References 1. IAW Tan, BH Hameed and AL Ahmad

References
1.
I.A.W. Tan, B.H. Hameed and A.L. Ahmad. Equilibrium and kinetic studies on basic
dye adsorption by oil palm fiber activated carbon, Chemical Engineering Journal,
127(1-3), (2007) 111-119.
2.
N. Kannan and M. Meenakshisundaram. Adsorption of CR on various activated
carbons- A comparative study, Water, Air and Soil Pollution, 138(1-4), (2002) 289305.
3.
L.Al. Khatib, F. Fraige, M.Al. Hwaiti and O.Al. Khashman. Adsorption from aqueous
solution onto natural and acid activated bentonite, American Journal of Environmental
Science, 8 (5), (2012) 510-522.
4.
P. Nigam, G. Armour, I.M. Banal, D. Singh and R. Marchant. Physical removal of
textile dye and solid state fermentation of dye adsorbed agricultural residues,
Bioresources Technology, 72(3), (2000) 219-226.
5.
V. Vimonses, S. Lei, B. Jin, C.W.K. Chow and C. Saint. Adsorption of CR by three
Australian kaolins, Applied Clay Science, 43(3-4), (2009) 465-472.
6.
A.S. Ozcan and A. Ozcan. Adsorption of acid dyes from aqueous solutions onto acidactivated bentonite, Journal of colloid and interface Science, 276(1), (2004) 39-46.
7.
M. Neamtu, I. Siminiceami and A. Kettrup. Kinetics of nitromusk compounds
degradation in water by UV radiation and H2O2, Chemosphere, 40(12), (2000) 14071410.
8.
T. Robinson, G. McMullan, R. Marchant and P. Nigam. Remediation of dyes in textile
effluent: A critical review on current treatment technologies with a proposed
alternative, Bioresources Technology, 77(3), (2001) 247-255.
9.
P.P. Zamora, A. Kunz, S.G. Moraes, R. Pelegrini, P.C. Moleiro, J. Reyes and N.
Duran. Degradation of reactive dyes: A comparative study of ozonation, enzymatic
and photochemical processes, Chemosphere, 38(4), (1999) 835-852.
10.
L. Ladakowicz, M. Solecka and R. Zylla. Biodegradation, decolorization and
detoxification of textile wastewater enhanced by advanced oxidation processes,
Journal of Biotechnology, 89(2-3), (2001) 175-184.
11.
D. Georgiou, P. Melidis, A. Aivasidis and K. Gimouhopoulos. Degradation of azoreactive dyes by UV radiation in the presence of H2O2, Dyes Pigments 52(2), (2002)
69-78.
31
12.
P.C. Vandevivere, R. Bianchi and W. Verstraete. Treatment and reuse of wastewater
from the textile wet-processing industry: Review of emerging technologies, Journal of
Chemical Technology and Biotechnology, 72(4), (1998) 289-302.
13.
I. Arslan, I.A. Balcioglu, T. Tuhkanen and D. Bahnemann. H2O2/UV-C and
Fe2+/H2O2/UV-C versus TiO2/UV- A treatment for reactive dye wastewater, Journal of
Environment Engineering, 126(10), (2000) 903-911.
14.
S.K. Chaudhuri and B. Sur. Oxidative decolorization of reactive dye solution using fly
ash as catalyst, Journal of Environment Engineering, 126(7), (2000) 583-594.
15.
I.A. Alatona, I. A. Balcioglub and D.W. Bahnemann. Advanced oxidation of a
reactive dyebath effluent: Comparison of O3, H2O2/UV-C and TiO2/UV-A processes,
Water Research, 36(5), (2002) 1143-1154.
16.
T. Kudo, Y. Nakamura and A. Ruike. Development of rectangular column structured
TiO2 photocatalyst anchored on silica sheet by a wet process, Research on Chemical
Intermediates, 29(6), (2003) 631-639.
17.
D. Bahnemann. Photocatalytic water treatement: Solar energy application, Solar
Energy 77(5), (2004) 445-459.
18.
N. Daneshvar, M. Rabbani, N. Modirshahla and M.A. Behnajady. Kinetic modeling of
photocatalytic degradation of acid red 27 in UV/TiO2 process, Journal of
Photochemistry and Photobiology A: Chemistry, 168(1-2), (2004) 39-45.
