References
- A.G. Varghese, S.A. Paul, M.S. Latha, Remediation of heavy
metals and dyes from wastewater using cellulose-based
adsorbents, Environ. Chem. Lett., 17 (2019) 867–877.
- P.P. Jain, A.Z. Nahar, S.J. Sisodiya, S.G. Kunnel, Tree Barks
for Bioremediation of Heavy Metals from Polluted Waters,
Inamuddin, M.I. Ahamed, E. Lichtfouse, A.M. Asiri, Methods
for Bioremediation of Water and Wastewater Pollution,
Environmental Chemistry for a Sustainable World, Springer,
Cham, 2020, pp. 277–288.
- M. Naveed, A. Ditta, M. Ahmad, A. Mustafa, Z. Ahmad,
M. Conde-Cid, S. Tahir, S.A.A. Shah, M.M. Abrar, S. Fahad,
Processed animal manure improves morpho-physiological
and biochemical characteristics of Brassica napus L. under
nickel and salinity stress, Environ. Sci. Pollut. Res., (2021),
doi: 10.1007/s11356-021-14004-3.
- S. Irshad, Z. Xie, S. Mehmood, A. Nawaz, A. Ditta, Q. Mahmood,
Insights into conventional and recent technologies for arsenic
bioremediation: a systematic review, Environ. Sci. Pollut.
Res., 28 (2021) 18870–18892.
- S. Mehmood, X. Wang, W. Ahmed, M. Imtiaz, A. Ditta,
M. Rizwan, S. Irshad, S. Bashir, Q. Saeed, A. Mustafa,
W. Li, Removal mechanisms of slag against potentially
toxic elements in soil and plants for sustainable agriculture
development: a critical review, Sustainability, 13 (2021) 5255,
doi: 10.3390/su13095255.
- Z. Al-Qodah, Biosorption of heavy metal ions from aqueous
solutions by activated sludge, Desalination, 196 (2006) 164–176.
- K.A. Krishnan, K.G. Sreejalekshmi, R.S. Baiju, Nickel(II)
adsorption onto biomass based activated carbon obtained
from sugarcane bagasse pith, Bioresour. Technol., 102 (2011)
10239–10247.
- N.M. Salem, A.M. Awwad, Biosorption of Ni(II) from
electroplating wastewater by modified (Eriobotrya japonica)
loquat bark, J. Saudi Chem. Soc., 18 (2014) 379–386.
- M. Naveed, S.S. Bukhari, A. Mustafa, A. Ditta, S. Alamri,
M.A. El-Esawi, M. Rafique, S. Ashraf, M.H. Siddiqui,
Mitigation of nickel toxicity and growth promotion in sesame
through the application of a bacterial endophyte and zeolite
in nickel contaminated soil, Int. J. Environ. Res. Public Health,
17 (2020) 8859, doi: 10.3390/ijerph17238859.
- World Health Organization, Water Quality and Health-Review
of Turbidity: Information for Regulators and Water Suppliers
(No. WHO/FWC/WSH/17.01), World Health Organization,
Geneva, Switzerland, 2017.
- K.B. Delclos, W.G. Tarpley, E.C. Miller, J.A. Miller,
4-Aminoazobenzene and N,N-dimethyl-4-aminoazobenzene
as equipotent hepatic carcinogens in male C57BL/6 X C3H/
He F1 mice and characterization of N-(Deoxyguanosin-8-yl)-4-aminoazobenzene as the major persistent hepatic DNA-bound
dye in these mice, Cancer Res., 44 (1984) 2540–2550.
- IARC, Some Aziridines, N-, S- & O-Mustards and Selenium.
IARC Monographs on the Evaluation of the Carcinogenic Risk
of Chemicals to Man, Vol. 9, International Agency for Research
on Cancer, Lyon, France, 1975, pp. 1–268.
- S. Babel, T.A. Kurniawan, Cr(VI) removal from synthetic
wastewater using coconut shell charcoal and commercial
activated carbon modified with oxidizing agents and/or
chitosan, Chemosphere, 54 (2004) 951–967.
- B. Alyuz, S. Veli, Kinetics and equilibrium studies for the
removal of nickel and zinc from aqueous solutions by ion
exchange resins, J. Hazard. Mater., 167 (2009) 482–488.
- J. Landaburu-Aguirre, V. Garcia, E. Pongracz, R.L. Keiski,
The removal of zinc from synthetic wastewaters by micellarenhanced
ultrafiltration: statistical design of experiments,
Desalination, 240 (2009) 262–269.
- V. Khandegar, A.K. Saroha, Electrochemical treatment of textile
effluent containing Acid Red 131 dye, J. Hazard. Toxic Radioact.
