References
- G. Srinivas, Industry Analysis Report on Paint Industry,
Jawaharlal National Technical University, Hyderabad, India,
2010.
- www.virtusglobal.com.
- http://planningcommissiongovin/aboutus/committee.
- A. Akyol, Treatment of paint manufacturing wastewater by
electrocoagulation, Desalination, 285 (2012) 91–99.
- C.P. Haung, M. Ghadirian, Physical–chemical treatment of
paint industry wastewater, J. Water Pollut. Control Fed., 46
(1974) 2340–2346.
- J.A. Brown, M. Weintraub, Bio oxidation of paint process
wastewater, J. Water Pollut. Control Fed., 54 (1982) 1127–1131.
- M.C. Arquiaga, L.W. Canter, J.M. Robertson, Microbiological
characterization of the biological treatment of aircraft paint
stripping wastewater, Environ. Pollut., 89 (1995) 189–195.
- S. Shanta, S.N. Kaul, Performance of evaluation of a pure
oxygen-based activated sludge system treatment a combined
paint industry wastewater and domestic sewage, Int. J. Environ.
Stud., 58 (2000) 445–457.
- B. Sengupta, B.K. Dey, M. Hashim, S. Hasan, Micro filtration of
water-based paint effluents, Int. J. Environ. Manage., 8 (2004)
455–466.
- M.A. Aboulhassan, S. Souabi, A. Yaacoubi, M. Baudu,
Improvement of paint effluents coagulation using natural and
synthetic coagulant aids, J. Hazard. Mater., 138 (2006) 40–45.
- J.M. Xiang, L.X. Hui, Treatment of water based printing ink
wastewater by Fenton process combined with coagulation,
J. Hazard. Mater., 162 (2009) 386–390.
- M.Y. Pamukoglu, F. Kargi, Removal of copper (II) ions from
aqueous medium by biosorption onto powdered waste sludge,
Process Biochem., 41 (2006) 1047–1054.
- B.K. Korbahti, A. Tanyolac, Electrochemical treatment of
simulated industrial paint wastewater in a continuous tubular
reactor, Chem. Eng. J., 148 (2009) 444–445.
- A.E. Mohsen, H. Hassanin, M.M. Kamel, Appropriate
technology for industrial wastewater treatment of paint
industry, Am. Eurasian Agric. Environ., 8 (2010) 597–601.
- S. Gaurav, K. Anuj, M. Naushad, K. Amit, A.H.A. Muhtaseb, D.
Pooja, A.G. Ayman, F.J. Stadler, M.R. Khan, Photoremediation
of toxic dye from aqueous environment using monometallic
and bimetallic quantum dots based nanocomposites, J. Clean.
Prod., 172 (2018) 2919–2930.
- G. Sharma, M. Naushad, K. Amit, R. Shailja, S. Shweta, B. Amit,
F.J. Stadler, A.G. Ayman, M. RizwanKhan, Efficient removal
of coomassie brilliant blue R-250 dye using starch/poly(alginic
acid-cl-acrylamide) nanohydrogel, Process Saf. Environ., 109
(2017) 301–310.
- P. Deepak, S. Gaurav, K. Amit, M. Naushad, K.
Susheel, S. Anu, Z.A. Alothman, Combined sorptional–
photocatalytic remediation of dyes by polyaniline Zr(IV)
selenotungstophosphate nanocomposite, Toxicol. Environ.
Chem., 97 (2015) 526–537.
- A.A. Alqadami, M. Naushad, M.A. Abdalla, M. Rizwan Khan,
A.A. Zeid, Adsorptive removal of toxic dye using Fe3O4–TSC
nanocomposite: equilibrium, kinetic, and thermodynamic
studies, J. Chem. Eng. Data, 61 (2016) 3806–3813.
- P. Deepak, G. Divya, A.H.A. Muhtaseb, S. Gaurav, K. Amit, M.
Naushad, A. Tansir, S.M. Alshehri, Photocatalytic degradation
of highly toxic dyes using chitosan-g-poly(acrylamide)/ZnS in
presence of solar irradiation, J. Photochem. Photobiol., A., 329
(2016) 61–68.
- M. Naushad, Z.A. Alothman, M.R. Awual, S.M. Alfadul, A.
