References
- K. Iyappan, C. Ahmed Basha, R. Saravanathamizhan, N.
Vedaraman, C.A. TahiyahNouShene, S. NathiraBegum, Electrochemical
treatment of tannery effluent using a battery
integrated DC-DC converter and solar PV power supply—An
approach towards environment and energy management, J.
Environ. Sci. Health, 49(10) (2014) 1149–1162.
- M.A. Abreu, S.M. Toffoli, Characterization of a chromium-rich
tannery waste and its potential use in ceramics, Ceram.
Int., 35(6) (2009) 2225–2234.
- G.L. Tadesse, T.K. Guya, Impacts of tannery effluent on environments
and human health, J. Environ. Earth Sci., 7(3) (2017)
88–97.
- S.S. Adeel, A. Wajid, S. Hussain, F. Malik, Z. Sami, I.U. Haq, R.A
Channa, Recovery of chromium from the tannery wastewater
by use of Bacillus subtilis in Gujranwala, Pakistan, IOSRJ.
Pharm. Biol. Sci., 2(2) (2012) 36–45.
- A.D. Covington, Tanning Chemistry: The Science of Leather,
Cambridge, UK, The Royal Society of Chemistry, 2011, pp.
204–214.
- Agrawal, V. Kumar, B.D. Pandey, Remediation options for the
treatment of electroplating and leather tanning effluent containing
chromium - a review, Miner. Process. Extract. Metallurgy
Rev., 27(2) (2006) 99–130.
- S.K. Panda, S. Choudhury, Chromium stress in plants, Brazil. J.
Plant Physiol., 1 (2005) 95–102.
- A. Rajendran, C. Mansiya, Extraction of chromium from tannery
effluents using waste egg shell material as an adsorbent,
Brit. J. Environ. Clim. Chan., 1(2) (2011) 44–52.
- Yassen, A. Alfatih, A. Gurashi Allah, A.A. AlsalamAlmaged,
Recovery of basic chromium sulphate. Case study Afrotan tannery
Company, J. Appl. Ind. Sci., 3(3) (2015) 87–93.
- P. Dhiraj, W.K. Yost, Fixation and stabilization of chromium in
contaminated materials, U.S. Patent No. 5,14, 397,478 (1995).
- S. Tahiri, J. Hassoune, S. AlamiYounssi, M. El Krati, A. Albizane,
M.L. Cerveraand M. de la Guardia, Management of tannery
wastewaters: treatment of spent chrome tanning bath
and vegetable tanning effluents, Desal. Water Treat., 51(22–24) (2013) 4467–4477.
- E. Isarain-Chávez, C. de la Rosa, A.L. Godinez, E. Brillas, M.J.
Peralta-Hernandez, Comparative study of electrochemical
water treatment processes for a tannery wastewater effluent, J.
Electroanal. Chem., 713 (2014) 62–69.
- P.B. Moraes, R.Bertazzoli, Electrodegradation of landfill leachate
in a flow electrochemical reactor, Chemosphere, 58(1)
(2005) 41–46.
- G. Mariliz, B. Mella, Chromium in tannery wastewater. Heavy
Metals in Water: Presence, Removal and Safety, 2014, pp. 315–344.
- T. YılmazNayir, S. Kara, Container washing wastewater treatment
by combine delectrocoagulation–electrooxidation, Separ.
Sci. Technol., 53(10) (2017) 1592–1603.
- B. Mella, , A.C.C.Glanert andG.Mariliz. Removal of chromium
from tanning wastewater by chemical precipitation and electrocoagulation,
XXXII IULTCS (2013).
- A. Esmaeili, A. Mesdaghi, R. Vazirinejad. Chromium (III)
removal and recovery from tannery wastewater by precipitation
process, Amer. J. App. Sci., 2(10) 2005 1471–1473.
- J.B. Duncan, M.D. Guthrie, K.J. Lueck, M. Avila, Laboratory
study for the reduction of chrome (VI) to chrome (lII) using
sodium metabisulfite under acidic conditions, CH2M HILL
Hanford Group, Inc. Richland, WA: US Department of Energy
Contract, 29 (2007).
- J.P. Beukes, J.J Pienaar, G. Lachmann, E.W. Giesekke, The
reduction of hexavalent chromium by sulphite in wastewater,
Water SA, 25(3) (1999) 363–370.
- G. Wójcik, Z. Hubicki, Investigations of chromium (VI) ion sorption
and reduction on strongly basic anion exchanger, Separ.
Sci. Technol., 53(7) (2018) 1088–1096.
- P. Thanikaivelan, J. Raghava Rao, B.U. Nair, T. Ramasami,
Recent trends in leather making: processes, problems, and
pathways, Crit. Rev. Environ. Sci. Technol., 35(1) (2005) 37–79.
- S. Sundarapandiyan, R. Chandrasekar, B. Ramanaiah, S.
