References
- M. Čehovin, A. Medic, J. Scheideler, J. Mielcke, A. Ried,
B. Kompare, A.Ž. Gotvajn, Hydrodynamic cavitation in
combination with the ozone, hydrogen peroxide and the
UV-based advanced oxidation processes for the removal
of natural organic matter from drinking water, Ultrason.
Sonochem., 37 (2017) 394–404.
- M. Rebhun, N. Galil, Wastewater Treatment Technologies, L.
Zirm, J. Mayer, Eds., The Management of Hazardous Substances
in the Environment, Elsevier Applied Science, London, 1990,
pp. 85–106.
- Y. Yureklia, M. Yildirim, L. Aydin, M. Savran, Filtration and
removal performances of membrane adsorbers, J. Hazard.
Mater., 332 (2017) 33–41.
- M.A. Martin-Gonzalez, O. Gonzalez-Diaz, P. Susial, J. Arana,
J.A. Herrera-Melian, J.M. Dona-Rodriguez, J. Perez-Pena, Reuse
of Phoenix canariensis palm frond mulch as biosorbent and as
precursor of activated carbons for the adsorption of Imazalil in
aqueous phase, Chem. Eng. J., 245 (2014) 348–358.
- G. Mezohegyi, F.P. van der Zee, J. Font, A. Fortuny, A. Fabregat,
Towards advanced aqueous dye removal processes: a short
review on the versatile role of activated carbon, J. Environ.
Manage., 102 (2012) 148–164.
- M. Plaza-Recobert, G. Trautwein, M. Pérez-Cadenas, J. Alcañiz-Monge, Preparation of binderless activated carbon monoliths
from cocoa bean husk, Microporous Mesoporous Mater., 243
(2017) 28–38.
- I.A. Aguayo-Villarreal, A. Bonilla-Petriciolet, R. Muñiz-Valencia,
Preparation of activated carbons from pecan nutshell and their
application in the antagonistic adsorption of heavy metal ions,
J. Mol. Liq., 230 (2017) 686–695.
- R.H. Hesas, W.M.A.W. Daud, J.N. Sahu, A. Arami-Niya, The
effects of a microwave heating method on the production of
activated carbon from agricultural waste: a review, J. Anal.
Appl. Pyrolysis, 100 (2013) 1–11.
- N.A. Medellin-Castillo, R. Ocampo-Pérez, R. Leyva-Ramos, M.
Sanchez-Polo, J. Rivera-Utrilla, J.D. Méndez-Díaz, Removal of
diethyl phthalate from water solution by adsorption, photooxidation,
ozonation and advanced oxidation process (UV/H2O2, O3/H2O2 and O3/activated carbon), Sci. Total Environ., 442
(2013) 26–35.
- J. Rivera-Utrilla, M. Sanchez-Poloa, V. Gomez-Serranob, P. M.
Alvarezc, M.C.M. Alvim-Ferrazd, J.M. Diasd, Activated carbon
modifications to enhance its water treatment applications. An
overview, J. Hazard. Mater., 187 (2011) 1–23.
- S.T. Hsu, T.C. Pan, Adsorption of paraquat using methacrylic
acid-modified rice husk, Bioresour. Technol., 98 (2007)
3617–3621.
- C.M. Huang, L.C. Chen, H.C. Yang, M.H. Li, T.C. Pan,
Preparation of acrylic acid-modified chitin improved by an
experimental design and its application in absorbing toxic
organic compounds, J. Hazard. Mater., 241–242 (2012) 190–196.
- G. Jaria, C.P. Silva, C.I.A. Ferreira, M. Otero, V. Calisto, Sludge
from paper mill effluent treatment as raw material to produce
carbon adsorbents: an alternative waste management strategy,
J. Environ. Manage., 188 (2017) 203–211.
- S.A. Opatokun, A. Prabhu, A.A. Shoaibi, C. Srinivasakannan, V.
Strezov, Food wastes derived adsorbents for carbon dioxide and
benzene gas sorption, Chemosphere, 168 (2017) 326–332.
- S.T. Hsu, L.C. Chen, C.C. Lee, T.C. Pan, B.X. You, Q.F. Yan,
Preparation of methacrylic acid-modified rice husk improved
by an experimental design and application for paraquat
adsorption, J. Hazard. Mater., 171 (2009) 465–470.
- R. Barbosa, N. Lapa, H. Lopes, A. Gunther, D. Dias, B. Mendes,
Biomass fly ashes as low-cost chemical agents for Pb removal
from synthetic and industrial wastewaters, J. Colloid Interface
Sci., 424 (2014) 27–36.
- M.R. Awual, I.M.M. Rahman, T. Yaita, M.A. Khaleque, M.
Ferdows, pH dependent Cu(II) and Pd(II) ions detection and
removal from aqueous media by an efficient mesoporous
adsorbent, Chem. Eng. J., 236 (2014) 100–109.
- K.R. Zhu, H. Fu, J.H. Zhang, X.S. Lv, J. Jie Tang, X.H. Xu, Studies
on removal of NH4+-N from aqueous solution by using the
activated carbons derived from rice husk, Biomass Bioenergy,
43 (2012) 18–25.
- J.F. Su, C. Cheng, F. Ma, Comparison of the NH4+-N removal
ability by Klebsiella sp. FC61 in a bacterial suspension system
and a bacterial immobilization system, Sep. Purif. Technol., 172
(2017) 463–472.
- A. Mittal, V. Gajbe, J. Mittal, Removal and recovery of hazardous
triphenylmethane dye, methyl violet through adsorption over
granulated materials, J. Hazard. Mater., 150 (2008) 364–375.
