi. Scientific World Journal 4:28–33
go back to reference Movahedin H, Shokoohi R, Parvaresh A, Hajia M, Jafri JA (2006) Evaluating the effect of glucose on phenol removal efficiency and changing the dominant microorganisms in the serial combined biological systems. J Res Health Sci 6:8–13 Movahedin H, Shokoohi R, Parvaresh A, Hajia M, Jafri JA (2006) Evaluating the effect of glucose on phenol removal efficiency and changing the dominant microorganisms in the serial combined biological systems. J Res Health Sci 6:8–13
go back to reference Mugdha A, Usha M (2012) Enzymatic treatment of wastewater containing dyestuffs using different delivery systems. Sci Rev Chem Commun 2:31–40 Mugdha A, Usha M (2012) Enzymatic treatment of wastewater containing dyestuffs using different delivery systems. Sci Rev Chem Commun 2:31–40
go back to reference Mugdha K, Mark S, Sridhar H (2011) Epigenomic and RNA structural correlates of polyadenylation. RNA biology 8(3):529–537 Mugdha K, Mark S, Sridhar H (2011) Epigenomic and RNA structural correlates of polyadenylation. RNA biology 8(3):529–537
go back to reference Muragesan K, Nam IH, Kim YM, Chang YS (2007) Enzyme Microb Technol 40:1662–1672CrossRef Muragesan K, Nam IH, Kim YM, Chang YS (2007) Enzyme Microb Technol 40:1662–1672CrossRef
go back to reference Muthukumar M, Sargunamani D, Senthilkumar M, Selvakumai N (2005) Studies on decoloration, toxity and the possibility for recycling of acid dye effluents using ozone treatment. Dyes Pigments 64:39–44CrossRef Muthukumar M, Sargunamani D, Senthilkumar M, Selvakumai N (2005) Studies on decoloration, toxity and the possibility for recycling of acid dye effluents using ozone treatment. Dyes Pigments 64:39–44CrossRef
go back to reference Nelson C, Cox M (2004) Principles of biochemistry, 4th edn. W.H. Freeman, New York, NY, pp 47–50 Nelson C, Cox M (2004) Principles of biochemistry, 4th edn. W.H. Freeman, New York, NY, pp 47–50
go back to reference Nelson CR, Hites RA (1980) Aromatic amines in and near the Buffalo River. Environ Sci Technol 14:1147–1149CrossRef Nelson CR, Hites RA (1980) Aromatic amines in and near the Buffalo River. Environ Sci Technol 14:1147–1149CrossRef
go back to reference Nesheiwat FK, Swanson AG (2000) Clean contaminated sites using Fenton’s reagent. Chem Eng Prog 96:61–66 Nesheiwat FK, Swanson AG (2000) Clean contaminated sites using Fenton’s reagent. Chem Eng Prog 96:61–66
go back to reference O’Neill C, Hawkes FR, Hawkes DL, Lourenco ND, Pinherio HM, Delee W (1999) Color in textile effluents sources, measurements, discharge consents and simulation. A review. J Chem Technol Biotechnol 74:1009–1018CrossRef O’Neill C, Hawkes FR, Hawkes DL, Lourenco ND, Pinherio HM, Delee W (1999) Color in textile effluents sources, measurements, discharge consents and simulation. A review. J Chem Technol Biotechnol 74:1009–1018CrossRef
go back to reference Ogutveren UB, Kaparal S (1994) Color removal from textile effluents by electrochemical destruction. J Environ Sci Health A 29:1–16CrossRef Ogutveren UB, Kaparal S (1994) Color removal from textile effluents by electrochemical destruction. J Environ Sci Health A 29:1–16CrossRef
go back to reference Pandey A, Single P, Iyengar L (2007) Bacterial decolorization and degradation of azo dyes. Int Biodeterior Biodegradation 59:73–84CrossRef Pandey A, Single P, Iyengar L (2007) Bacterial decolorization and degradation of azo dyes. Int Biodeterior Biodegradation 59:73–84CrossRef
