References
- R.S. Lokhande, P.U. Singare, D.S. Pimple, Study on physicochemical
parameters of wastewater effluents from Taloja
Industrial Area of Mumbai, India, Int. J. Ecosyst., 1 (2011) 1–9,
doi: 10.5923/j.ije.20110101.01.
- M.S. Aulakh, P.S.K. Mohinder, S. Dhanwinder, Water pollution
related to agricultural, industrial, and urban activities, and
its effects on the food chain: case studies from Punjab, J.
New Seeds, 10 (2009) 112–137.
- M. Farai, O.A. Dorcas, S.M. Tichapondwa, M.N.C. Evans,
Phytoremediation of Cr(VI) in wastewater using the vetiver
grass (Chrysopogon zizanioides), Miner. Eng., 172 (2021) 107141,
doi:10.1016/j.mineng.2021.107141.
- A. Kabata-Pendias, Trace Elements in Soils and Plants, 4th ed.,
CRC Press, Boca Raton, FL, 2011.
- Food and Agriculture Organization of the United Nations
and the United Nations Environment Programme, Global
Assessment of Soil Pollution – Summary for Policy Makers,
FAO, Rome, 2021.
- G.M. Tordoff, A.J.M. Baker, A.J. Willis, Current approaches to
the revegetation and reclamation of metalliferous mine wastes,
Chemosphere, 41 (2000) 219–228.
- F.H.S. Rabêlo, L. Borgo, J. Lavres Jr., The Use of Forage
Grasses for the Phytoremediation of Heavy Metals: Plant
Tolerance Mechanisms, Classifications, and New Prospects,
V. Matichenkov, Ed., Phytoremediation: Methods, Management
and Assessment, Nova Science Publishers, New York, NY,
2018a, pp. 59–103.
- S. Clemens, Toxic metal accumulation, responses to exposure
and mechanisms of tolerance in plants, Biochimie, 88 (2006)
1707–1719.
- J. Vangronsveld, R. Herzig, N. Weyens, J. Boulet, K. Adriaensen,
A. Ruttens, T. Thewys, A. Vassilev, E. Meers,
E. Nehnevajova,
D. van der Lelie, M. Mench, Phytoremediation of contaminated
soils and groundwater: lessons from the field, Environ. Sci.
Pollut. Res., 16 (2009) 765–794.
- T.V. Tangahu, S.R. Sheikh Abdullah, H. Basri, M. Idris,
N. Anuar, M. Mukhlisin, A review on heavy metals
(As, Pb, and
Hg) uptake by plants through phytoremediation, Int. J. Chem.
Eng., 2011 (2011) 939161, doi:10.1155/2011/939161.
- M. Laghlimi, B. Baghdad, H. El Hadi, A. Bouabdli,
Phytoremediation mechanisms of heavy metal contaminated
soils: a review, Open J. Ecol., 5 (2015) 375–388.
- A.P.G.C. Marques, A.O.S.S. Rangel, P.M.L. Castro, Remediation
of heavy metal contaminated soils: phytoremediation as a
potentially promising clean-up technology, Environ. Sci.
Technol., 39 (2009) 622–654.
- R.P. Adams, M. Zhong, Y. Turuspekov, M.R. Dafforn,
J.F. Veldkamp, DNA fingerprinting reveals clonal nature
of Vetiveria zizanioides (L.) Nash, Gramineae and sources of
potential new germplasm, Mol. Ecol., 7 (1998) 813–818.
- V.K. Tyagi, B.K. Sahoo, A. Khursheed, A.A. Kazmi, Z. Ahmad,
A.K. Chopra, Fate of coliforms and pathogenic parasite in four
full-scale sewage treatment systems in India, Environ. Monit.
Assess., 181 (2011) 123–135.
- S. Khan, L. Aijun, S. Zhang, Q. Hu, Y.-G. Zhu, Accumulation of
polycyclic aromatic hydrocarbons and heavy metals in lettuce
grown in the soils contaminated with long-term wastewater
irrigation, J. Hazard. Mater., 152 (2008) 506–515.
- S. Wagner, P. Truong, A. Vieritz, Response of Vetiver Grass
to Extreme Nitrogen and Phosphorus Supply, Proceedings of
the Third International Conference on Vetiver and Exhibition,
Guangzhou, China, 2003, p. 176.
- R. Popat, K. Banakara, Doebioresearch: Analysis of Design of
Experiments for Biological Research, R Package Version 0.1.0,
2020.
- W. Revelle, Psych: Procedures for Personality and Psychological
Research, R Package Version 2.1.9, 2021.
- K.R. Ajoy, S. Archana, T. Geeta, Some aspects of aluminum
toxicity in plants, Bot. Rev., 54 (1998) 145–178.
- M.F. Zaranyika, T. Ndapwadza, Uptake of Ni, Zn, Fe, Co,
Cr, Pb, Cu and Cd by water hyacinth (Eichhornia crassipes) in
Mukuvisi and Manyame rivers, Zimbabwe, J. Environ. Sci.
Health, 30 (1995) 1157–1169.
- P. Chandra, K. Kulshreshtha, Chromium accumulation and
toxicity in aquatic vascular plants, Bot. Rev., 70 (2004) 313–327.
- M.A. Sajad, M.S. Khan, S. Bahadur, A. Naeem, H. Ali, F. Batool,
M. Shuaib, M.A.S. Khan, S. Batool, Evaluation of chromium
phytoremediation potential of some plant species of Dir Lower,
Khyber Pakhtunkhwa, Pakistan, Acta Ecol. Sin., 40 (2020)
158–165.
- C. Tu, L.Q. Ma, Effects of arsenic concentrations and forms
on arsenic uptake by the hyperaccumulator ladder brake,
J. Environ. Qual., 31 (2002) 641–647.
- S. Dushenkov, Y. Kapulnik, Phytofilitration of Metals,
In: Phytoremediation of Toxic Metals – Using Plants to Clean-Up
the Environment, John Wiley and Sons, Inc., New York, 2000,
p. 330.
- S.F. Cardoso, L.M.X. Lopes, I.R. Nascimento, Eichhornia crassipes: an advantageous source of shikimic acid, Revista Brasileira
de Farmacognosia, 24 (2014) 439–442.