19.
M.A. Behnajady, N. Modirshahla, N. Daneshvar and M. Rabbani. Photocatalytic
degradation of an azo dye in a tubular continuous-flow photoreactor with immobilized
TiO2 on glass plates, Chemical Engineering Journal, 127(1-3), (2007) 167-176.
20.
M.A. Behnajady, N. Modirshahla, N. Daneshvar and M. Rabbani. Photocatalytic
degradation of C.I. acid red 27 by immobilized ZnO on glass plates in continuousmode, Journal of Hazardous Materials, 140(1-2), (2007) 257-263.
21.
C.S. Turchi and D.F. Ollis. Photocatalytic degradation of organic water contaminants:
Mechanisms involving hydroxyl radical attack, Journal of Catalysis, 122(1), (1990)
178-192.
22.
O.M. Alfano, M.I. Cabrera and A.E. Cassano. Photocatalytic reactions involving
hydroxyl radical attack: I. Reaction kinetics formulation with explicit photon
absorption effects, Journal of Catalysis, 172(2), (1997) 370-379.
32
23.
M.I. Cabrera, A.C. Negro, O.M. Alfano and A.E. Cassano. Photocatalytic reactions
involving hydroxyl
radical
attack:
II. Kinetics of the
decomposition of
trichloroethylene using TiO2, Journal of Catalysis, 172(2), (1997) 380-390.
24.
R. Andreozzi, V. Caprio, A. Insola and R. Marotta. Advanced oxidation processes for
water purification and recovery, Catalysis Today, 53(1), (1999) 51–59.
25.
J.R. Bolton, K.G. Bircher, W. Tumas and C.A. Tolman. Figures-of-merit for the
technical development and application of advanced oxidation processes, Pure and
Applied Chemistry, 73(4), (2001) 627-637.
26.
J.J. Pignatello. Dark and photoassisted Fe3+ catalyzed degradation of chlorophenoxy
herbicides by H2O2, Environmental Science and Technology, 26(5), (1992) 944-951.
27.
E. Neyens and J. Baeyens. A review of classic fenton’s peroxidation as an advanced
oxidation technique, Journal of Hazardous Materials, 98(1-3), (2003) 33-50.
28.
A.L.N. Mota, L.F. Albuquerque, L.T.C. Beltrame, O. Chiavone-Filho, A. Machulek Jr
and C.A.O. Nascimento. Advanced oxidation processes and their application in the
petroleum industry: A review, Brazilian Journal of Petroleum and Gas, 2(3), (2008)
122-142.
29.
O.M. Alfano, R.J. Brandi and A.E. Cassano. Degradation kinetics of 2, 4-D in water
employing H2O2 and UV radiation, Chemical Engineering Journal, 82(1-3), (2001)
209-218.
30.
J.L. Lopez, F.S.G. Einschlag, M.C. Gonzalez, A.L. Capparelli, E. Oliveros, T.M.
Hashem and A.M. Braun. Hydroxyl radical initiated photodegradation of 4-chloro-3,
5-dinitrobenzoic acid in aqueous solution, Journal of Photochemistry and
Photobiology A: Chemistry, 137(2-3), (2000) 177-184.
31.
R.L. Cisneros, A.G. Espinoza and M.I. Litter. Photodegradation of an azo dye of the
textile industry, Chemosphere, 48(4), (2002) 393-399.
32.
L. Lunar, D. Sicilia1, S. Rubio, D. Perez-Bendito and U. Nickel. Degradation of
photographic developers by fenton's reagent: Condition optimization and kinetics for
metal oxidation, Water Research, 34(6), (2000) 1791-1802.
33.
X.K. Zhao, G.P. Yang, Y.J. Wang and X.C. Gao. Photochemical degradation of
dimethyl phthalate by fenton reagent, Journal of Photochemistry Photobiology A:
Chemistry, 161(2-3), (2004) 215-220.
33
34.
H.F. Lin, S.C. Liao and S.W. Hung, The dc thermal plasma synthesis of ZnO
nanoparticles for visible-light photocatalyst, Journal of Photochemistry and
Photobiology A: Chemistry, 174(1), (2005) 82-87.