go back to reference Park TJ, Lee KH, Jung EJ, Kim CW (1999) Removal of refractory organics and color in pigment wastewater with Fenton oxidation. Water Sci Technol 39:189–192CrossRef Park TJ, Lee KH, Jung EJ, Kim CW (1999) Removal of refractory organics and color in pigment wastewater with Fenton oxidation. Water Sci Technol 39:189–192CrossRef
go back to reference Parshetti G, Kalme S, Saratale G, Govindwar S (2006) Biodegradation of malachite green by Kocuria rosea MTCC 1532. Acta Chim Slov 4:492–498 Parshetti G, Kalme S, Saratale G, Govindwar S (2006) Biodegradation of malachite green by Kocuria rosea MTCC 1532. Acta Chim Slov 4:492–498
go back to reference Parshetti GK, Telke AA, Kalyani DC, Govindwar SP (2010) Decolorization and detoxification of sulfonated azo dye Methyl Orange by Kocuria rosea MTCC 1532. J Hazardous Mat 176(1–3):503–509 Parshetti GK, Telke AA, Kalyani DC, Govindwar SP (2010) Decolorization and detoxification of sulfonated azo dye Methyl Orange by Kocuria rosea MTCC 1532. J Hazardous Mat 176(1–3):503–509
go back to reference Parshetti GK, Parshetti SG, Telke AA, Kalyani DC, Doong RA, Govindwar SP (2011) Biodegradation of crystal violet by Agrobacterium radiobacter. J Environ Sci 23:1384–1393CrossRef Parshetti GK, Parshetti SG, Telke AA, Kalyani DC, Doong RA, Govindwar SP (2011) Biodegradation of crystal violet by Agrobacterium radiobacter. J Environ Sci 23:1384–1393CrossRef
go back to reference Pelegrini R, Peralto-Zamora P, de Andrade AR, Reyers J, Duran N (1999) Electrochemically assisted photocatalytic degradation of reactive dyes. Appl Catal B Environ 22:83–90CrossRef Pelegrini R, Peralto-Zamora P, de Andrade AR, Reyers J, Duran N (1999) Electrochemically assisted photocatalytic degradation of reactive dyes. Appl Catal B Environ 22:83–90CrossRef
go back to reference Peralto-Zamora P, Kunz A, Gomez de Morales S, Pelegrini R, de Capos MP, Reyes J, Duran N (1999) Degradation of reactive dyes I. A comparative study of ozonation, enzymatic and photochemical processes. Chemosphere 38:835–852CrossRef Peralto-Zamora P, Kunz A, Gomez de Morales S, Pelegrini R, de Capos MP, Reyes J, Duran N (1999) Degradation of reactive dyes I. A comparative study of ozonation, enzymatic and photochemical processes. Chemosphere 38:835–852CrossRef
go back to reference Raffi F, Hall JD, Cernigila CE (1997) Mutagenecity of azo dyes used in foods, drugs and cosmetics before and after reduction of Clostridium species from the human intestinal tract. Food Chem Toxicol 35:897–901CrossRef Raffi F, Hall JD, Cernigila CE (1997) Mutagenecity of azo dyes used in foods, drugs and cosmetics before and after reduction of Clostridium species from the human intestinal tract. Food Chem Toxicol 35:897–901CrossRef
go back to reference Raghavacharya C (1997) Color removal from industrial effluents – a comparative review of available technologies. Chem Eng World 32:53–54 Raghavacharya C (1997) Color removal from industrial effluents – a comparative review of available technologies. Chem Eng World 32:53–54
go back to reference Rajamohan N, Karthikeyan C (2004) Fungi biodegradation of dye house effluent and Kinetic modeling. Department of Chemical Engineering, Annamalai University, Annamalainagar, Annamalainagar Rajamohan N, Karthikeyan C (2004) Fungi biodegradation of dye house effluent and Kinetic modeling. Department of Chemical Engineering, Annamalai University, Annamalainagar, Annamalainagar
