References
- L. Giorgetti, H. Talouizte, M. Merzouki, L. Catavuturo, Ch.
Geri, S. Frassinetti, Genotoxicity evaluation of effluents from
textile industries of the region Fez-Boulmane, Morocco: a case
study, Ecotoxicol. Environ. Saf., 74 (2011) 2275–2283.
- H. Hayat, Q. Mahmood, A. Pervez, Z. Ahmad–Bhatti, S. Ali–Baig, Comparative decolorization of dyes in textile wastewater
using biological and chemical treatment, Sep. Purif. Technol.,
154 (2015) 149–153.
- Ch.K. Hemachandra, A. Pathiratne, Combination of physicochemical
analysis, Allium cepa test system and Oreochromis
niloticus erythrocyte based comet assay/nuclear abnormalities
tests for cyto-genotoxicity assessments of treated effluents
discharged from textile industries, Ecotoxicol. Environ. Saf.,
131 (2016) 54–64.
- I.I. Savin, R. Butnaru, Wastewater characteristics in textile
finishing mills, Environ. Eng., 7 (2008) 859–864.
- M.B. Kurade, T.R. Waghmode, A.N. Kagalkar, S.P. Govindwar,
Decolorization of textile industry effluent containing disperse
dye Scarlet RR by a newly developed bacterial-yeast consortium
BL-GG, Chem. Eng. J., 184 (2012) 33–41.
- E.K. Mahmoued, Cement kiln dust and coal filters treatment of
textile industrial effluent, Desalination, 255 (2010) 175–178.
- B. Manu, S. Chaudhari, Anaerobic decolorization of simulated
textile wastewater containing azo dyes, Bioresour. Technol.,
82 (2002) 225–231.
- N.R. Rane, V.V. Chandanshive, A.D. Watharkar, R.V. Khandare,
T.S. Patil, P.K. Pawar, S.P. Govindwar, Phytoremediation
of sulfonated Remazol Red dye and textile effluents by
Alternanthera philoxeroides: an anatomical, enzymatic and pilot
scale study, Water Res., 83 (2015) 271–281.
- P.A. Bedekar, R.G. Saratale, G.D. Saratale, S.P. Govindwar,
Development of low cost upflow column bioreactor for degradation
and detoxification of Blue HERD and textile effluent by
Lysinibacillus sp. RGS immobilized on Loofa, Int. Biodeterior.
Biodegrad., 96 (2014) 112–120.
- M. Asgher, N. Azim, H. Nawaz–Bhatti, Decolorization of
practical textile industry effluents by white rot fungus Coriolus
versicolor IBL-04, Biochem. Eng. J., 47 (2009) 61–65.
- C.A. Basha, J. Sendhil, K.V. Selvakumar, P.K.A. Muniswaran,
Ch.W. Lee, Electrochemical degradation of textile dyeing
industry effluent in batch and flow reactor systems, Desalination,
285 (2012) 188–197.
- A.A. Kadam, H.S. Lade, D.S. Lee, S.P. Govindwar, Zinc chloride
as a coagulant for textile dyes and treatment of generated dye
sludge under the solid state fermentation: hybrid treatment
strategy, Bioresour. Technol., 179 (2014) 38–46.
- A. Baban, A. Yediler, D. Lienert, N. Kemerdere, A. Kettrup,
Ozonation of high strength segregated effluents from a woollen
textile dyeing and finishing plant, Dyes Pigm., 58 (2003)
93–98.
- R.F. Yu, H.W. Chen, W.P. Cheng, P.H. Hsieh, Dosage control
of the Fenton process for color removal of textile wastewater
applying ORP monitoring and artificial neural networks,
J. Environ. Eng., 135 (2009) 325–332.
- O.S. Chan, W.H. Cheung, Single and multicomponent acid dye
adsorption equilibrium studies on tyre demineralised activated
carbon, Chem. Eng. J., 191 (2012) 162–170.
- J.H. Deng, X.R. Zhang, G.M. Zeng, J.L. Gong, Q.Y. Niu,
Simultaneous removal of Cd(II) and ionic dyes from aqueous
solution using magnetic graphene oxide nanocomposite as an
adsorbent, Chem. Eng. J., 226 (2013) 189–200.