35.
Y.T. Kown, K.Y. Song, W.I. Lee, G.J. Choi and Y.R. Do. Photocatalytic behavior of
WO3-loaded TiO2 in an oxidation reaction, Journal of Catalysis, 191(1), (2000) 192199.
36.
B.J. Liu, T. Torimoto and H. Yoneyama. Photocatalytic reduction of CO 2 using
surface-modified CdS photocatalyst in organic solvent, Journal of photochemistry and
Photobiology A: Chemistry, 113(1), (1998) 93-97.
37.
A. Sharma, P. Rao, R.P. Mathur and S.C. Ametha. Photocatalytic reaction of xylidine
ponceau on semiconducting ZnO powder, Journal of Photochemistry and
Photobiology A: chemistry, 86(1-3), (1995) 197-200.
38.
N. Daneshvar, D. Salari and A.R. Khataee. Photocatalytic degradation of azo dye acid
red 14 in water on ZnO as an alternative catalyst to TiO2, Journal of Photochemistry
and Photobiology A: Chemistry 162(2-3), (2004) 317-322.
39.
S. Sakthivel, B. Neppolian, M.V. Shankar, B. Arabindoo, M. Palanichamy and V.
Murugesan. Solar photocatalytic degradation of azo dye: Comparison of photocatalytic
efficiency of ZnO and TiO2, Solar Energy Materials and Solar Cells, 77(1), (2003)
65-82.
40.
G.C. Yi, C. Wang and W. Il Park. ZnO nanorods: Synthesis, characterization and
applications, Semiconductor Science and Technology, 20(4), (2005) S22.
41.
Q. Zhang, K. Yu, W. Bai, Q.Y. Wang, F. Xu, Z. Zhu, N. Dai and Y. Sun. Synthesis,
optical and field emission properties of three different ZnO nanostructures, Materials
Letters, 61(18), (2007) 3890-3892.
42.
B. Dindar and S. Içli. Unusual photoreactivity of ZnO irradiated by concentrated
sunlight, Journal of Photochemistry and Photobiology A: Chemistry, 140(3), (2001)
263-268.
43.
S.K. Pardeshi and A.B. Patil. A simple route for photocatalytic degradation of phenol
in aqueous ZnO suspension using solar energy, Solar Energy, 82(8), (2008) 700-705.
44.
J.H. Sun, S.Y. Dong, Y.K. Wang and S.P. Sun. Preparation and photocatalytic
property of a novel dumbell-shapped ZnO microcrystal photocatalyst, Journal of
Hazardous Materials, 172(2-3), (2009) 1520-1526.
34
45.
A. Fortuny, C. Bengoa, J. Font and A. Fabregat. Bimetallic catalysts for continuous
catalytic wet air oxidation of phenol, Journal of Hazardous Materials, 64(2), (1999)
181-193.
46.
L. Linsebigler, G.G. Lu and J.T. Yates. Photocatalysis of TiO 2 surfaces: Principles,
mechanisms and selected results, Chemical Reviews, 95(3), (1995) 735-758.
47.
R.W. Matthews. Photocatalytic oxidation of chlorobenzene in aqueous suspensions of
TiO2, Journal of catalysis, 97(2), (1986) 565-568.
48.
I. Izumi, W.W. Dunn, K.O. Wilbourn, F.R.F. Fan and A.J. Bard. Heterogeneous
photocatalytic oxidation of hydrocarbons on plantinized TiO 2 powders, Journal of
Physical Chemistry, 84 (24), (1988) 3207-3210.
49.
R.Y. Yeh and A. Thomas. Color removal from dye wastewater by adsorption using
powdered activated carbon: Mass transfer studies, Journal of Chemical Technology
and Biotechnology, 63(1), (1995) 48-54.
50.
J.J.M. Orfao, A.l.M. Silva, J.C.V. Pereira, S.A. Barata, I.M. Fonseca, P.C.C. Faria and
M.F.R Pereira. Adsorption of reactive dye on chemically modified activated carbonsinfluence of pH, Journal of Colloid and interface Science, 296(2), (2006) 480-489.
51.
S. Maithel. Energy Utilization in brick kilns. PhD thesis energy systems engineering,
Indian Institute of Technology, Bombay (2003).