go back to reference Rao KLLN, Krishnaiah K, Ashutush N (1994) Color removal from a dye stuff industry effluent using activated carbon. Ind J Chem Technol 1:13–19 Rao KLLN, Krishnaiah K, Ashutush N (1994) Color removal from a dye stuff industry effluent using activated carbon. Ind J Chem Technol 1:13–19
go back to reference Reife A (1993) Kirk-Othmer encyclopedia of chemical technology, fourth ed, vol. 8, John Wiley, 753 Reife A (1993) Kirk-Othmer encyclopedia of chemical technology, fourth ed, vol. 8, John Wiley, 753
go back to reference Reinhardt C, Travis AS (2000) Heinrich Caro and the creation of modern chemical industry. Kluwer, Dordrecht, pp 208–209CrossRef Reinhardt C, Travis AS (2000) Heinrich Caro and the creation of modern chemical industry. Kluwer, Dordrecht, pp 208–209CrossRef
go back to reference Robinson T, McMullan G, Marchant R, Nigam P (2001) Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative. Biores Technol 77:247–255CrossRef Robinson T, McMullan G, Marchant R, Nigam P (2001) Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative. Biores Technol 77:247–255CrossRef
go back to reference Rodriguez CS, Tocam JL, Herrera JL (2006) Industrial and biotechnological applications of laccases: a review. Biotechnol Adv 24:500–513CrossRef Rodriguez CS, Tocam JL, Herrera JL (2006) Industrial and biotechnological applications of laccases: a review. Biotechnol Adv 24:500–513CrossRef
go back to reference Roth P, Sattler K, Berger R, Vim M (1992) Hydrophobicity and microbial activities, III, discoloring, detoxification, and degradation of triphenylmethane dyes. Zbl Microbiol 147:409–417 Roth P, Sattler K, Berger R, Vim M (1992) Hydrophobicity and microbial activities, III, discoloring, detoxification, and degradation of triphenylmethane dyes. Zbl Microbiol 147:409–417
go back to reference Sadrghayeni S, Beatson P, Schneider R, Fane A (1998) Water reclamation from municipal wastewater using combined microfiltration-reverse osmosis (ME-RO): preliminary performance data and microbiological aspects of system operation. Desalination 116:65–80CrossRef Sadrghayeni S, Beatson P, Schneider R, Fane A (1998) Water reclamation from municipal wastewater using combined microfiltration-reverse osmosis (ME-RO): preliminary performance data and microbiological aspects of system operation. Desalination 116:65–80CrossRef
go back to reference Saeed A, Sharif M, Iqbal M (2010) Application potential of grapefruit peel as dye sorbent: kinetics, equilibrium and mechanism of crystal violet adsorption. J Hazard Mater 179:564–572CrossRef Saeed A, Sharif M, Iqbal M (2010) Application potential of grapefruit peel as dye sorbent: kinetics, equilibrium and mechanism of crystal violet adsorption. J Hazard Mater 179:564–572CrossRef
go back to reference Saha PD, Chakraborty S, Chowdhury S (2012) Batch and continuous (fixed-bed column) biosorption of crystal violet by Artocarpus heterophyllus (jackfruit) leaf powder. Colloids Surf B Biointerfaces 92:262–270CrossRef Saha PD, Chakraborty S, Chowdhury S (2012) Batch and continuous (fixed-bed column) biosorption of crystal violet by Artocarpus heterophyllus (jackfruit) leaf powder. Colloids Surf B Biointerfaces 92:262–270CrossRef