- D. Shen, J. Fan, W. Zhou, B. Gao, Q. Yue, Q. Kang, Adsorption
kinetics and isotherm of anionic dyes onto organo-bentonite
from single and multisolute systems, J. Hazard. Mater.,
172 (2009) 99–107.
- V.K. Garg, M. Amita, R. Kumar, R. Gupta, Basic dye (methylene
blue) removal from simulated wastewater by adsorption using
Indian Rosewood sawdust: a timber industry waste, Dyes
Pigm., 63 (2004) 243–250.
- P.C.C. Faria, J.J.M. Órfão, M.F.R. Pereira, Activated carbon and
ceria catalysts applied to the catalytic ozonation of dyes and
textile effluents, Appl. Catal., B, 88 (2009) 341–350.
- A. Gil, F.C.C. Assis, S. Albeniz, S.A. Korili, Removal of dyes
from wastewaters by adsorption on pillared clays, Chem. Eng.
J., 168 (2011) 1032–1040.
- S.Á. Torrellas, R. García–Lovera, N. Escalona, C. Sepulveda,
J.L. Sotelo, J. García, Chemical-activated carbons from peach
stones for the adsorption of emerging contaminants in aqueous
solutions, Chem. Eng. J., 279 (2015) 788–798.
- Wastewater-Sampling, Mexican Standard NMX-AA-003–1980,
Official Gazette of the Federation, November 6, 1992.
- D. Inthorn, K. Tipprasertsin, P. Thiravetyan, E. Khan, Color
removal from textile wastewater by using treated flute reed in a
fixed bed column, J. Environ. Sci. Health A, 45 (2010) 637–644.
- A.A. Ahmad, B.H. Hameed, Reduction of COD and color of
dyeing effluent from a cotton textile mill by adsorption onto
bamboo-based activated carbon, J. Hazard. Mater., 172 (2009)
1538–1543.
- H.A. Arafat, Simple physical treatment for the reuse of
wastewater from textile industry in the Middle East, J. Environ.
Eng. Sci., 6 (2007) 115–122.
- A. Pala, E. Tokat, Activated carbon addition to an activated
sludge model reactor for color removal from a cotton textile
processing wastewater, J. Environ. Eng., 129 (2003) 1064–1068.
- Water Analysis - Determination of Biochemical Oxygen Demand
in Natural, Residual (BOD5) and Treated Waste Waters - Test
Method (cancels NMX-AA-028-1981) NMX-AA-028-SCFI-2001,
Official Journal of the Federation, April 6, 2001.
- Water Analysis - Measurement of the Chemical Oxygen
Demand in Natural, Residual and Treated Waste Waters.- Test
Method - Part 1 - Open Reflow Method - (Cancels the NMX-AA-030-SCFI-2001) NMX-AA -030/1-SCFI-2012, Official Gazette of
the Federation, April 12, 2012.
- O. Ozdemir, M. Turan, A.Z. Turan, A. Faki, A.B. Engin, Feasibility
analysis of color removal from textile dyeing wastewater in a
fixed-bed column system by surfactant-modified zeolite (SMZ),
J. Hazard. Mater., 166 (2009) 647–654.
- G.T. Guyer, K. Nadeem, N. Dizge, Recycling of pad-batch
washing textile wastewater through advanced oxidation
processes and its reusability assessment for Turkish textile
industry, J. Clean. Prod., 139 (2016) 488–494.
- F. Harrelkas, A. Azizi, A. Yaacoubi, A. Benhammou, M.N. Pons,
Treatment of textile dye effluents using coagulation–flocculation
coupled with membrane processes or adsorption on powdered
activated carbon, Desalination, 235 (2009) 330–339.
- A. Sharma, Z. Syed, U. Brighu, A.B. Gupta, Ch. Ram, Adsorption
of textile wastewater on alkali-activated sand, J. Clean. Prod.,
220 (2019) 23–32.
- M.T. Hernández-Eudave, R. Tovar-Gómez, C.J. Durán-Valle,
M.R. Moreno-Virgen, V. Hernández-Montoya, M.A. Perez-Cruz, Modification of carbons with acids, salts, and hydrogen
peroxide for the adsorption of anionic and cationic dyes in
single and binary systems with Cd2+ and CrO42–, Desal. Wat.
Treat., 106 (2018) 139–152.
