Chacko J, Kalidass S (2011) Enzymatic degradation of azo dyes – a review. Int J Environ Sci
1:1250–1255
Chandran C, Singh D, Nigam P (2002) Remediation of textile effluent using agricultural residues.
Appl Biochem Biotechnol 102–103:1–6
Chandrasekhar K, Kadier A, Kumar G, Nastro RA, Jeevitha V (2018) Challenges in microbial fuel
cell and future scope. In: Microbial fuel cell. Springer, Cham, p 483e499
Chang S (2014) Anaerobic membrane bioreactors (AnMBR) for wastewater treatment. Adv Chem
Eng Sci. https://doi.org/10.4236/aces.2014.41008
Choudhury AKR (2017) Sustainable chemical technologies for textile production. Sustain Fib Text
Elsevier Inc. https://doi.org/10.1016/B978-0-08-102041-8.00010-X
Coste CO, Marmagne, Jacquart JC (1996) Effluents decoloration. L’Industrie Text 1278:46–51
Crini G, Lichtfouse E, Wilson LD, Morin-Crini N (2019) Conventional and non-conventional
adsorbents for wastewater treatment. Environ Chem Lett. Springer. https://doi.org/10.1007/
s10311-018-0786-8
Curtis GP, Reinhard M (1994) Reductive dehalogenation of hexachloroethane, carbon tetrachloride
and bromoform by anthrax hydroquinone disulfonate and humic acid. Environ Sci Technol Co
New York 28:2393–2401
Dafale N, Wate S, Meshram S et al (2010) Bioremediation of wastewater containing azo dyes
through sequential anaerobic–aerobic bioreactor system and its biodiversity. Environ Rev
18:21–36
Daneshvar N, Ayazloo M, Khataee AR, Pourhassan M (2007) Biological decolorization of dye
solution containing malachite green by microalgae Cosmarium sp. Biores Technol. https://doi.
org/10.1016/j.biortech.2006.05.025
Deivasigamani C, Das N (2011) Biodegradation of basic violet 3 by Candida krusei isolated from
textile wastewater. Biodegradation 22(6):1169–1180
Dmochewitz S, Ballschmiter K (1988) Microbial transformation of technical mixtures of
polychlorinated biphenyls (PCB) by the fungus Aspergillus niger. Chemosphere 17:111–121
Dos Santos AB, Cervantes FJ, van Lier JB (2007) Review paper on current technologies for
decolorization of textile wastewaters: perspectives for anaerobic biotechnology. Biores Technol
98(12):2369–2385
Dotto J, Fagundes-Klen MR, Veit MT, Palácio SM, Bergamasco R (2019) Performance of different
coagulants in the coagulation/flocculation process of textile wastewater. J Clean Prod. https://
doi.org/10.1016/j.jclepro.2018.10.112
Duran N, Esposito E (2000) Potential applications of oxidative enzymes and phenoloxidase-like
compounds in wastewater and soil treatment: a review. Appl Catal B Environ 28:83–99
Ellis JT, Hengge RC, Sims MCD (2012) Acetone, butanol and ethanol production from wastewater
algae. Biore Technol 111:491–495
Ellouze E, Tahri N, Amar RB (2012) Enhancement of textile wastewater treatment process using
nanofiltration. Desalinization 286:16–23
Enayatzamir K, Alikhani HA, Yakhchali B, Tabandeh Rodríguez-Couto S (2010) Decolouration of
azo dyes by Phanerochaete chrysosporium immobilised into alginate beads. Environ Sci Poll
Res. https://doi.org/10.1007/s11356-009-0109-5
Eswaramoorthi S, Dhanapal K, Chauhan D (2008) Advanced in textile waste water treatment: the
case for UV-Ozonation and membrane bioreactor for common effluent treatment plants in
Tirupur, Tamil Nadu, India. Environment with people’s involvement Adin A. and Asano
T. 1998. The role of physicochemical treatment in wastewater reclamation and reuse. Wat Sci
Tech, 37:79–90 & Co-ordination in India. Coimbatore, India
Fitzpatrick B, Johnson J, Kump D, Smith J, Voss S, Shaffer H (2010) Rapid spread of invasive
genes into a threatened native species. Proc Natl Acad Sci USA 107:3606–3610
Frank PVZ, Lettinga G, Field JA (2001) Azo dye decolourization by anaerobic granular sludge.
