References
- N. Bhargavi, G.C. Jayakumar, K.J. Sreeram, J.R. Rao, B.U. Nair,
Towards sustainable leather production: vegetable tanning in
non-aqueous medium, J. Am. Leather. Chem. As., 110(4) (2015)
97–102.
- K.J. Sreeram, T. Ramasami, Sustaining tanning process
through conservation, recovery and better utilization of chromium,
Resour. Conserv. Recy., 38(3) (2003) 185–212.
- J. Kanagaraj, T. Senthilvelan, R.C. Panda, S. Kavitha, Ecofriendly
waste management strategies for greener environment
towards sustainable development in leather industry: a
comprehensive review, J. Clean. Prod., 89 (2015) 1–17.
- P. Thanikaivelan, J.R. Rao, B.U. Nair, T. Ramasami, Progress
and recent trends in biotechnological methods for leather processing,
Trends. Biotechnol., 22(4) (2004) 181–188.
- S. Dixit, A. Yadav, P.D. Dwivedi, M. Das, Toxic hazards of
leather industry and technologies to combat threat: a review, J.
Clean. Prod., 87 (2015) 39–49.
- V. Suresh, M. Kanthimathi, P. Thanikaivelan, J.R. Rao, B.U.
Nair, An improved product-process for cleaner chrome tanning
in leather processing, J. Clean. Prod., 9(6) (2001) 483–491.
- O. Lefebvre, R. Moletta, Treatment of organic pollution in
industrial saline wastewater: a literature review, Water. Res.,
40(20) (2006) 3671–3682.
- O. Lefebvre, N. Vasudevan, M. Torrijos, K. Thanasekaran, R.
Moletta, Anaerobic digestion of tannery soak wastewater with
an aerobic post-treatment, Water. Res., 40(7) (2006) 1492–1500.
- S. Sivaprakasam, B. Dhandapani,S. Mahadevan, Optimization
studies on production of a salt-tolerant protease from Pseudomonas
aeruginosa strain BC1 and its application on tannery
saline wastewater treatment, Braz. J. Microbial., 42(4) (2011)
1506–1515.
- G. Sekaran, S. Karthikeyan, R. Boopathy, P. Maharaja, V.K.
Gupta, C. Anandan, Response surface modeling for optimization
heterocatalytic Fenton oxidation of persistence organic
pollution in high total dissolved solid containing wastewater,
Environ. Sci. Pollut. R., 21(2) (2014) 1489–1502.
- R. Boopathy, S. Karthikeyan, A.B. Mandal, G. Sekaran, Characterisation
and recovery of sodium chloride from salt-laden
solid waste generated from leather industry, Clean. Technol.
Environ., 15(1) (2013) 117–124.
- S. Rajeswari, S. Vidhya, S. Sundarapandiyan, P. Saravanan, S.
Ponmariappan, K. Vidya, Improvement in treatment of soak
wastewater by combining electro-oxidation and biodegradation,
RSC Adv., 6(53) (2016) 47220–47228.
- R. Boopathy, G. Sekaran, Electrochemical treatment of evaporated
residue of soak wastewater generated from leather
industry, J. Hazard. Mater., 260 (2013) 286–295.
- S.S. Kumar, A. Mani, Measurement of physical and transport
properties of tannery effluent (soak wastewater), Int. Commun.
Heat. Mass., 34(3) (2007) 339–346.
- G. Di Bella, M.G. Giustra, G. Freni, Optimisation of coagulation/
flocculation for pre-treatment of high strength and saline
wastewater: Performance analysis with different coagulant
doses, Chem. Eng. J., 254 (2014) 283–292.
- M. Ahmadi, H. Saki, A. Takdastan, M. Dinarvand, S. Jorfi, B.
Ramavandi, Advanced treatment of saline municipal wastewater
by Ruppiamaritima: A data set, Data Brief., 13 (2017)
545.
- A. Uygur, Specific nutrient removal rates in saline wastewater
treatment using sequencing batch reactor, Process. Biochem.,
41(1) (2006) 61–66.
- F. Kargi, A.R. Dincer, Use of halophilic bacteria in biological
treatment of saline wastewater by fed-batch operation, Water.