- J. Beltran-Heredia, J. Sánchez-Matín, M. Jiménez-Giles, Tannin-based coagulants in the depuration of textile wastewater
effluents: elimination of antraquinonic dyes, Water Air Soil
Pollut., 222 (2011) 53–64.
- A. Qasim, S. Nisar, A. Shah, M. Saeed-Khalid, M.A. Sheikh,
M.A. Sheikh, Optimization of process parameters for maching
of AISI – 1045 steel using Taguchi design and ANOVA, Simul.
Modell. Pract. Theory, 59 (2015) 36–51.
- J. Zolgharnein, N. Asanjarani, T. Shariatmanesh, Taguchi
L16 orthogonal array optimization for Cd (II) removal using
Carpinus betulus tree leaves: adsorption characterization, Int.
Biodeterior. Biodegrad., 85 (2013) 66–77.
- Hach Company, DR5000 Spectrophotometer: Procedures
Manual, Catalog Number DOC082.98.00670, 2005, Germany,
pp. 565–572.
- Federal Register, April 21, 1980, 45, 26811–26812.
- A.M. Lotito, M. De Sanctis, C. Di Laconi, G. Bergna, Textile
wastewater treatment: aerobic granular sludge vs activated
sludge systems, Water Res., 54 (2014) 337–346.
- K. Paździor, J. Wrębiak, A.K Smólka, M. Gmurek, L. Bilińska,
L. Kos, J. Sójka-Ledakowicz, S. Ledakowicz, Influence of
ozonation and biodegradation on toxicity of industrial textile
wastewater, J. Environ. Manage., 195 (2016) 166–173.
- S. Phugare, P. Patil, S. Govindwar, J. Jadhav, Exploitation of yeast
biomass generated as a waste product of distillery industry
for remediation of textile industry effluent, Int. Biodeterior.,
64 (2010) 716–726.
- D.I. Mendoza-Castillo, A. Bonilla-Petriciolet, J. Jáuregui-Rincón,
On the importance of surface chemistry and composition
of bone char for the sorption of heavy metals from aqueous
solution, Desal. Wat. Treat., 54 (2015) 1651–1662.
- S. Dimović, I. Smičiklas, I. Pleaćas, D. Antonović, M. Mitrić,
Comparative study of differently treated animal bones for Co2+
removal, J. Hazard. Mater., 164 (2009) 279–287.
- S. Patel, J. Hanb, W. Qiua, W. Gao, Synthesis and characterization
of mesoporous bone char obtained by pyrolysis of animal
bones, for environmental application, J. Environ. Chem. Eng.,
3 (2015) 2368–2377.
- H.Y. Xu, L. Yang, P. Wang, Y. Liu, M.S. Peng, Kinetic research
on the sorption of aqueous lead by synthetic carbonate
hydroxyapatite, J. Environ. Manage., 86 (2008) 319–328.
- V. Hernández-Montoya, M.P. Elizalde-González, R. Trejo-Vázquez, Screening of commercial sorbents for removal of
fluoride in synthetic and groundwater, Environ. Technol.,
28 (2007) 595–607.
- B. Smith, Infrared Spectral Interpretation: A Systematic
Approach, CRC Press LLC, Washington, 1999.
- L. Delgadillo-Velasco, V. Hernández-Montoya, M.A. Montes-Morán, R. Tovar Gómez, F.J. Cervantes, Recovery of different
types of hydroxyapatite by precipitation of phosphates of
wastewater from anodizing industry, J. Clean. Prod., 242 (2020)
1–8.
- M.E. Parolo, M.C. Savini, R.M. Loewy, Characterization of soil
organic matter by FT-IR spectroscopy and its relationship with
chlorpyrifos sorption, J. Environ. Manage., 196 (2017) 316–322.
- C.J. Durán-Valle, M. Gómez-Corzo, J. Pastor-Villegas, V. Gómez-Serrano, Study of cherry stones as raw material in preparation
of carbonaceous adsorbents, J. Anal. Appl. Pyrol., 73 (2005)
59–67.
- R. Tovar-Gómez, D.A. Rivera-Ramírez, V. Hernández-Montoya,
A. Bonilla-Petriciolet, C.J. Durán-Valle, M.A. Montes-Morán,
Synergic adsorption in the simultaneous removal of acid blue
25 and heavy metals from water using a Ca(PO3)2-modified
carbon, J. Hazard. Mater., 199–200 (2012) 290–300.