References
- T. Robinson, G. McMullan, R. Marchant, P. Nigam, Remediation
of dyes in textile effluent: a critical review on current treatment
technologies with a proposed alternative, Bioresour. Technol.,
77 (2001) 247–255.
- G. Crini, Non-conventional low-cost adsorbents for dye
removal: a review, Bioresour. Technol., 97 (2006) 1061–1085.
- C.Y. Ma, B.J. Dou, J.J. Li, J. Cheng, Q. Hu, Z.P. Hao, S.Z.
Qiao, Catalytic oxidation of benzyl alcohol on Au or Au–Pd
nanoparticles confined in mesoporous silica, Appl. Catal. B, 92
(2009) 202–208.
- G. Crini, Studies on adsorption of dyes on beta-cyclodextrin
polymer, Bioresour. Technol., 90 (2003) 193–198.
- Q. Sun, L. Yang, The adsorption of basic dyes from aqueous
solution on modified peat–resin particle, Water Res., 37 (2003)
1535–1544.
- C.C. Kaan, A.A. Aziz, S. Ibrahim, M. Matheswaran, P. Saravanan,
Heterogeneous Photocatalytic Oxidation an Effective Tool
for Wastewater Treatment – A Review, M. Kumarasamy, Ed.,
Studies on Water Management Issues, INTECH Open Access
Publisher, 2012, pp. 219–236.
- A.O. Ibhadon, P. Fitzpatrick, Heterogeneous photocatalysis:
recent advances and applications, Catalysts, 3 (2013)
189–218.
- M.A. Lazar, S. Varghese, S.S. Nair, Photocatalytic water
treatment by titanium dioxide: recent updates, Catalysts, 2
(2012) 572–601.
- M. Pelaez M, N.T. Nolan, S.C. Pillai, M.K. Seery, P. Falaras, A.G.
Kontos, P.S. Dunlop, A review on the visible light active titanium
dioxide photocatalysts for environmental applications, Appl.
Catal. B, 125 (2012) 331–349.
- R. Asahi, T. Morikawa, H. Irie, T. Ohwaki, Nitrogen-doped
titanium dioxide as visible-light-sensitive photocatalyst:
designs, developments, and prospects, Chem. Rev., 114 (2014)
9824–9852.
- Y.S. Ho, G. McKay, Sorption of dyes and copper ions onto
biosorbents, Process Biochem., 38 (2003) 1047–1061.
- G.Z. Qu, J. Li, Y. Wu, G.F. Li, D. Li, Regeneration of acid orange
7-exhausted granular activated carbon with dielectric barrier
discharge plasma, Chem. Eng. J., 146 (2009) 168–173.
- S.T. Akar, R. Uysal, Untreated clay with high adsorption
capacity for effective removal of CI Acid Red 88 from aqueous
solutions: batch and dynamic flow mode studies, Chem. Eng. J.,
162 (2010) 591–598.
- S. Nayak, L.A. Lyon, Soft nanotechnology with soft
nanoparticles, Ange. Chem., 44 (2005) 7686–7708.
- H. Meng, X.W. Chen, J.H. Wang, Ionic liquid templated porous
nano-TiO2 particles for the selective isolation of cytochrome c,
Nanotechnol., 21 (2010) 385704.
- M.S. Mauter, M. Elimelech, Environmental applications of
carbon-based nanomaterials, Environ. Sci. Technol., 42 (2008)
5843–5859.
- X. Wang, K. Maeda, X. Chen, K. Takanabe, K. Domen, Y. Hou,
X. Fu, M. Antonietti, Polymer semiconductors for artificial
photosynthesis: hydrogen evolution by mesoporous graphitic
carbon nitride with visible light, J. Am. Chem. Soc., 131 (2009)
1680–1681.
- P. Qiu, C. Xu, H. Chen, F. Jiang, X. Wang, R. Lu, X. Zhang, One
step synthesis of oxygen doped porous graphitic carbon nitride
with remarkable improvement of photo-oxidation activity: role
of oxygen on visible light photocatalytic activity, Appl. Catal. B,
206 (2017) 319–327.
- H. Lin, Y. Lu, J. Deng, S. Xie, X. Zhao, J. Yang, K. Zhang, Z.
Han, H. Dai, Graphitic carbon nitride-supported iron oxides:
high-performance photocatalysts for the visible-light-driven
degradation of 4-nitrophenol, J. Photochem. Photobiol. A, 336
(2017) 105–114.
- H.D. Wang, Q. Yang, C.H. Niu, I. Badea, Adsorption of azo dye
onto nanodiamond surface, Diamond Relat. Mater., 26 (2012)
1–6.