Environ. Res., 72(2) (2000) 170–174.
- M. Ahmadi, N. Jafarzadeh, A. Babaei, N. Alavi, B. Ramavandi,
S. Jorfi, Z.G. Rahmat, Phenol removal by moving bed biofilm
reactor (MBBR) from saline wastewater, Asian J. Microbiol.
Biotechnol. Environ. Sci., 18(4) (2016) 833–840.
- B. Ramavandi, M. Jafarzadeh, S. Sahebi, Removal of phenol
from hyper-saline wastewater using Cu/Mg/Al–chitosan–H2O2 in a fluidized catalytic bed reactor, React. Kinet. Mech.
Cat., 111(2) (2014) 605–620.
- A.R. Dincer, F. Kargi, Performance of rotating biological disc
system treating saline wastewater, Process, Biochem., 36(8)
(2001) 901–906.
- M. Kubo, J. Hiroe, M. Murakami, H. Fukami, T. Tachiki, Treatment
of hypersaline-containing wastewater with salt-tolerant
microorganisms, J. Biosci. Bioeng., 91(2) (2001) 222–224.
- G. Sekaran, M. Mariappan, K.V. Raghavan, Adsorption of
Bovine Serum Albumin from salt solution onto activated carbon,
Bioprocess. Biosyst. Eng., 15(3) (1996) 165–169.
- N.P. Dan, C. Visvanathan, B. Basu, Comparative evaluation
of yeast and bacterial treatment of high salinity wastewater
based on biokinetic coefficients, Bioresour. Technol., 87(1)
(2003) 51–56.
- A. Uygur, F. Kargi, Salt inhibition on biological nutrient
removal from saline wastewater in a sequencing batch reactor,
Enzyme. Microb. Technol., 34(3) (2004) 313–318.
- O. Lefebvre, N. Vasudevan, M. Torrijos, K. Thanasekaran,
R. Moletta, Halophilic biological treatment of tannery soak
wastewater in a sequencing batch reactor, Water. Res., 39(8)
(2005) 1471–1480.
- X. Zhang, J. Gao, F. Zhao, Y. Zhao, Z. Li, Characterization of a
salt-tolerant bacterium Bacillus sp. from a membrane bioreactor
for saline wastewater treatment, J. Environ. Sci., 26(6) (2014)
1369–1374.
- B. Ramavandi, S. Farjadfard, M. Ardjmand, Mitigation of
orange II dye from simulated and actual wastewater using
bimetallic chitosan particles: Continuous flow fixed-bed reactor,
J. Environ. Chem. Eng., 2(3) (2014) 1776–1784.
- M.A. Amoozegar, F. Malekzadeh, K.A. Malik, Production
of amylase by newly isolated moderate halophile, Halobacillus
sp. strain MA-2, J. Microbiol. methods, 52(3) (2003)
353–359.
- N. Daxini, K. Mistry, Production of Thermostable and Ca Independent
α-Amylases from Halphilic Bacteria, Int. J. Biotech.
Biochem., 12(2) (2016) 153–159.
- K. Pranay, S.R. Padmadeo, Isolation and characterization
of halophilic amylolytic bacteria, J. Microbiol. Biotechnol.
Res., 6(4) (2017) 7–13.
- L.J. Kennedy, J.J. Vijaya, G. Sekaran, Effect of two-stage process
on the preparation and characterization of porous carbon composite
from rice husk by phosphoric acid activation, Ind. Eng.
Chem. Res., 43(8) (2004) 1832–1838.
- S. Karthikeyan, D.D. Dionysiou, A.F. Lee, S. Suvitha, P. Maharaja,
K. Wilson, G. Sekaran, Hydroxyl radical generation by
cactus-like copper oxide nanoporous carbon catalysts for
microcystin-LR environmental remediation, Catal. Sci. Technol.,
6(2) (2016) 530–544.
- P. Maharaja, E. Gokul, N. Prabhakaran, S. Karthikeyan, R.