go back to reference Schnick RA (1988) The impetus to register new therapeutants for aquaculture. Prog Fish Cult 50:190–196CrossRef Schnick RA (1988) The impetus to register new therapeutants for aquaculture. Prog Fish Cult 50:190–196CrossRef
go back to reference Sen S, Demirer GN (2003) Anaerobic treatment of synthetic textile wastewater containing a reactive azo dye. J Environ Eng 129:595–601CrossRef Sen S, Demirer GN (2003) Anaerobic treatment of synthetic textile wastewater containing a reactive azo dye. J Environ Eng 129:595–601CrossRef
go back to reference Senthilkumaar S, Kalaamani P, Subburaam CV (2006) Liquid phase adsorption of crystal violet onto activated carbons derived from male flowers of coconut tree. J Hazard Mater 136:800–808CrossRef Senthilkumaar S, Kalaamani P, Subburaam CV (2006) Liquid phase adsorption of crystal violet onto activated carbons derived from male flowers of coconut tree. J Hazard Mater 136:800–808CrossRef
go back to reference Sewekow U (1993) Treatment of reactive dye effluents with hydrogen peroxide/iron(II) sulphate. Melliand Textil 74:153–156 Sewekow U (1993) Treatment of reactive dye effluents with hydrogen peroxide/iron(II) sulphate. Melliand Textil 74:153–156
go back to reference Shah MP, Patel KA, Nair SS (2013) Microbiological removal of crystal violet dye by Bacillus subtilis ETL-2211. OA Biotechnol 2:9 Shah MP, Patel KA, Nair SS (2013) Microbiological removal of crystal violet dye by Bacillus subtilis ETL-2211. OA Biotechnol 2:9
go back to reference Shahin MM, Von Borstel RC (1978) Comparisons of mutation induction in reversion systems of Saccharomyces cerevisiae and Salmonella fyphimurium. Mutat Res 53:1–10CrossRef Shahin MM, Von Borstel RC (1978) Comparisons of mutation induction in reversion systems of Saccharomyces cerevisiae and Salmonella fyphimurium. Mutat Res 53:1–10CrossRef
go back to reference Sharma M, Kaushik A, Kaushik CP (2011) Waste biomass of Nostoc linckia as adsorbent of crystal violet dye: optimization based on statistical model. Int Biodeterior Biodegrad 65:513–521CrossRef Sharma M, Kaushik A, Kaushik CP (2011) Waste biomass of Nostoc linckia as adsorbent of crystal violet dye: optimization based on statistical model. Int Biodeterior Biodegrad 65:513–521CrossRef
go back to reference Shengfang L (2010) Removal of crystal violet from aqueous solution by sorption into semi-interpenetrated networks hydrogels constituted of poly(acrylic acid-acrylamide-methacrylate) and amylase. Biores Technol 101:2197–2202CrossRef Shengfang L (2010) Removal of crystal violet from aqueous solution by sorption into semi-interpenetrated networks hydrogels constituted of poly(acrylic acid-acrylamide-methacrylate) and amylase. Biores Technol 101:2197–2202CrossRef
go back to reference Slokar YM, Le Marechal MA (1997) Methods of decoloration of textile wastewater. Dyes Pigments 37:335–356CrossRef Slokar YM, Le Marechal MA (1997) Methods of decoloration of textile wastewater. Dyes Pigments 37:335–356CrossRef
go back to reference Sperling MV, de Lemos Chenicharo CA (2005) Biological wastewater treatment in warm climate regions. IWA Publ 1:495–656 Sperling MV, de Lemos Chenicharo CA (2005) Biological wastewater treatment in warm climate regions. IWA Publ 1:495–656
go back to reference Suzuki M (1997) Role of adsorption in water environment processes. Water Sci Technol 35:1–11CrossRef Suzuki M (1997) Role of adsorption in water environment processes. Water Sci Technol 35:1–11CrossRef