Waste, 18 (2014) 38–44.
- E.A. Lopez-Maldonado, M.T. Oropeza-Guzman, J.L. Jurado-Baizaval, A. Ochoa-Teran, Coagulation–flocculation mechanisms
in wastewater treatment plants through zeta potential
measurements, J. Hazard. Mater., 279 (2014) 1–10.
- N.P. Raval, P.U. Shah, N.K. Shah, Adsorptive removal of
nickel(II) ions from aqueous environment: a review, J. Environ.
Manage., 179 (2016) 1–20.
- S. Singh, N. Parveen, H. Gupta, Adsorptive decontamination
of rhodamine-B from water using banana peel powder:
a biosorbent, Environ. Technol. Innovation, 12 (2018) 189–195.
- M. Fomina, G.M. Gadd, Biosorption: current perspectives
on concept, definition and application, Bioresour. Technol.,
160 (2014) 3–14.
- C. Tejada-Tovar, A. Gonzalez-Delgado, A. Villabona-Ortiz,
Adsorption kinetics of orange peel biosorbents for Cr(VI)
uptake from water, Contemp. Eng. Sci., 11 (2018) 1185–1193.
- V.K. Gupta, P.J.M. Carrott, C.M.M.L. Ribeiro, Suhas, Low-cost
adsorbents: growing approach to wastewater treatment –
a review, Crit. Rev. Env. Sci. Technol., 39 (2009) 783–842.
- V.K. Gupta, A. Rastogi, Biosorption of hexavalent chromium by
raw and acid-treated green alga Oedogonium hatei from aqueous
solutions, J. Hazard. Mater., 163 (2009) 396–402.
- H. Parab, S. Joshi, N. Shenoy, A. Lali, U.S. Sarma, M. Sudersanan,
Determination of kinetic and equilibrium parameters of the
batch adsorption of Co(II), Cr(III) and Ni(II) onto coir pith,
Process Biochem., 41 (2006) 609–615.
- O.O. Abdulrasaq, O.G. Basiru, Removal of copper(II), iron(III)
and lead(II) ions from mono-component simulated waste
effluent by adsorption on coconut husk, Afr. J. Environ. Sci.
Technol., 4 (2010) 382–387.
- R. Sharma, B. Singh, Removal of Ni(II) ions from aqueous
solutions using modified rice straw in a fixed bed column,
Bioresour. Technol., 146 (2013) 519–524.
- S. Abadian, A. Rahbar-Kelishami, R. Norouzbeigi, M. Peydayesh,
Cu(II) adsorption onto Platanus orientalis leaf powder: kinetic,
isotherm and thermodynamic studies, Res. Chem. Intermed.,
41 (2015) 7669–7681.
- M. Feizi, M. Jalali, Removal of heavy metals from aqueous
solutions using sunflower, potato, canola and walnut shell
residues, J. Taiwan Inst. Chem. Eng., 54 (2015) 125–136.
- M.B. Ibrahim, S. Sani, Comparative isotherms studies on
adsorptive removal of Congo red from wastewater by
watermelon rinds and neem-tree leaves, Open J. Phys. Chem.,
4 (2014) 139–146.
- C.E.R. Barquilha, E.S. Cossich, C.R.G. Tavares, E.A. Silva,
Biosorption of nickel(II) and copper(II) ions in batch and fixedbed
columns by free and immobilized marine algae Sargassum sp., J. Cleaner Prod., 150 (2017) 58–64.
- N.E. Ibisi, C.A. Asoluka, Use of agro-waste (Musa paradisiaca peels) as a sustainable biosorbent for toxic metal ions removal
from contaminated water, Chem. Int., 4 (2018) 52–59.
- A. Kausar, G. MacKinnon, A. Alharthi, J. Hargreaves,
H.N. Bhatti, M. Iqbal, A green approach for the removal of
Sr(II) from aqueous media: kinetics, isotherms and thermodynamic
studies, J. Mol. Liq., 257 (2018) 164–172.
- I. Villaescusa, N. Fiol, M. Martinez, N. Miralles, J. Poch,
J. Serarols, Removal of copper and nickel ions from aqueous
solutions by grape stalks wastes, Water Res., 38 (2004) 992–1002.
- V.T.P. Vinod, R.B. Sashidhar, B. Sreedhar, Biosorption of nickel
and total chromium from aqueous solution by gum kondagogu
(Cochlospermum gossypium): a carbohydrate biopolymer,
J. Hazard. Mater., 178 (2010) 851–860.
- P.K. Malik, Dye removal from wastewater using activated
carbon developed from sawdust: adsorption equilibrium and
kinetics, J. Hazard. Mater., 113 (2004) 81–88.
