Rodriguez-Couto S (2013) Treatment of textile wastewater by white-rot fungi: still a faraway
reality? Text. Text Light Indus Sci Technol 2:113–119
Saleh FY, Lee GF, Wolf HW (1980) Selected organic pesticides, the occurrence, transformation and
removal from domestic wastewater. J WPCF 52(1):19–28
Santoro C, Arbizzani C, Erable B, Ieropoulos I (2017) Microbial fuel cells: from fundamentals to
applications. A review. J Power Sources 356:225e244
Saratale R, Saratale G, Chang J, Govindwar S (2001) Bacterial decolorization and degradation of
azo dyes: a review. J Taiwan Inst Chem Eng 42:138–157
Saravanan, P (2013) Studies on treatment of textile dyes using yeast cultures. Dissertation, Anna
University
Savin I, Butnaru R (2008) Wastewater characteristics in textile finishing mills. Environ Eng Manag
J 7(6):859–864. https://doi.org/10.30638/eemj.2008.113
Sekomo CB, Rousseau DPL, Saleh AS, Lens PNL (2014) Heavy metal removal in duckweed and
algae ponds as a polishing step for textile wastewater treatment. Ecol Eng 44:102–110
Seshadri S, Bishop PL, Agha AM (1994) Anaerobic/Aerobic treatment of selected azo dyes in
waste water. Waste Manage 14:127–137
Singh SN (2014) Microbial degradation of synthetic dyes in wastewaters. Springer; ISBN: 978-3319-10942-8, p 367
Singh S, Pakshirajan K, Daverey A (2010) Enhanced decolourization of Direct Red-80 dye by the
white rot fungus Phanerochaete chrysosporium employing sequential design of experiments.
Biodegradation 21(4):501–511
Sivaram NM, Gopal PM, Barik D (2018) Toxic waste from textile industries. In: Energy from toxic
organic waste for heat and power generation. Elsevier. https://doi.org/10.1016/B978-0-08102528-4.00004-3
Solis M, Solis A, Pérez H, Manjarrez N, Flores M (2012) Microbial decolouration of azo dyes: a
review. Process Biochem:47.1723–47.1748
Srivastava S, Agrawal S, Mondal M (2015) Characterization, isotherm and kinetic study of
Phaseolus vulgaris husk as an innovative adsorbent for Cr (VI) removal. Kor J Chem Eng.
https://doi.org/10.1007/s11814-015-0165-0
Strotmann UJ, Schwartz H, Pagga U (1995) the combined CO2/DOC test a new method to
determine the biodegradability of organic compounds. Chemosphere 30:525–538
Sumandono T, Saragih H, Migirin Watanabe Tet al. (2015) Decolorization of Remazol Brilliant
Blue R by new isolated white rot fungus collected from tropical rain forest in East Kalimantan
and its ligninolytic enzymes activity. Procedia Environ Sci 28:45–51
Tsai WT, Chou YH (2004) Government policies for encouraging industrial waste reuse and
pollution prevention in Taiwan. J Clean Prod 12:725–736
Tzanov T, Calafell M, Guebitz GM, Cavaco-Paulo A (2001) Bio-preparation of cotton fabrics. Enzy
Microb Technol. https://doi.org/10.1016/S0141-0229(01)00388-X
UNIDO & Ministry of International Trade and Industry Japan (MITI) (1992) Handy manual textile
industry – output of a seminar on energy conservation in textile industry, Organised by the
Energy Conservation Center (ECC) Japan, Malaysia & Indonesia
Vats A, Mishra S (2017) Decolorization of complex dyes and textile effluent by extracellular
enzymes of Cyathus bulleri cultivated on agro-residues/domestic wastes and proposed pathway
of degradation of Kiton blue A and reactive orange 16. Environ Sci Pollut Res 24:1–13
Vigneshvar S, Sudhakumari CC, Senthilkumaran B, Prakash H (2016) Recent advances in biosensor technology for potential applications – an overview. Front Bioeng Biotechnol 4:11
Vikrant K, Giri BS, Raza N, Roy K, Kim KH, Rai BN, Singh RS (2018) Recent advancements in
bioremediation of dye: current status and challenges. Biores Technol 253:355e367
Vo HNP, Ngo HH, Guo W, Chang SW, Nguyen DD, Chen Z, Xiaochang C, Wang RC, Zhang X
(2020) Microalgae for saline wastewater treatment: a critical review. Crit Rev Environ Sci
Technol 50(12):1224–1265
Wang Z, Xue M, Huang K, Liu Z (2011) Textile dyeing wastewater treatment. In: Advances in