go back to reference Telke A, Kalyani D, Jadhav J, Govindwar S (2008) Kinetics and mechanism of reactive Red 141 degradation by a bacterial isolate Rhizobium radiobacter MTCC 8161. Acta Chim Slov 55:320–329 Telke A, Kalyani D, Jadhav J, Govindwar S (2008) Kinetics and mechanism of reactive Red 141 degradation by a bacterial isolate Rhizobium radiobacter MTCC 8161. Acta Chim Slov 55:320–329
go back to reference Thetner D (2000) Triphenylmethane and related dyes, Kirk-Othmer encyclopedia of chemical technology. Wiley, New York, NY Thetner D (2000) Triphenylmethane and related dyes, Kirk-Othmer encyclopedia of chemical technology. Wiley, New York, NY
go back to reference Tinghui L, Matsuura T, Sourirajan S (1983) Effect of membrane materials and pore sizes on reverse osmosis separation of dyes. Ind Eng Chem Prod Res Dev 22:77–85CrossRef Tinghui L, Matsuura T, Sourirajan S (1983) Effect of membrane materials and pore sizes on reverse osmosis separation of dyes. Ind Eng Chem Prod Res Dev 22:77–85CrossRef
go back to reference Toh YC, Yen JJL, Obbard JP, Ting YP (2003) Decolorization of azo dyes by white-rot fungi (WRF) isolated in Singapore. Enzyme Microbial Technol 33:569–575CrossRef Toh YC, Yen JJL, Obbard JP, Ting YP (2003) Decolorization of azo dyes by white-rot fungi (WRF) isolated in Singapore. Enzyme Microbial Technol 33:569–575CrossRef
go back to reference Treffry Goatley K, Buckley CA, Groves GR (1983) Reverse osmosis treatment and reuse of textile dye house effluents. Desalination 47:313–320CrossRef Treffry Goatley K, Buckley CA, Groves GR (1983) Reverse osmosis treatment and reuse of textile dye house effluents. Desalination 47:313–320CrossRef
go back to reference Tsai W, Chang CY, Ing CH, Chang CF (2004) Adsorption of acid dyes from aqueous solution on activated bleaching earth. J Colloid Interface Sci 275:72–78CrossRef Tsai W, Chang CY, Ing CH, Chang CF (2004) Adsorption of acid dyes from aqueous solution on activated bleaching earth. J Colloid Interface Sci 275:72–78CrossRef
go back to reference Upadhyay RS (2002) Microbial bioremediation of textile effluents in biotransformations: bioremediation technology for health and environmental protection. Upadhyay RS (2002) Microbial bioremediation of textile effluents in biotransformations: bioremediation technology for health and environmental protection.
go back to reference Us EPA (2000) Wastewater technology fact sheet. Trickling filters. 832-F-00-014. U.S. Environmental Protection Agency, Washington, DC Us EPA (2000) Wastewater technology fact sheet. Trickling filters. 832-F-00-014. U.S. Environmental Protection Agency, Washington, DC
go back to reference Vandevivere PC, Bianchi R, Verstaete W (1998) Treatment and reuse of wastewater from the textile wet-processing industry: review of emerging technologies. J Chem Technol Biotechnol 72:289–302CrossRef Vandevivere PC, Bianchi R, Verstaete W (1998) Treatment and reuse of wastewater from the textile wet-processing industry: review of emerging technologies. J Chem Technol Biotechnol 72:289–302CrossRef
go back to reference Vasdev K, Kuhad RC, Saxena RK (1995) Decolorization of triphenylmethane dye by the bird’s nest fungus Cyarhus bulleri. Curt Microbial 30:269–272CrossRef Vasdev K, Kuhad RC, Saxena RK (1995) Decolorization of triphenylmethane dye by the bird’s nest fungus Cyarhus bulleri. Curt Microbial 30:269–272CrossRef