- S.G. Susmita, G.B. Krishna, Adsorption of Ni(II) on clays,
J. Colloid Interface Sci., 295 (2006) 21–32.
- B.H. Hameed, A.T.M. Din, A.L. Ahmad, Adsorption of
methylene blue onto bamboo-based activated carbon: kinetics
and equilibrium studies, J. Hazard. Mater., 141 (2007) 819–825.
- R. Lakshmipathy, N.C. Sarada, Application of watermelon
rind as sorbent for removal of nickel and cobalt from aqueous
solution, Int. J. Miner. Process., 122 (2013) 63–65.
- K. Vijayaraghavan, Biosorption of lanthanide (praseodymium)
using Ulva lactuca: mechanistic study and application of two,
three, four and five parameter isotherm models, J. Environ.
Biotechnol. Res., 1 (2015) 10–17.
- S.S. Gupta, K. Sharma, A. Kumar, Biosorption of Ni(II) ions
from aqueous solution using modified Aloe barbadensis Miller
leaf powder, Water Sci. Eng., 12 (2019) 27–36.
- D.M. Sánchez-Nava, H. Lopez-Gonzalez, M.T. Olguin,
S. Bulbulian, Nickel(II) sorption from aqueous media by
Agave salmiana as biosorbent, J. Appl. Res. Technol., 17 (2019)
186–194.
- I.L.R. Rico, R.J.C. Carrazana, N.K. Karna, I. Iáñez-Rodríguez,
M.C. De Hoces, Modeling the mass transfer in biosorption of
Cr(VI) and Ni(II) by natural sugarcane bagasse, Appl. Water Sci.,
8 (2018) 2–8.
- S. Gupta, A.K. Jain, Biosorption of heavy metals by pretreated
biomass of A. barbadensis Miller leaves residue powder, Int.
J. Adv. Res. Sci. Eng., 6 (2017) 677–683.
- G. Vázquez, G. Antorrena, J. Gonzalez, M.D. Doval, Adsorption
of heavy metal ions by chemically modified Pinus pinaster bark,
Bioresour. Technol., 48 (1994) 251–255.
- A.L. Prasad, T. Santhi, Adsorption of hazardous cationic dyes
from aqueous solution onto Acacia nilotica leaves as an ecofriendly
adsorbent, Sustain. Environ. Res., 22 (2012) 113–122.
- A.L. Prasad, S. Thirumalisamy, Evaluation of the use of Acacia
nilotica leaf as an ecofriendly adsorbent for Cr(VI) and its
suitability in real wastewater: study of residual errors, J. Chem.,
2013 (2013) 1–7.
- M.N. Zafar, R. Nadeem, M.A. Hanif, Biosorption of nickel from
protonated rice bran, J. Hazard. Mater., 143 (2007) 478–485.
- E. Carissimi, T.M. Pizzolato, A. Zoch, C. Mistura, E.L. Machado,
I.A.H. Schneider, Treatment of dye bearing effluents from
Brazilian agate industry, Dev. Miner. Process., 13 (2000) 9–13,
doi: 10.1016/S0167e4528(00)80100e3.
- G.Z. Kyzas, K.A. Matis, Nano adsorbents for pollutants
removal: a review, J. Mol. Liq., 203 (2015) 159–168.
- I. Langmuir, The dissociation of hydrogen into atoms. III.
The mechanism of the reaction, J. Am. Chem. Soc., 38 (1916)
1145–1156.
- H. Freundlich, Freundlich’s adsorption isotherm, J. Phys.
Chem., 57 (1906) 384.
- I. Anastopoulos, G.Z. Kyzas, Agricultural peels for dye
adsorption: a review of recent literature, J. Mol. Liq., 200 (2014)
381–389.
- S. Lagergren, Zur theorie der sogenannten adsorption geloster
stoffe, Kungliga Svenska Vetenskapsakademiens, Handlingar,
24 (1898) 1–39.
- Y.S. Ho, G. McKay, Pseudo-second-order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- P. Saueprasearsit, M. Nuanjaraen, M. Chinlapa, Biosorption of
Pb2+ by Luffa cylindrical fiber, Environ. Res. J., 4 (2010) 157–166.
- A.A. Inyinbor, F.A. Adekola, G.A. Olatunji, Kinetics, isotherms
and thermodynamic modeling of liquid phase adsorption
of Rhodamine B dye onto Raphia hookerie fruit epicarp, Water
Resour. Ind., 15 (2016) 14–27.