treating textile effluent. InTech. https://doi.org/10.5772/22670
218
K. Rajan et al.
reality? Text. Text Light Indus Sci Technol 2:113–119
Saleh FY, Lee GF, Wolf HW (1980) Selected organic pesticides, the occurrence, transformation and
removal from domestic wastewater. J WPCF 52(1):19–28
Santoro C, Arbizzani C, Erable B, Ieropoulos I (2017) Microbial fuel cells: from fundamentals to
applications. A review. J Power Sources 356:225e244
Saratale R, Saratale G, Chang J, Govindwar S (2001) Bacterial decolorization and degradation of
azo dyes: a review. J Taiwan Inst Chem Eng 42:138–157
Saravanan, P (2013) Studies on treatment of textile dyes using yeast cultures. Dissertation, Anna
University
Savin I, Butnaru R (2008) Wastewater characteristics in textile finishing mills. Environ Eng Manag
J 7(6):859–864. https://doi.org/10.30638/eemj.2008.113
Sekomo CB, Rousseau DPL, Saleh AS, Lens PNL (2014) Heavy metal removal in duckweed and
algae ponds as a polishing step for textile wastewater treatment. Ecol Eng 44:102–110
Seshadri S, Bishop PL, Agha AM (1994) Anaerobic/Aerobic treatment of selected azo dyes in
waste water. Waste Manage 14:127–137
Singh SN (2014) Microbial degradation of synthetic dyes in wastewaters. Springer; ISBN: 978-3319-10942-8, p 367
Singh S, Pakshirajan K, Daverey A (2010) Enhanced decolourization of Direct Red-80 dye by the
white rot fungus Phanerochaete chrysosporium employing sequential design of experiments.
Biodegradation 21(4):501–511
Sivaram NM, Gopal PM, Barik D (2018) Toxic waste from textile industries. In: Energy from toxic
organic waste for heat and power generation. Elsevier. https://doi.org/10.1016/B978-0-08102528-4.00004-3
Solis M, Solis A, Pérez H, Manjarrez N, Flores M (2012) Microbial decolouration of azo dyes: a
review. Process Biochem:47.1723–47.1748
Srivastava S, Agrawal S, Mondal M (2015) Characterization, isotherm and kinetic study of
Phaseolus vulgaris husk as an innovative adsorbent for Cr (VI) removal. Kor J Chem Eng.
https://doi.org/10.1007/s11814-015-0165-0
Strotmann UJ, Schwartz H, Pagga U (1995) the combined CO2/DOC test a new method to
determine the biodegradability of organic compounds. Chemosphere 30:525–538
Sumandono T, Saragih H, Migirin Watanabe Tet al. (2015) Decolorization of Remazol Brilliant
Blue R by new isolated white rot fungus collected from tropical rain forest in East Kalimantan
and its ligninolytic enzymes activity. Procedia Environ Sci 28:45–51
Tsai WT, Chou YH (2004) Government policies for encouraging industrial waste reuse and
pollution prevention in Taiwan. J Clean Prod 12:725–736
Tzanov T, Calafell M, Guebitz GM, Cavaco-Paulo A (2001) Bio-preparation of cotton fabrics. Enzy
Microb Technol. https://doi.org/10.1016/S0141-0229(01)00388-X
UNIDO & Ministry of International Trade and Industry Japan (MITI) (1992) Handy manual textile
industry – output of a seminar on energy conservation in textile industry, Organised by the
Energy Conservation Center (ECC) Japan, Malaysia & Indonesia
Vats A, Mishra S (2017) Decolorization of complex dyes and textile effluent by extracellular
enzymes of Cyathus bulleri cultivated on agro-residues/domestic wastes and proposed pathway
of degradation of Kiton blue A and reactive orange 16. Environ Sci Pollut Res 24:1–13
Vigneshvar S, Sudhakumari CC, Senthilkumaran B, Prakash H (2016) Recent advances in biosensor technology for potential applications – an overview. Front Bioeng Biotechnol 4:11
Vikrant K, Giri BS, Raza N, Roy K, Kim KH, Rai BN, Singh RS (2018) Recent advancements in
bioremediation of dye: current status and challenges. Biores Technol 253:355e367
Vo HNP, Ngo HH, Guo W, Chang SW, Nguyen DD, Chen Z, Xiaochang C, Wang RC, Zhang X
(2020) Microalgae for saline wastewater treatment: a critical review. Crit Rev Environ Sci
Technol 50(12):1224–1265
Wang Z, Xue M, Huang K, Liu Z (2011) Textile dyeing wastewater treatment. In: Advances in
treating textile effluent. InTech. https://doi.org/10.5772/22670
218
K. Rajan et al.
