References
- G. Crini, Non-conventional low-cost adsorbents for dye
removal: a review, Bioresour. Technol., 97 (2006) 1061–1085.
- F.M. Mohammed, E.P.L. Roberts, A. Hill, A.K. Campen,
N.W. Brown, Continuous water treatment by adsorption and
electrochemical regeneration, Water Res., 45 (2011) 3065–3074.
- V.K. Gupta, I. Ali, V.K. Saini, Adsorption studies on the removal
of Vertigo Blue 49 and Orange DNA13 from aqueous solutions
using carbon slurry developed from a waste material, J. Colloid
Interface Sci., 315 (2007) 87–93.
- A.M. Aljeboree, A.N. Alshirifi, A.F. Alkaim, Kinetics and
equilibrium study for the adsorption of textile dyes on coconut
shell activated carbon, Arabian J. Chem., 10 (2017) S3381-S3393.
- C.H. Weng, M.C. Hsu, Regeneration of granular activated
carbon by an electrochemical process, Sep. Purif. Technol., 64
(2008) 227–236.
- S. Lopez-Bernabeu, R. Ruiz-Rosas, C. Quijada, F. Montilla, E.
Morallon, Enhanced removal of 8-quinolinecarboxylic acid
in an activated carbon cloth by electroadsorption in aqueous
solution, Chemosphere, 144 (2016) 982–988.
- N.W. Brown, E.P.L. Roberts, A.A. Garforth, R.A.W. Dryfe,
Electrochemical regeneration of a carbon-based adsorbent
loaded with crystal violet dye, Electrochim. Acta, 49 (2004)
3269–3281.
- R. Berenguer, J.P. Marco-Lozar, C. Quijada, D. Cazorla-Amoros,
E. Morallon, Electrochemical regeneration and porosity
recovery of phenol-saturated granular activated carbon in an
alkaline medium, Carbon, 48 (2010) 2734–2745.
- A. Ahmad, S.H. Mohd-Setapar, C.S. Chuong, A. Khatoon,
W.A. Wani, R. Kumar, M. Rafatullah, Recent advances in
new generation dye removal technologies: novel search for
approaches to reprocess wastewater, RSC Adv., 5 (2015)
30801–30818.
- Y.H. Han, X. Quan, X.L. Ruan, W.D. Zhang, Integrated
electrochemically enhanced adsorption with electrochemical
regeneration for removal of acid orange 7 using activated
carbon fibers, Sep. Purif. Technol., 59 (2008) 43–49.
- R. Berenguer, J.P. Marco-lozar, C. Quijada, D. Cazorla-Amoros,
E. Morallon, Comparison among chemical, thermal, and
electrochemical regeneration of phenol-saturated activated
carbon, Energ. Fuel., 24 (2010) 3366–3372.
- T.L. Zheng, Q.H. Wang, Z.N. Shi, Z.H. Zhang, Y.H. Ma,
Microwave regeneration of spent activated carbon for the
treatment of ester-containing wastewater, RSC Adv., 6 (2016)
60815–60825.
- G.S. Miguel, S.D. Lambert, N.J. Graham, The regeneration of
field-spent granular-activated carbons, Water Res., 35 (2001)
2740–2748.
- R.M. Narbaitz, J. McEwen, Electrochemical regeneration of
field spent GAC from two water treatment plants, Water Res.,
46 (2012) 4852–4860.
- B. Karabacakoglu, O. Savlak, Electrochemical regeneration
of Cr (VI) saturated granular and powder activated carbon:
Comparison of regeneration efficiency, Ind. Eng. Chem. Res.,
53 (2014) 13171–13179.
- Y.H. Han, X. Quan, S. Chen, H.M. Zhao, C.Y. Cui, Y.Z. Zhao,
Electrochemically enhanced adsorption of aniline on activated
carbon fibers, Sep. Purif. Technol., 50 (2006) 365–372.
- O. Zanella, D. Bilibio, W.L. Priamo, I.C. Tessaro, L.A. Feris,
Electrochemical regeneration of phenol-saturated activated
carbon-proposal of a reactor, Environ. Technol., 38 (2017)
549–557.
- T. Velegraki, I. Poulios, M. Charalabaki, N. Kalogerakis,
P. Samaras, D. Mantzavinos, Photocatalytic and sonolytic
oxidation of acid orange 7 in aqueous solution, Appl. Catal.
B-Environ., 62 (2006) 159–168.
- C. Cai, H. Zhang, X. Zhong, L.W. Hou, Ultrasound enhanced
heterogeneous activation of peroxymonosulfate by a bimetallic
Fe-Co/SBA-15 catalyst for the degradation of Orange II in water,
J. Hazard. Mater., 283 (2015) 70–79.
- L.C. Davies, I.S. Pedro, J.M. Novais, S. Martins-dias, Aerobic
degradation of acid orange 7 in a vertical-flow constructed
wetland, Water Res., 40 (2006) 2055–2063.
- C. Guillard, H. Lachheb, A. Houas, M. Ksibi, E. Elaloui, J.M.
Herrmann, Influence of chemical structure of dyes, of pH and
of inorganic salts on their photocatalytic degradation by TiO2
comparison of the efficiency of powder and supported TiO2, J.
Photochem. Photobiol. A, 158 (2003) 27–36.
- T. Hirakawa, Y. Nosaka, Properties of O2•- and •OH formed
in TiO2 aqueous suspensions by photocatalytic reaction and
the influence of H2O2 and some ions, Langmuir, 18 (2002)
3247–3254.
- S.S. Barton, M.J.B. Evans, E. Halliop, J.A.F. MacDonald, Acidic
and basic sites on the surface of porous carbon, Carbon, 35
(1997) 1361–1366.