- C.C. Chen, E. Butler, M. Al Ahmad, Y.T. Hung, Y.P. Fu,
Characterizations of TiO2@ Mn-Zn ferrite powders for magnetic
photocatalyst prepared from used alkaline batteries and waste
steel pickling liquor, Mater. Res. Bull., 50 (2014) 178–182.
- E.B. Butler, C.C. Chen, Y.T. Hung, M.S. Al Ahmad, Y.P. Fu, Effect
of Fe-doped TiO2 photocatalysts on the degradation of acid
orange 7, Integ. Ferroelectr., 168 (2016) 1–9.
- M. Shirzad-Siboni, S.J. Jafari, O. Giahi, I. Kim, S.M Lee, J.K.
Yang, Removal of acid blue 113 and reactive black 5 dye from
aqueous solutions by activated red mud, J. Ind. Eng. Chem., 20
(2014) 1432–1437.
- M. Saravanan, N.P. Sambhamurthy, M. Sivarajan, Treatment of
acid blue 113 dye solution using iron electrocoagulation, Clean
– Soil Air Water, 38 (2010) 565–571.
- L.Y. Lee, D.Z.B. Chin, X.J. Lee, N. Chemmangattuvalappil, S.
Gan, Evaluation of Abelmoschus esculentus (lady’s finger) seed
as a novel biosorbent for the removal of Acid Blue 113 dye
from aqueous solutions, Process Saf. Environ. Prot., 94 (2015)
329–338.
- A. Khataee, R. Darvishi Cheshmeh Soltani, Y. Hanifehpour,
M. Safapour, Synthesis and characterization of dysprosiumdoped
ZnO nanoparticles for photocatalysis of a textile dye
under visible light irradiation, Ind. Eng. Chem. Res., 53 (2014)
1924–1932.
- S.K. Kansal, M. Singh, D. Sud, Studies on photodegradation
of two commercial dyes in aqueous phase using different
photocatalysts, Hazard. Mater., 141 (2007) 581–590.
- L. Wang, W. Xiong, L. Yao, Z. Wang, Novel photocatalyic
membrane reactor with TiO2 nanotubes for azo dye wastewater
treatment, MATEC Web Conf., 67 (2016) 06020.
- R.R. Dalbhanjan, N.S. Pande, B.S. Baerjee, S.P. Hinge, A.V.
Mohood, P.R. Gogate, Degradation of patent blue V dye
using modified photocatalytic reactor based on solar and UV
irradiations, Desal. Water Treat., 57 (2016) 18217–18228.
- C. Galindo, C, P. Jacques, A. Kalt, Photooxidation of the
phenylazonaphthol AO20 on TiO2: kinetic and mechanistic
investigations, Chemosphere, 45 (2001) 997–1005.
- S. Salthivel, B. Neppolian, M.V. Shankar, B. Arabindoo, M.
Palanichamy, V. Murugesan, Solar photocatalytic degradation
of azo dye: comparison of photo efficiency of ZnO & TiO2, Sol.
Energy Mater. Sol. Cells, 77 (2003) 65–82.
- I.K. Konstantinou, T.A. Albanis, TiO2-assisted photocatalytic
degradation of azo dyes in aqueous solution: kinetic and
mechanistic investigation, Appl. Catal. B, 49 (2004) 1–14.
- M.N. Chong, Y.J. Cho, P.E. Poh, B. Jin. J, Evaluation of titanium
dioxide photocatalytic technology for the treatment of reactive
black 5 dye in synthetic and real greywater effluents, J. Clean.
Prod., 89 (2015) 196–202.
- C.C. Wang, C.K. Lee, M.D. Lyu, L.C. Juang, Photocatalytic
degradation of CI Basic Violet 10 using TiO2 catalysts supported
by Y zeolite: an investigation of the effects of operational
parameters, Dyes Pigm., 76 (2008) 817–824.
- A. Garg, V.K. Sangal, P.K. Bajpai, Decolorization and
degradation of reactive black 5 dye by photocatalysis: modeling,
optimization and kinetic study, Desal. Water Treat., 57 (2016)
18003–18015.
- A. Khataee, R.D.C. Soltani, Y. Hanifehpour, M. Safarpour,
H.G. Ranjbar, S.W. Joo, Synthesis and characterization of
dysprosium-doped ZnO nanoparticles for photocatalysis of a
textile dye under visible light irradiation, Ind. Eng. Chem. Res.,
53 (2014) 1924–1932.