- J. Zhang, Y. Li, C.L. Zhang, Y.M. Jing, Adsorption of malachite
green from aqueous solution onto carbon prepared from
Arundo donax root, J. Hazard. Mater., 150 (2008) 774–782.
- S. Agarwal, I. Tyagi, V.K. Gupta, S. Mashhadi, M. Ghasemi,
Kinetics and thermodynamics of Malachite Green dye removal
from aqueous phase using iron nanoparticles loaded on ash,
J. Mol. Liq., 223 (2016) 1340–1347.
- J. Li, D.H.L. Ng, P. Song, C. Kong, Y. Song, Synthesis of SnO2-activated carbon fiber hybrid catalyst for the removal of methyl
violet from water, Mater. Sci. Eng., B, 194 (2015) 1–8.
- S. Hajati, M. Ghaedi, S. Yaghoubi, Local, cheap and nontoxic
activated carbon as efficient adsorbent for the simultaneous
removal of cadmium ions and malachite green: optimization
by surface response methodology, J. Ind. Eng. Chem., 21 (2015)
760–767.
- L. Furlan, V.T. de Fa´vere, M.C.M. Laranjeira, Adsorption of
calcium ions by graft copolymer of acrylic acid on biopolymer
chitin, Polymer, 37 (1996) 843–846.
- S. Tiwari, A. Hasan, L.M. Pandey, A novel bio-sorbent comprising
encapsulated Agrobacterium fabrum (SLAJ731) and iron oxide
nanoparticles for removal of crude oil co-contaminant, lead
Pb(II), J. Environ. Chem. Eng., 5 (2017) 442–452.
- D. Sasmal, J. Maity, H. Kolya, T. Tripathy, Selective adsorption
of Pb (II) ions by amylopectin-g-poly(acrylamide-co-acrylic
acid): a bio-degradable graft copolymer, Int. J. Biol. Macromol.,
97 (2017) 585–597.
- K.A. Gebru, C. Das, Removal of Pb (II) and Cu (II) ions from
wastewater using composite electrospun cellulose acetate/titanium oxide (TiO2) adsorbent, J. Water Process Eng., 16 (2017)
1–13.
- M. Kong, H. Song, F. Li, D. Dai, H. Gao, Facile synthesis of
Bi2Fe4O9 nanoplate and its application as a novel adsorbent for
Cu(II) removal, J. Environ. Chem. Eng., 5 (2017) 69–78.
- C.W. Xaio, X.J. Liu, S.M. Mao, L.J. Zhang, J. Lu, Sub-micronsized
polyethylenimine-modified polystyrene/Fe3O4/chitosan
magnetic composites for the efficient and recyclable adsorption
of Cu(II) ions, Appl. Surf. Sci., 394 (2017) 378–385.
- T.H. Martins, T.S.O. Souza, E. Foresti, Ammonium removal
from landfill leachate by Clinoptilolite adsorption followed by
bioregeneration, J. Environ. Chem. Eng., 5 (2017) 63–68.
- Z.H. Wang, H.Y. Guo, F. Shen, G. Yang, Y.Z. Zhang, Y.M. Zeng,
L.L. Wang, H. Xiao, S.H. Deng, Biochar produced from oak
sawdust by Lanthanum (La)-involved pyrolysis for adsorption
of ammonium (NH4+), nitrate (NO3–), and phosphate (PO43–),
Chemosphere, 119 (2015) 646–653.
- X.G. Wang, S.Y. Lu, C.M. Gao, X.B. Xu, X.J. Zhang, X. Bai, M.Z.
Liu, L. Wu, Highly efficient adsorption of ammonium onto
palygorskite nanocomposite and evaluation of its recovery as a
multifunctional slow-release fertilizer, Chem. Eng. J., 252 (2014)
404–414.
- S. Moradi, S. Azizian, Preparation of nanostructured carbon
covered sand for removal of methyl violet from water, J. Mol.
Liq., 219 (2016) 909–913.
- Y. Kim, J. Bae, H. Park, J.K. Suh, Y.W. You, H. Choi, Adsorption
dynamics of methyl violet onto granulated mesoporous carbon:
facile synthesis and adsorption kinetics, Water Res., 101 (2016)
187–194.
- G.Y. Tian, W.B. Wang, Y.R. Kang, A.Q. Wang, Ammonium
sulfide-assisted hydrothermal activation of palygorskite for
enhanced adsorption of methyl violet, J. Environ. Sci., 41 (2016)
33–43.
- E.A. Dil, M. Ghaedi, A. Asfaram, S. Hajati, F. Mehrabi, A.
Goudarzi, Preparation of nanomaterials for the ultrasoundenhanced
removal of Pb2+ ions and malachite green dye:
chemometric optimization and modeling, Ultrason. Sonochem.,
34 (2017) 677–691.
- A.A. El-Zahhar, N.S. Awwad, Removal of malachite green
dye from aqueous solutions using organically modified
hydroxyapatite, J. Environ. Chem. Eng., 4 (2016) 633–638.
- M. Ghasemi, S. Mashhadi, M. Asif, I. Tyagi, S. Agarwal, V.K.
Gupta, Microwave-assisted synthesis of tetraethylenepentamine
functionalized activated carbon with high adsorption capacity
for Malachite green dye, J. Mol. Liq., 213 (2016) 317–325.
- F. Zhang, B.L. Ma, X.P. Jiang, Y.F. Ji, Dual function magnetic
hydroxyapatite nanopowder for removal of malachite green
and Congo red from aqueous solution, Powder Technol., 302
(2016) 207–214.