Chemosphere 44:1169–1176
10 A Harmless Approach on Textile Effluent Detoxification: Bioremediation and. . .
215
1:1250–1255
Chandran C, Singh D, Nigam P (2002) Remediation of textile effluent using agricultural residues.
Appl Biochem Biotechnol 102–103:1–6
Chandrasekhar K, Kadier A, Kumar G, Nastro RA, Jeevitha V (2018) Challenges in microbial fuel
cell and future scope. In: Microbial fuel cell. Springer, Cham, p 483e499
Chang S (2014) Anaerobic membrane bioreactors (AnMBR) for wastewater treatment. Adv Chem
Eng Sci. https://doi.org/10.4236/aces.2014.41008
Choudhury AKR (2017) Sustainable chemical technologies for textile production. Sustain Fib Text
Elsevier Inc. https://doi.org/10.1016/B978-0-08-102041-8.00010-X
Coste CO, Marmagne, Jacquart JC (1996) Effluents decoloration. L’Industrie Text 1278:46–51
Crini G, Lichtfouse E, Wilson LD, Morin-Crini N (2019) Conventional and non-conventional
adsorbents for wastewater treatment. Environ Chem Lett. Springer. https://doi.org/10.1007/
s10311-018-0786-8
Curtis GP, Reinhard M (1994) Reductive dehalogenation of hexachloroethane, carbon tetrachloride
and bromoform by anthrax hydroquinone disulfonate and humic acid. Environ Sci Technol Co
New York 28:2393–2401
Dafale N, Wate S, Meshram S et al (2010) Bioremediation of wastewater containing azo dyes
through sequential anaerobic–aerobic bioreactor system and its biodiversity. Environ Rev
18:21–36
Daneshvar N, Ayazloo M, Khataee AR, Pourhassan M (2007) Biological decolorization of dye
solution containing malachite green by microalgae Cosmarium sp. Biores Technol. https://doi.
org/10.1016/j.biortech.2006.05.025
Deivasigamani C, Das N (2011) Biodegradation of basic violet 3 by Candida krusei isolated from
textile wastewater. Biodegradation 22(6):1169–1180
Dmochewitz S, Ballschmiter K (1988) Microbial transformation of technical mixtures of
polychlorinated biphenyls (PCB) by the fungus Aspergillus niger. Chemosphere 17:111–121
Dos Santos AB, Cervantes FJ, van Lier JB (2007) Review paper on current technologies for
decolorization of textile wastewaters: perspectives for anaerobic biotechnology. Biores Technol
98(12):2369–2385
Dotto J, Fagundes-Klen MR, Veit MT, Palácio SM, Bergamasco R (2019) Performance of different
coagulants in the coagulation/flocculation process of textile wastewater. J Clean Prod. https://
doi.org/10.1016/j.jclepro.2018.10.112
Duran N, Esposito E (2000) Potential applications of oxidative enzymes and phenoloxidase-like
compounds in wastewater and soil treatment: a review. Appl Catal B Environ 28:83–99
Ellis JT, Hengge RC, Sims MCD (2012) Acetone, butanol and ethanol production from wastewater
algae. Biore Technol 111:491–495
Ellouze E, Tahri N, Amar RB (2012) Enhancement of textile wastewater treatment process using
nanofiltration. Desalinization 286:16–23
Enayatzamir K, Alikhani HA, Yakhchali B, Tabandeh Rodríguez-Couto S (2010) Decolouration of
azo dyes by Phanerochaete chrysosporium immobilised into alginate beads. Environ Sci Poll
Res. https://doi.org/10.1007/s11356-009-0109-5
Eswaramoorthi S, Dhanapal K, Chauhan D (2008) Advanced in textile waste water treatment: the
case for UV-Ozonation and membrane bioreactor for common effluent treatment plants in
Tirupur, Tamil Nadu, India. Environment with people’s involvement Adin A. and Asano
T. 1998. The role of physicochemical treatment in wastewater reclamation and reuse. Wat Sci
Tech, 37:79–90 & Co-ordination in India. Coimbatore, India
Fitzpatrick B, Johnson J, Kump D, Smith J, Voss S, Shaffer H (2010) Rapid spread of invasive
genes into a threatened native species. Proc Natl Acad Sci USA 107:3606–3610
Frank PVZ, Lettinga G, Field JA (2001) Azo dye decolourization by anaerobic granular sludge.
Chemosphere 44:1169–1176
10 A Harmless Approach on Textile Effluent Detoxification: Bioremediation and. . .
215
