References
- S. Saravanabhavan, P. Thanikaivelan, J.R. Rao, B.U. Nair,
T. Ramasami, Natural leathers from natural materials:
progressing toward a new arena in leather processing,
Environ. Sci. Technol., 38 (2004) 871–879.
- M.I. Niyas Ahamed, P. Mohammed Kashif, Safety disposal of
tannery effluent sludge: challenges to researchers – a review,
Int. J. Pharma Sci. Res. (IJPSR), 5 (2014) 733–736.
- L. Shakir, S. Ejaz, M. Ashraf, N.A. Qureshi, A.A. Anjum,
I. Iltaf, A. Javeed, Ecotoxicological risks associated with
tannery effluent wastewater, Environ. Toxicol. Pharmacol.,
34 (2012) 180–191.
- G. Sarah, S. Amal Raj, I. Arul Aram, Analysis of heavy
metal toxicity in the sediments of deteriorating Pallikaranai
Marshland, Chennai, Tamil Nadu, Desal. Water Treat.,
233 (2021) 70–80.
- Z. Song, C.J. Williams, R.G.J. Edyvean, Treatment of tannery
wastewater by chemical coagulation, Desalination, 164 (2004)
249–259.
- K. Kannan, K. Senthilkumar, P. Akilamudhan, V. Sangeetha,
B. Manikandan, Studies on effectiveness of low cost adsorbents
in continuous column for textile effluents, Int. J. Biosci. Biochem.
Bioinf., 2 (2012) 398–402.
- Q. Li, Q. Huang, Y. Ruan, Evaluation of modified peanut
shell in the removal of Cr(VI) from aqueous solution,
Desal. Water Treat., 272 (2022) 75–87.
- O.A. Fadali, Y.H. Magdy, A.A.M. Daifullah, E.E. Ebrahiem,
M.M. Nassar, Removal of chromium from tannery effluents
by adsorption, J. Environ. Sci. Health. Part A Toxic/Hazard.
Subst. Environ. Eng., 39 (2004) 465–472.
- S. Gupta, B.V. Babu, Removal of toxic metal Cr(VI) from
aqueous solutions using sawdust as adsorbent: equilibrium,
kinetics and regeneration studies, Chem. Eng. J., 150 (2009)
352–365.
- Z. Du, W. Tian, K. Qiao, J. Zhao, L. Wang, W. Xie, M. Chu,
T. Song, Improved chlorine and chromium ion removal
from leather processing wastewater by biocharcoal-based
capacitive deionization, Sep. Purif. Technol., 233 (2020) 116024,
doi: 10.1016/j.seppur.2019.116024.
- D. Ma, H. Yi, C. Lai, X. Liu, X. Huo, Z. An, L. Li, Y. Fu,
B. Li, M. Zhang, L. Qin, S. Liu, L. Yang, Critical review
of advanced oxidation processes in organic wastewater
treatment, Chemosphere, 275 (2021) 130104, doi: 10.1016/j.chemosphere.2021.130104.
- S. Korpe, P. Venkateswara Rao, Application of advanced
oxidation processes and cavitation techniques for treatment of
tannery wastewater—a review, J. Environ. Chem. Eng., 9 (2021)
105234, doi: 10.1016/j.jece.2021.105234.
- S. Jeganathan, K. Kandasamy, S. Velusamy, P. Sankaran,
Comparative studies on ultrasound assisted treatment of
tannery effluent using multiple oxy-catalysts using response
surface methodology, Arabian J. Chem., 13 (2020) 7066–7077.
- P. Sharma, A.K. Pandey, S.-H. Kim, S.P. Singh, P. Chaturvedi,
S. Varjani, Critical review on microbial community during
in-situ bioremediation of heavy metals from industrial
wastewater, Environ. Technol. Innovation, 24 (2021) 101826,
doi: 10.1016/j.eti.2021.101826.
- H. Brunhoferova, S. Venditti, M. Schlienz, J. Hansen, Removal
of 27 micropollutants by selected wetland macrophytes in
hydroponic conditions, Chemosphere, 281 (2021) 130980,
doi: 10.1016/j.chemosphere.2021.130980.
- N.G. Nikam, R.W. Gaikwad, Phytoremediation of synthetic
textile industry effluent using Phragmites australis and Typha
latifolia in constructed wetland, J. Indian Water Works Assn.,
3 (2021) 150–153.
- J. Vymazal, Y. Zhao, Ü. Mander, Recent research challenges
in constructed wetlands for wastewater treatment: a review,
Ecol. Eng., 169 (2021) 106318, doi: 10.1016/j.ecoleng.2021.106318.