Tansir, Adsorption of rose Bengal dye from aqueous solution by
amberlite Ira-938 resin: kinetics, isotherms, and thermodynamic
studies, Desal. Wat. Treat., 57 (2016) 13527–13533.
- T.P. Flaten, Aluminium as a risk factor in Alzheimer’s disease,
with emphasis on drinking water, Brain Res., 55 (2001) 187–196.
- R.M. Sudhir Dahiya, A.G. Tripathi, Hegde, Biosorption of lead
and copper from aqueous solutions by pre-treated crab and
arca shell biomass, Bioresour. Technol., 8 (2008) 179–187.
- Y.Y. Chun, Emerging usage of plant based coagulants for
water and wastewater treatment, Process Biochem., 45 (2010)
1437–1444.
- V.A.K. Verma, R. Dash, P. Bhunia, A review on chemical
coagulation/flocculation technologies for removal of colour
from textile wastewaters, J. Environ. Manage., 93 (2012) 154–168.
- R. Babu, M. Chaudhri, Home water treatment by direct filtration
with natural coagulant, J. Water Health., 3 (2005) 27–30.
- G. Muthuraman, S. Sasikala, Removal of turbidity from
drinking water using natural coagulants, J. Ind. Eng. Chem., 20
(2013) 1727–1731.
- K. Jayaram, I.Y.L.N. Murthy, H. Lalhruaitluanga, M.N.V.
Prasad, Biosorption of lead from aqueous solution by seed
powder of Strychnos potatorum L., Colloid Surf, B., 71 (2009)
248–254.
- P. Senthil Kumar, C. Senthamarai, A.S.L. Sai Deepthi, R.
Bharani, Adsorption isotherms, kinetics and mechanism of
Pb (II) ions removal from aqueous solution using chemically
modified agricultural waste, Can. J. Chem. Eng., 9999 (2013)
1–7.
- A. Diaz, N. Rincon, A. Escorihuela, N. Fernandez, E. Chacin,
C.F. Forster, A preliminary evaluation of turbidity removal by
natural coagulants indigenous to Venezuela, Process Biochem.,
35 (1999) 391–395.
- U.S. Carpinteyro, M. Vaca, L. Torres, Can vegetal biopolymers
work as coagulant-flocculant aids in the treatment of high-load
cosmetic industrial wastewaters?, Water Air Soil Pollut., 223
(2012) 4925–4936.
- V.S. Adki, J.P. Jadhav, V.A. Bapat, Exploring the
phytoremediation potential of cactus (Nopalea cochenillifera Salm
Dyck) cell cultures for textile dye degradation, Int. J. Phytorem.,
14 (2012) 554–569.
- E. Ikeda, D.G. Rodrigues, J. Nozaki, Treatment of effluents
of poultry slaughterhouse with aluminum salts and natural
polyelectrolytes, Environ. Technol., 23 (2002) 949–954.
- R. Kannan, S. Radha, N. Aparna, S. Vishali, W.R. Thilagaraj,
Biosorption of heavy metals from actual electroplating
wastewater using encapsulated Moringa oleifera beads in fixed
bed column, Desal. Wat. Treat., 57 (2016) 3572–3587.
- M. Magesh kumar, R. Karthikeyan, Modeling the kinetics of
coagulation process for tannery industry effluent treatment
using Moringa oleifera seeds protein, Desal. Wat. Treat., 57 (2016)
14954–14964.
- L. Rizzo, A.D. Gennaro, M. Gallo, V. Belgiorno, Coagulation/chlorination of surface water: a comparison between chitosan
and metal salts, Sep. Sci. Technol., 62 (2008) 79–85.
- S.G. Bhaskar, J.E. Ako, Application of guar gum as a flocculant
aid in food processing and potable water treatment, Eur. Food
Res. Technol., 221 (2005) 746–751.
- B. Saritha, G. Sharmilaa, Treatability study of tannery effluent
by using guar gum with coagulants alum and ferric sulphate,
Int. J. Eng. Trends Technol., 2 (2011) 1–7.
- B. Saritha, G. Sharmilaa, Study of removal of COD by guar
gum with coagulants alum and polyaluminium chloride in
wastewater treatment, Int. J. Bio. Trends Technol., 2 (2012)
11–19.
- L. Shuguang, S.W. Gibb, E. Cochrane, Effective removal of zinc
ions from aqueous solutions using crab carapace biosorbent, J.
Hazard. Mater., 149 (2007) 208–217.