Boopathy, S. Swarnalatha, G. Sekaran, Simultaneous removal
of NH4+-N and refractory organics through sequential heterogeneous
Fenton oxidation process and struvite precipitation:
kinetic study, RSC Adv., 6(5) (2016) 4250–4261.
- R. Boopathy, S. Karthikeyan, A.B. Mandal, G. Sekaran, Adsorption
of ammonium ion by coconut shell-activated carbon from
aqueous solution: kinetic, isotherm, and thermodynamic studies,
Environ. Sci. Pollut. R., 20(1) (2013) 533–542.
- P. Maharaja, M. Mahesh, C. Chitra, D. Kalaivani, R. Srividya, S.
Swarnalatha, G. Sekaran, Sequential oxic-anoxic bio reactor for
the treatment of tannery saline wastewater using halophilic and
filamentous bacteria, J. Water. Process. Eng., 18 (2017) 47–57.
- M. Mannacharaju, P. Natarajan, A.K. Villalan, M. Jothieswari,
S. Somasundaram, S. Ganesan, An innovative approach to
minimize excess sludge production in sewage treatment using
integrated bioreactors, J. Enviro. Sci., 67 (2018) 67–77.
- E.W. Rice, R.B. Baird, A.D. Eaton, L.S. Clesceri, Standard methods
for the examination of water and wastewater, Washington:
APHA, AWWA, WPCR, (2012) 1496.
- M. DuBois, K.A. Gilles, J.K. Hamilton, P.T. Rebers, F. Smith,
Colorimetric method for determination of sugars and related
substances, Anal. Chem., 28(3) (1956) 350–356.
- M. Pounsamy, S. Somasundaram, S. Palanivel, S. Ganesan,
Removal of fat components in high TDS leather wastewater
by saline-tolerant lipase-assisted nanoporous-activated carbon,
Appl. Biochem. Biotechnol., (2018) 1–19.
- P. Maharaja, M. Mahesh, L.K. Sunkapur, S. Swarnalatha, G.
Sekaran, Treatment of tannery saline wastewater by using
effective incorporated protease catalyst produced from salt tolerant
Enterococcus faecalis, J. Environ. Chem. Eng., 5(2) (2017)
2042–2055.
- M. Mahesh, K.V. Arivizhivendhan, P. Maharaja, R. Boopathy,
V. Hamsavathani, G. Sekaran, Production, purification and
incorporation of pectinase from Aspergillus ibericus onto
modified nanoporous activated carbon (FNAC) and its application
on treatment of pectin containing wastewater, J. Mol.
Catal. B: Enzym., 133 (2016) 43–54.
- A.I. Raafat, E. Araby, S. Lotfy, Enhancement of fibrinolytic
enzyme production from Bacillus subtilis via incorporation
process onto radiation synthesized starch/diethylaminomethyl
methacrylate hydrogel, Carbohydr. Polym., 87(2) (2012)
1369–1374.
- G.S. Silva, P.C. Oliveira, D.S. Giordani, H.F.D. Castro, Chitosan/siloxane hybrid polymer: synthesis, characterization
and performance as a support for immobilizing enzyme, J.
Braz. Chem. Soc., 22(8) (2011) 1407–1417.
- B. Ramavandi, Adsorption potential of NH4Br-soaked activated
carbon for cyanide removal from wastewater, Indian J.
Chem. Technol., 22(5) (2016) 183–193.
- M. Cammarota, D.G. Freire, G.L.S. Anna Jr, C. Russo, D.D.D.C.
Freire, L.D.R. Castilho, Cammarota Magali Christe, Guimaraes
Freire Denise Maria, Geraldo Lippel Sant Anna and Jr.
Production process and composition of an enzymatic preparation,
and its use for the treatment of domestic and industrial
effluents of high fat, protein and/or carbohydrate content, U.S.
Patent Application 10/399 (2001) 266.
- B. Czarnik-Matusewicz, K. Murayama, Y. Wu, Y. Ozaki,
Two-dimensional attenuated total reflection/infrared correlation
spectroscopy of adsorption-induced and concentration-dependent spectral variations of β-lactoglobulin in
aqueous solutions, J. Phys. Chem B., 104(32) (2000) 7803–7811.