References
- Y.S. Ho, Critical review of Lagergren kinetic rate equation
on adsorption reactions, Scientometrics, 59 (2004) 171–177.
- A. Ali, K. Saeed, F. Mabood, Removal of chromium(VI) from
aqueous medium using chemically modified banana peels
as efficient low cost adsorbent, Alexandria Eng. J., 55 (2015)
2933–2942.
- S.S. Kalaivani, T. Vidhyadevi, A. Murugesan, K.V Thiruvengadaravi,
D. Anuradha, S. Sivanesan, The use of new
modified poly(acrylamide) chelating resin with pendent
benzothiazole groups containing donor atoms in the removal
of heavy metal ions from aqueous solutions, Water Res.
India, 5 (2015) 21–35.
- I. Nirmala, Use of iron oxide magnetic nano adsorbents for
Cr(VI) removal from aqueous solutions: a review, Int. J. Eng.
Res. Appl., 4 (2014) 55–63.
- M.H. Kalavathy, T. Karthikeyan, S. Rajgopal, L.R. Miranda,
Kinetic and isotherm studies of Cu(II) adsorption onto HPOactivated
rubber wood sawdust, J. Colloid Interface Sci.,
292 (2014) 354–362.
- J. Thilagan, A. Vimalkumar, K. Rajasekaran, C. Raja, Continuous
fixed bed column adsorption of copper(II) ions from aqueous
solution by calcium carbonate, Int. J. Eng. Res. Technol., 4 (2015)
413–418.
- B. Mao, A. Tok, S. Anyata, Removal of Lead Ion from Industrial
wastewaters by activated carbon prepared from periwinkle
shells (Typanotonus fuscatus), Turk. J. Eng. Environ. Sci.,
31 (2007) 251–263.
- F. Boudrahem, F.A. Benissad, A. Soualah, Adsorption of
lead(II) from aqueous solution by using leaves of date trees as
an adsorbent, J. Chem. Eng. Data, 56 (2011) 1804–1812.
- M. Vishnu, G. Niharika, B. Rajmohan, R. Keyur, Batch and
continuous studies on the removal of heavy metals from
aqueous solution using biosynthesised melanin-coated PVDF
membranes, Environ. Sci. Pollut. Res., 27 (2020) 24723–24737.
- M. Jain, V. Kumar, K. Kadirvelu, Removal of Ni(II) from
aqueous system by chemically modified sunflower biomass,
Desal. Water Treat., 52 (2013) 5681–5695.
- T.T. Pham, M.T. Hoang, M.K. Nguyen, T.H. Dinh, P.L. Han,
B.V. Bruggen, Evaluation of chemical modified sugarcane
bagasse for cadmium removal in aqueous environment, Int.
Proc. Chem. Biol. Environ. Eng., 88 (2015) 6–10.
- Y.J. Gao, Removal of cadmium and cobalt from heavy metal
solution using oyster shells adsorbent, Asian J. Chem., 25 (2013)
8537–8540.
- K. Priyanka, Application of sugarcane bagasse for the removal
of chromium(VI) and zinc(II) from aqueous solution, Int.
Res. J. Eng. Technol., 4 (2017) 1670–1673.
- R. Kamal, S. Mitali, L. Nilesh, Adsorption of copper (Cu2+) metal
ion from wastewater using sulphuric acid treated sugarcane
bagasse as adsorbent, Int. J. Adv. Eng. Res. Sci., 1 (2014) 55–59.
- C. Jiao, Y. Cheng, W. Fan, J. Li, Synthesis of agar–stabilized
nanoscale zero valent iron particles and removal study of
hexavalent chromium, Int. J. Environ. Sci. Technol., 12 (2012)
1603–1612.
- A.M. Nadeem, S.A. Mohammad, S.S. Shahid, A.M. Shah,
G. Khalid, Sorption of lead from aqueous solution by chemically
modified carbon adsorbents, J. Hazard. Mater., 138 (2006)
604–613.
- N. Kazem, N. Ramin, S. Reza, A.H. Mahvi, V. Forough, Y. Kamyar,
G. Azar, N. Shahrokh, Biosorption of lead(II) and cadmium(II)
by protonated sargassum glaucescens biomass in a continious
packed bed column, J. Hazard. Mater., 147 (2007) 785–791.
- Q. Li, W. Zhai, W. Zhang, M. Wang, J. Zhou, Kinetic studies of
adsorption of Pb(II), Cr(III) and Cu(II) from aqueous solution
by sawdust and modified peanut husk, J. Hazard. Mater.,
141 (2006) 163–167.
- H. Jing, H. Song, Z. Liang, G. Fuxing, H.Y. Shan, Equilibrium
and thermodynamic parameters of adsorption of methylene
blue onto rectorite, Fresenius Environ. Bull., 19 (2010) 2651–2656.
- P. Senthilkumar, H. Ethiraj, V. Anitha, N. Deepika, S. Nivedha,
T. Vidhyadevi, L. Ravikumar, S. Sivanesan, Adsorption, kinetic,
equilibrium and thermodynamic investigations of Zn(II)
and Ni(II) ions removal by poly(azomethinethioamide) resin
with pendent chlorobenzylidine ring, Pol. J. Chem. Technol.,
3 (2017) 100–109.
- B. Agnes, N. Eliazar, O. Augustine, Intraparticle diffusion
of Cr(VI) through biomass and magnetite coated biomass: a
comparative kinetic and diffusion study, S. Afr. J. Chem. Eng.,
32 (2020) 39–55.
- M.A. Ahmad, Kinetic equilibrium and thermodynamic studies
of synthetic dye removal using pomegranate peel activated
carbon prepared by microwave–induced KOH activation,
Water Res. Ind., 06 (2014) 18–35.