Krishnan, P. Saravanan, Electrochemical oxidation and reuse
of tannery saline wastewater. J. Hazard. Mater., 180 (2010) 197–203.
- T. Deng, J.D. Englehardt, Electrochemical oxidation for landfill
leachate treatment, Waste Manage., 27(3) (2007) 380–388.
- P. Maharaja, R. Boopathy, S. Karthikeyan, M. Mahesh, A.S.
Komal, V.K. Gupta, G. Sekaran, Advanced oxidation of catechol
in reverse osmosis concentrate generated in leather
wastewater by Cu–graphite electrode, Int. J. Environ. Sci. Technol.,
13(9) (2016) 2143–2152.
- M. Liu, H. Zhang, X. Zhang, Y. Deng, W. Liu, H. Zhan, Removal
and recovery of chromium (III) from aqueous solutions by
a spheroidal cellulose adsorbent, Water Environ. Res., 73(3)
(2001) 322–328.
- M. Liu, H. Zhou, H. Zhang, Recovery of chromium (III) from
chrome tanning waste water by precipitation and adsorption
process, J. Soc Leather Technol. Chem., (2006) 90–183.
- M.A. El-Khateeb, H.A. El-ShahatNashy, N.A. Abdel Ghany, M.
AhmedAwad, Environmental impact elimination of chrome
tanning effluent using electrocoagulation process assisted by
chemical oxidation, Desal. Water Treat., 65 (2017) 147–152.
- G. Mariliz, M.P. Aquim, B.J. Passos, J. Trierweiler, Water reuse
in tannery beamhouse process, J. Cleaner Prod., 18(15) (2010)
1545–1552.
- J.B. Duncan, M.D. Guthrie, K.J. Lueck, M. Avila, Laboratory
Study for the Reduction of Chrome (VI) to Chrome (lII) Using
Sodium Metabisulfite under Acidic Conditions. CH2M HILL
Hanford Group, Inc. Richland, WA: US Department of Energy
Contract 29 (2007).
- J. Kanagaraj, N.K. Chandra Babu, A.B. Mandal, Recovery and
reuse of chromium from chrome tanning waste water aiming
towards zero discharge of pollution, J. Cleaner Prod., 16(16)
(2008) 1807–1813.
- J. Dahlbacka, J. Nyström, T. Mossing, P. Geladi, T. Lillhonga,
On-line measurement of the chemical oxygen demand in
wastewater in a pulp and paper mill using near infrared spectroscopy,
Spectr. Anal. Rev., 2(4) (2014) 19.
- F. O’Flaherty, T.W. Roddy, R.M. Lollar, The chemistry and technology
of leather, Vol. IV. Evaluation of leather, The chemistry
and technology of leather. Vol. IV. Evaluation of leather, 1965.
- K. Khan, Recovery and reuse of chromium from spent chrome
tanning liquor by precipitation process, Amer. J. Eng. Res., 7(1)
(2018) 346–352.
- P. Vijayalakshmi, G. Bhaskar Raju,, A. Gnanamani, Advanced
oxidation and electrooxidation as tertiary treatment techniques
to improve the purity of tannery wastewater, Ind. Eng.
Chem. Res., 50(17) (2011) 10194–10200.
- M. Panizza, In: C. Comninellis, G. Chen (Eds.), Electrochem.,
Springer, Newyork, (2010) 25–54.
- P. Maharaja, R. Boopathy, S. Karthikeyan, M. Mahesh, A.S.
Komal, V.K. Gupta, G. Sekaran, Advanced oxidation of catechol
in reverse osmosis concentrate generated in leather wastewater
by Cu–graphite electrode, Int. J. Environ. Sci. Technol.,
13(9) (2016) 2143–2152.
- D. Onyancha, W. Mavura, J.C. Ngila, P. Ongoma, J. Chacha,
Studies of chromium removal from tannery wastewaters by
algae biosorbents, Spirogyra condensata and Rhizocloniumhieroglyphicum,
J. Hazard. Mater., 158 (2008) 605–614.
- C. Palpandi, V. Shanmugam, A. Shanmugam, Extraction of
chitin and chitosan from shell and operculum of mangrove
gastropod Nerita (Dostia) crepidularia Lamarck, Int. J. Med.
Med. Sci., 1(5) (2009) 198–205.
- B.M. Abu-Zied, Structural and catalytic activity studies of silver/chromia catalysts, App. Catal. A: General, 198 (2000) 139–153.
- M. Hoang, A.E. Hughes, J.F. Mathews, K.C. Pratt, Surface
chemistry of supported chromium oxide on lanthanum carbonate,
J. Catalysis, 171 (1997) 313–319.
- F.D.M. Manavalan, M. Chellappa, R. Chellan, Detanning of
chrome-laddencollagenous matrix for protein recovery from
tannery solid waste, Br. J. Appl. Sci. Technol., 8 (2015) 254–266.