go back to reference Verma P, Madamwar D (2003) Decolorization of synthetic dyes by a newly isolated strain of Serratia Marcescers. World J Microbiol Biotechnol 19:615–618CrossRef Verma P, Madamwar D (2003) Decolorization of synthetic dyes by a newly isolated strain of Serratia Marcescers. World J Microbiol Biotechnol 19:615–618CrossRef
go back to reference Walsh C, Walsh A (1986) Haemorrhagic cystitis due to gentian violet. Br Med J 293:732CrossRef Walsh C, Walsh A (1986) Haemorrhagic cystitis due to gentian violet. Br Med J 293:732CrossRef
go back to reference Watters JC, Biagtan E, Senler O (1991) Ultrafiltration of a textile plant effluent. Sep Sci Technol 26:1295–1313CrossRef Watters JC, Biagtan E, Senler O (1991) Ultrafiltration of a textile plant effluent. Sep Sci Technol 26:1295–1313CrossRef
go back to reference Wesenberg D, Kyriakides I, Agathos SN (2003) White-rot fungi and their enzymes for the treatment of industrial dye effluents. Biotechnol Adv 22:161–187CrossRef Wesenberg D, Kyriakides I, Agathos SN (2003) White-rot fungi and their enzymes for the treatment of industrial dye effluents. Biotechnol Adv 22:161–187CrossRef
go back to reference William A, Butler MA, Bloom SE, Matney TS (1979) Further study of the genetic toxicity of gentian violet. Mutat Res 66:103–112CrossRef William A, Butler MA, Bloom SE, Matney TS (1979) Further study of the genetic toxicity of gentian violet. Mutat Res 66:103–112CrossRef
go back to reference Willian AU, Pathak S, Cheryl J, Hsu TC (1978) Cytogenic toxicity of gentian violet and crystal violet on mammalian cells in vitro. Mutat Res 58:269–276CrossRef Willian AU, Pathak S, Cheryl J, Hsu TC (1978) Cytogenic toxicity of gentian violet and crystal violet on mammalian cells in vitro. Mutat Res 58:269–276CrossRef
go back to reference Xu Y, Lebrun RE (1991) Treatment of textile dye plant effluent by nanofiltration membrane. Sep Sci Technol 34:2501–2519CrossRef Xu Y, Lebrun RE (1991) Treatment of textile dye plant effluent by nanofiltration membrane. Sep Sci Technol 34:2501–2519CrossRef
go back to reference Yang Y, Wyatt DT II, Bahorshky M (1998) Decolorization of dyes using UV/H2O2 photochemical oxidation. Textil Chem Color 30:27–35 Yang Y, Wyatt DT II, Bahorshky M (1998) Decolorization of dyes using UV/H2O2 photochemical oxidation. Textil Chem Color 30:27–35
go back to reference Yatome C, Ogawa T, Matsui M (1991) Degradation of crystal violet by Bacillus subtilis. J Environ Sci Health 26:75–87 Yatome C, Ogawa T, Matsui M (1991) Degradation of crystal violet by Bacillus subtilis. J Environ Sci Health 26:75–87
go back to reference Yatome C, Yamada S, Ogawa T, Matsui M (1993) Degradation of crystal violet by Nocardia corallina. Appl Microbiol Biotechnol 38:565–569CrossRef Yatome C, Yamada S, Ogawa T, Matsui M (1993) Degradation of crystal violet by Nocardia corallina. Appl Microbiol Biotechnol 38:565–569CrossRef
go back to reference Yesilada O (1995) Decolorization of crystal violet by fungi. World J Microbial Biotechnol 11:601–602CrossRef Yesilada O (1995) Decolorization of crystal violet by fungi. World J Microbial Biotechnol 11:601–602CrossRef
Metadata
Title
Exposure to Crystal Violet, Its Toxic, Genotoxic and Carcinogenic Effects on Environment and Its Degradation and Detoxification for Environmental Safety
Authors
Sujata Mani
Ram Naresh Bharagava
Copyright Year
2016
DOI
https://doi.org/10.1007/978-3-319-23573-8_4