- M. Xiaojun, Y. Hongmei, Y. Lili, C. Yin, L. Ying, Preparation,
surface and pore structure of high surface area activated carbon
fibers from bamboo by steam activation, Materials, 7 (2014)
4431–4441.
- N.S. Langeroodi, Z. Farhadravesh, A.D. Khalaji, Optimization
of adsorption parameters for Fe(III) ions removal from aqueous
solutions by transition metal oxide nanocomposite, Green
Chem. Lett. Rev., 11 (2018) 404–413.
- H.N.M.E. Mahmud, A.O. Huq, R. Binti, The removal of
heavy metal ions from wastewater/aqueous solution using
polypyrrole-based adsorbents: a review, RSC Adv., 06 (2016)
14778–14791.
- T. Vidhyadevi, A. Murugesan, S.S. Kalaivani, M.P. Premkumar,
V. Vinothkumar, L. Ravikumar, Evaluation of
equilibrium, kinetic, and thermodynamic parameters for
adsorption of Cd2+ ion and methyl red dye onto amorphous
poly(azomethinethioamide) resin, Desal. Water Treat., 52 (2014)
3477–3488.
- W.J. Weber, J.C. Morris, Kinetics adsorption on carbon from
solutions, J. Sanitary Eng. Div., 89 (1963) 31–60.
- N. Zulfareen, T. Venugopal, I. Sajitha, Removal of zinc from
synthetic wastewater by activated carbon propsopis juliflora,
Int. J. Adv. Sci. Eng., 4 (2018) 746–749.
- O.O. Ogunleye, M.A. Ajala, S.E. Agarry, Evaluation of
biosorptive capacity of banana (Musa paradisiaca) stalk for
lead(II) removal from aqueous solution, J. Environ. Prot.,
05 (2014) 1451–1465.
- O. Joseph, M. Rouez, H.M. Pignon, B. Remy, E. Evens,
G. Remy, Adsorption of heavy metals on to sugarcane bagasse:
improvement of adsorption capacities due to anaerobic
degradation of the biosorbent, Environ. Technol., 30 (2009)
1371–1379.
- T. Sathish, N.V. Vinithkumar, G. Dharani, R. Kirubagaran,
Efficacy of mangrove leaf powder for bioremediation
of chromium(VI) from aqueous solutions: kinetic and
thermodynamic evaluation, Appl. Water Sci., 5 (2015) 153–160.
- R. Lakshmipathy, N.C. Sarada, A fixed bed column study for the
removal of Pb2+ ions by watermelon rind, Water Res. Technol.,
1 (2015) 244–250.
- Y.S. Ho, G. Mckay, Pesudo-second-order model for sorption
process, Process Biochem., 34 (1999) 451–465.
- F. Qin, B. Wen, X.Q. Shan, Y.N. Xie, Mechanisms of competitive
adsorption of Pb, Cu and Cd on peat, Environ. Pollut.,
144 (2015) 669–680.
- P. Senthil Kumar, S. Ramalingam, V. Sathyaselvabala, S. Dinesh
Kirupha, A. Murugesan, S. Sivanesan, Removal of cadmium(II)
from aqueous solution by agricultural waste cashew nut
shell, Korean J. Chem. Eng., 29 (2012) 756–768.
- M.T. Amin, A.A. Alazba, M. Shafiq, Batch and fixed bed
column studies for the biosorption of Cu(II) and Pb(II) by raw
and treated date palm leaves and orange peel, Global Nest J.,
19 (2017) 464–478.
- H.A. Hegazi, Removal of heavy metals from wastewater using
agricultural and industrial wastes as adsorbents, HRBC J.,
9 (2013) 276–282.
- A.K. Priya, S. Nagan, M. Nithya, P.M. Priyanka, M. Rajeswari,
Assessment of tendu leaf refuses for the heavy metal removal
from electroplating effluent, J. Pure Appl. Microbiol.,
10 (2016) 585–591.
- W. Kong, J. Ren, S. Wang, Q. Chen, Removal of heavy metals
from aqueous solutions using acrylic-modified sugarcane
bagasse based adsorbents: equilibrium and kinetic studies,
BioResources, 9 (2014) 3184–3196.
- N.Y. Yarkandi, Removal of lead(II) from waste water by
adsorption, Int. J. Curr. Microbiol. Appl. Sci., 3 (2014) 207–228.
- V. Yogeshwaran, A.K. Priya, Removal of heavy metals using
nano particles – a review, Ind. J. Environ. Prot., 39 (2019) 17–21.
- T.V. Tran, Q.T. Phoung, T.D. Nguyen, N.T. Hong le, L.G. Bach,
A comparative study on the removal efficiency of metal ions
(Cu2+, Ni2+ and Pb2+) using sugarcane bagasse derived ZnCl2
– activated carbon by the response surface methodology,
Adsorpt. Sci. Technol., 35 (2017) 72–85.
- S.M.E. Yakout, A.A. Abdeltawab, K. Elhindi, A. Askalany,
Uranium dynamic adsorption breakthrough curve onto rice
straw based activated carbon using bed depth service time
model, BioResources, 13 (2018) 9143–9157.
- H.D.S.S. Karunarathne, B.M.W.P.K. Amarasinghe, Fixed bed
adsorption column studies for the removal of aqueous phenol
from activated carbon prepared from sugarcane bagasse,
Energy Procedia, 34 (2013) 83–90.
- M.M. Saeed, A. Munir, Effect of temperature on kinetics and
adsorption profile of endothermic chemisorption process:
– Tm(III) – PAN loaded PUF system, Sep. Sci. Technol.,
41 (2005) 705–722.