- J.S. Noh, J.A. Schwarz, Effect of HNO3 treatment on the surface
acidity of activated carbons, Carbon, 28 (1990) 675–682.
- Y.Y. Xue, G.Z. Lu, Y. Guo, Y.L. Guo, Y.Q. Wang, Z.G. Zhang,
Effect of pretreatment method of activated carbon on the
catalytic reduction of NO by carbon over CuO, Appl. Catal.
B-Environ., 79 (2008) 262–269.
- H.P. Boehm, Surface oxides on carbon and their analysis: a
critical assessment, Carbon, 40 (2002) 145–149.
- W.L. Chou, C.T. Wang, C.P. Chang, Comparison of removal
of acid orange 7 by electrooxidation using various anode
materials, Desalination, 266 (2011) 201–207.
- F. Herrera, A. Lopez, G. Mascolo, E. Albers, J. Kiwi, Catalytic
combustion of orange II on hematite: surface species responsible
for the dye degradation, Appl. Catal. B-Environ., 29 (2001)
147–162.
- Y.L. Hsiao, K. Nobe, Hydroxylation of chlorobenzene and
phenol in a packed bed flow reactor with electrogenerated
Fenton’s reagent, J. Appl. Electrochem., 23 (1993) 943–946.
- A. Alvarez-Gallegos, D. Pletcher, The removal of low level
organics via hydrogen peroxide formed in a reticulated vitreous
carbon cathode cell, Part 1. The electrosynthesis of hydrogen
peroxide in aqueous acidic solutions, Electrochim. Acta, 44
(1998) 853–861.
- R. Berenguer, J.P. Marco-Lozar, C. Quijada, D. Cazorla-Amoros,
E. Morallon, Effect of electrochemical treatments on the surface
chemistry of activated carbon, Carbon, 47 (2009) 1018–1027.
- Z.M. Qiang, J.H. Chang, C.P. Huang, Electrochemical
generation of hydrogen peroxide from dissolved oxygen in
acidic solutions, Water Res., 36 (2002) 85–94.
- H.H. Huang, M.C. Lu, J.N. Chen, C.T. Lee, Catalytic
decomposition of hydrogen peroxide and 4-chlorophenol in
the presence of modified activated carbons, Chemosphere, 51
(2003) 935–943.
- F. Lucking, H. Koser, M. Jank, A. Ritter, Iron powder,
graphite and activated carbon as catalysts for the oxidation of
4-chlorophenol with hydrogen peroxide in aqueous solution,
Water Res., 32 (1998) 2607–2614.
- M.H. Zhou, L.C. Lei, The role of activated carbon on the removal
of p-nitrophenol in an integrated three-phase electrochemical
reactor, Chemosphere, 65 (2006) 1197–1203.
- R.V. Mcquillan, G.W. Stevens, K.A. Mumford, The
electrochemical regeneration of granular activated carbons: A
review, J. Hazard. Mater., 355 (2018) 34–49.
- C.A. Martínez-Huitle, M.A. Rodrigo, I. Sirés, O. Scialdone,
Single and coupled electrochemical processes and reactors for
the abatement of organic Water pollutants: a critical review,
Chem. Rev., 115 (2015) 13362–13407.
- Y.B. Acar, A.N. Alshawabkeh, Principles of electrokinetic
remediation, Environ. Sci. Technol., 27 (1993) 2638–2647
- X. Quan, X.T. Liu, L.L. Bo, S. Chen, Y.Z. Zhao, X.Y. Cui,
Regeneration of acid orange 7-exhausted granular activated
carbons with microwave irradiation, Water Res., 38 (2004)
4484–4490.
- C. Namasivayam, K. Kadirvelu, Uptake of mercury (II) from
wastewater by activated carbon from an unwanted agricultural
solid by-product: coirpith, Carbon, 37 (1999) 79–84.
- F. Nekouei, S. Nekouei, I. Tyagi, V.K. Gupta, Kinetic,
thermodynamic and isotherm studies for acid blue 129 removal
from liquids using copper oxide nanoparticle-modified
activated carbon as a novel adsorbent, J. Mol. Liq., 201 (2015)
124–133.
- N. Thinakaran, P. Baskaralingam, K.V.T. Ravi, P. Panneerselvam,
Adsorptive removal of acid blue 15: equilibrium and kinetic
study, Clean-Soil Air Water, 36 (2008) 798–804.
- G. Mckay, V.J.P. Poots, Kinetics and diffusion processes in
colour removal from effluent using wood as an adsorbent, J.
Chem. Technol. Biotechnol., 30 (1980) 279–292.
- I. Langmuir, The adsorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- P. Hadi, M. Xu, C. Ning, C.S.K. Lin, G. McKay, A critical review
on preparation, characterization and utilization of sludgederived
activated carbons for wastewater treatment, Chem.
Eng. J., 260 (2015) 895–906.
- M, Khan, I.M.C. Lo, Removal of ionizable aromatic pollutants
from contaminated water using nano Fe2O3 based magnetic
cationic hydrogel: Sorptive performance, magnetic separation
and reusability, J. Hazard. Mater., 322 (2017) 195–204.
- M.E. Fernandez, B. Ledesma, S. Roman, P.R. Bonelli, A.L.
Cukierman, Development and characterization of activated
hydrochars from orange peels as potential adsorbents for
emerging organic contaminants, Bioresource Technol., 183
(2015) 221–228.
- A. Rodríguez, J. García, G. Ovejero, M. Mestanza, Adsorption
of anionic and cationic dyes on activated carbon from aqueous
solutions: equilibrium and kinetics, J. Hazard. Mater., 172
(2009) 1311–1320.