- H. Zemmouri, M. Drouiche, A. Sayeh, H. Lounici, N. Mameri,
Coagulation flocculation test of keddara’s water dam using
chitosan and sulfate aluminum, Procedia Eng., 33 (2012)
254–260.
- F. H. Chi, W.P. Cheng, Use of chitosan as coagulant to treat
wastewater from milk processing plant, J. Polym. Environ., 14
(2006) 411–417.
- Y. Bolat, S. Bilgin, A. Gunlu, L. Izci, S.B. Koca, S. Cetinkaya,
H.U. Koca, Chitin-chitosan yield of freshwater crab (Potamon
potamios, Olivier 1804) shell, Pak. Vet. J., 30 (2010) 227–231.
- K.K. Bahadir, A. Tanyolac, Electrochemical treatment of
simulated industrial paint wastewater in a continuous tubular
reactor, Chem. Eng. J., 148 (2009) 444–451.
- APHA, Standard Methods for the Examination of Waste and
Wastewater, 16th ed., American Public Health Associations,
New York, NY, 1995.
- M.A. Hossain, H.H. Ngo, W.S. Guo, T.V. Nguyen, Palm oil
fruit shells as biosorbent for copper removal from water and
wastewater: experiments and sorption models, Bioresour.
Technol., 113 (2012) 97–101.
- M. Akhtara, S. Iqbal, M.T. Bhanger, Z.U.M. Haqc, M.M.
Moazzamd, Sorption of organo phosphorous pesticides onto
chickpea husk from aqueous solutions, Colloid Surf. B, 69
(2009) 63–70.
- A. Sari, D. Mendil, M. Tuzen, M. Soylak, Biosorption of Cd(II)
and Cr(III) from aqueous solution by moss (Hylocomium
splendens) biomass: equilibrium, kinetic and thermodynamic
studies, Chem. Eng. J., 144 (2008) 1–9.
- E. Repo, EDTA- and DTPA-Functionalized Silica Gel and
Chitosan Adsorbents for the Removal of Heavy Metals from
Aqueous Solutions, Dissertation, Lappeenranta University of
technology, Finland, 2011.
- A. Rathinam, B. Maharshi, S.K. Janardhanan, R.R.
Jonnalagadda, B.U. Nair, Biosorption of cadmium metal ion
from simulated wastewaters using Hypnea valentiae biomass:
a kinetic and thermodynamic study, Bioresour. Technol., 101
(2010) 1466–1470.
- S. Vishali, R. Karthikeyan, A comparative study of Strychnos
potatorum and chemical coagulants in the treatment of paint and
industrial effluents: an alternate solution, Sep. Sci. Technol., 49
(2014) 2510–2517.
- S. Vishali, R. Karthikeyan, Cactus opuntia (ficus-indica): an ecofriendly
alternative coagulant in the treatment of paint effluent,
Desal. Wat. Treat., 56 (2015) 1489–1497.
- S. Vishali, P. Rashmi, R. Karthikeyan, Evaluation of wasted
biomaterial, crab shells (Portunus sanguinolentus), as a
coagulant, in paint effluent treatment, Desal. Wat. Treat., 57
(2016) 13157–13165.
- S. Vishali, A. Ayushi, Performance evaluation of Cyamopsis
tetragonolobus (guar gum), as a natural coagulant, in the
treatment of paint industry effluent, Desal. Wat. Treat., 62
(2017) 443–448.
- E. Bulut, M. Ozacar, I. Ayhan, S. Engil, Adsorption of malachite
green onto bentonite: equilibrium and kinetic studies and
process design, Microporous Mesoporous Mater., 115 (2008)
234–246.
- R. Nadeem, M.H. Nasir, M.S. Hanif, Pb (II) sorption by
acidically modified Cicer arientinum biomass, Chem. Eng. J., 150
(2009) 40–48.
- K. Ada, A. Ergene, S. Tan, E. Yal, Adsorption of Remazol
Brilliant Blue R using ZnO fine powder: equilibrium, kinetic
and thermodynamic modeling studies, J. Hazard. Mater., 165
(2009) 637–644.
- R. George, S. Sugunan, Kinetics of adsorption of lipase onto
different mesoporous materials: evaluation of Avrami model
and leaching studies, J. Mol. Catal. B Enzym., 105 (2014) 26–32.