- M.A. Maine, G.C. Sanchez, H.R. Hadad, S.E. Caffaratti,
M.C. Pedro, M.M. Mufarrege, G.A. Di Luca, Hybrid constructed
wetlands for the treatment of wastewater from a fertilizer
manufacturing plant: microcosms and field scale experiments,
Sci. Total Environ., 650 (2019) 297–302.
- M.J. M-Ridha, S.L. Zeki, S.J. Mohammed, K.M. Abed, H. Abu
Hasan, Heavy metals removal from simulated wastewater
using horizontal subsurface constructed wetland, J. Ecol. Eng.,
22 (2021) 243–250.
- J. Kaushal, P. Mahajan, N. Kaur, A review on application of
phytoremediation technique for eradication of synthetic dyes
by using ornamental plants, Environ. Sci. Pollut. Res., 28 (2021)
67970–67989.
- S. Upadhyay, A. Sinha, A Study on Different Bioremediation
Approaches to Hexavalent Chromium, Pollution Control
Technologies, Current Status and Future Prospects, 2021,
pp. 57–74,
doi: 10.1007/978-981-16-0858-2_4
- X.-q. Li, Z.-l. Hua, J.-y. Wu, L. Gu, Removal of perfluoroalkyl acids
(PFAAs) in constructed wetlands: considerable contributions
of submerged macrophytes and the microbial community,
Water Res., 197 (2021) 117080, doi: 10.1016/j.watres.2021.117080.
- A.M. McKnight, T.W. Gannon, F. Yelverton, Phytoremediation
potential of three terrestrial plant species for removal of
atrazine, azoxystrobin, and imidacloprid, Int. J. Phytorem.,
24 (2022) 187–195.
- B. Panneerselvam, K. Shunmuga Priya, Phytoremediation
potential of water hyacinth in heavy metal removal in
chromium and lead contaminated water, Int. J. Environ. Anal.
Chem., (2021) 1901896, doi: 10.1080/03067319.2021.1901896.
- S. Ashraf, Q. Ali, Z. Ahmad Zahir, S. Ashraf, H. Naeem Asghar,
Phytoremediation: environmentally sustainable way for
reclamation of heavy metal polluted soils, Ecotoxicol. Environ.
Saf., 174 (2019) 714–727.
- D. Srivastava, M. Tiwari, P. Dutta, P. Singh, K. Chawda,
M. Kumari, D. Chakrabarty, Chromium stress in plants: toxicity,
tolerance and phytoremediation, Sustainability, 13 (2021) 4629,
doi: 10.3390/su13094629.
- S. Guo, C. Xiao, N. Zhou, R. Chi, Speciation, toxicity, microbial
remediation and phytoremediation of soil chromium
contamination, Environ. Chem. Lett., 19 (2021) 1413–1431.
- M. Hagner, M. Uusitalo, H. Ruhanen, J. Heiskanen, R. Peltola,
K. Tiilikkala, J. Hyvönen, P. Sarala, K. Mäkitalo, Amending mine
tailing cover with compost and biochar: effects on vegetation
establishment and metal bioaccumulation in the Finnish
subarctic, Environ. Sci. Pollut. Res., 28 (2021) 59881–59898.
- M. Kafeel Ahmad Ansari, A. Ahmad, S. Umar, M. Iqbal,
M.H. Zia, A. Husen, G. Owens, Suitability of Indian mustard
genotypes for phytoremediation of mercury-contaminated
sites, S. Afr. J. Bot., 142 (2021) 12–18.
- J.C. Crittenden, R. Rhodes Trussell, D.W. Hand, K.J. Howe,
G. Tchobanoglous, MWH’s Water Treatment: Principle and
Design, John Wiley & Sons, 2012.
- D. Saranya, S. Shanthakumar, An integrated approach
for tannery effluent treatment with ozonation and
phycoremediation: a feasibility study, Environ. Res., 183 (2020)
109163, doi: 10.1016/j.envres.2020.109163.
- W. Khalid, A. Ali, M.S. Arshad, F. Afzal, R. Akram, A. Siddeeg,
S. Kousar, M.A. Rahim, A. Aziz, Z. Maqbool, A. Saeed, Nutrients
and bioactive compounds of Sorghum bicolor L. used to prepare
functional foods: a review on the efficacy against different
chronic disorders, Int. J. Food Prop., 25 (2022) 1045–1062.
- J.K. Parihar, P.K. Parihar, Y.B. Pakade, J.K. Katnoria,
Bioaccumulation potential of indigenous plants for heavy
metal phytoremediation in rural areas of Shaheed Bhagat
Singh Nagar, Punjab (India), Environ. Sci. Pollut. Res., 28 (2021)
2426–2442.