52.
S. Maithel, D. Lalchandani, G. Malhotra and P. Bhanware. Brick Kilns Performance
Assessment: A road map for cleaner brick production in India, Greentech Knowledge
Solutions Pvt. Ltd., New Delhi (2012).
53.
M.K. Purkait, A. Maiti, S.D. Gupta and S. Deb. Removal of CR using activated
carbon and its regeneration, Journal of Hazardous materials, 145(1-2), (2007) 287295.
54.
P. Gharbani, S.M. Tabatabaii and A. Mehrizad. Removal of CR from textile waste
water by ozonation, International Journal of Environmental Science and Technology,
5(4), (2008) 495-500.
55.
G. Vijayakumar, M. Dharmendirakumar, S. Renganathan, S. Sivanesan, G. Baskar and
P.E. Kuppannagounder. Removal of CR from aqueous solutions by perlite, Clean Soil,
Air Water, 37(4-5), (2009) 355-364.
35
56.
A.R. Binupriya, M. Sathishkumar, K. Swaminathan, C.S. Ku and S.E. Yun.
Comparative studies on removal of CR by native and modified mycelial pellets of
Trametes versicolor in various reactor modes, Bioresourse Technology, 99(5), (2008)
1080-1088.
57.
H.Y. Shu, C.R. Huang and M.C. Chang. Decolorization of mono-azo dyes in
wastewater by advanced oxidation process: A case study of acid red 1 and acid yellow
23, Chemosphere, 29(12), (1994) 2597-2607.
58.
A. Idil, A.B. Isil and W. Bahnemann detlef. Advanced chemical oxidation processes of
reactive dyes in simulated dyehouse effluents by ferrioxalate-fenton/UV-A and
TiO2/UV-A, Dyes and Pigments, 47(3), (2000) 207-218.
59.
C. Hachem, F. Bocquillon, O. Zahraa and M. Bouchy. Decolourization of textile
industry wastewater by the photocatalytic degradation process, Dyes and Pigments,
49(2), (2001) 117-125.
60.
V.K. Sharma. Potassium ferrate (VI): An environmentally friendly oxidant, Advances
in Environment Research, 6, (2002) 143-156.
61.
Y. Fu and T. Viraraghavan. Removal of CR red from an aqueous solution by fungus
Aspergillus niger, Advances in Environmental Research, 7(1), (2002) 239-247.
62.
C. Namasivayam and D. Kavitha. Removal of CR from water by adsorption onto
activated carbon prepared from coir pith, an agricultural solid waste, Dyes and
Pigments, 54(1), (2002) 47-58.
63.
G. Sarayu and S. Kanmani. Treatment of textile dyeing waste water using UV/solar
photofenton oxidation processes, Indian Journal of Environmental Health,
45(2),(2003) 113-120.
64.
Z. Puzenat, H. Lachheb, M. Karkmaz, A. Houas, C. Guillard and J.M. Herrmann. Fate
of nitrogen atoms in the photocatalytic degradation of industrial (CR) and alimentary
(Amaranth) azo dyes. Evidence for mineralization into gaseous dinitrogen,
International Journal of Photoenergy, 5(2), (2003) 51-58.
65.
I.K. Konstantinou and A. Albanis Triantafyllos. TiO2-assisted photocatalytic
degradation of azo dyes in aqueous solution: Kinetic and mechanistic investigations: A
review, Applied Catalysis B: Environmental, 49(1), (2004) 1-14.
66.
A. Akyol, H.C. Yatmaz and M. Bayramoglu. Photocatalytic decolorization of remazol
red in aqueous ZnO suspensions, Applied Catalysis B: Environmental, 54(1), (2004)
19-24.
36
67.
R.K. Wahi, W.W. Yu, Y. Liu, L.M. Michelle, C.F. Joshua, W. Nolte and L.C. Vicki.
Photodegradation of CR catalyzed by nanosized TiO2, Journal of Molecular Catalysis
A: Chemical, 242(1-2), (2005) 48-56.
68.
A. Tor and Y. Cengeloglu. Removal of CR from aqueous solution by adsorption onto
acid activated red mud, Journal of Hazardous Materials, 138(2), (2006) 409-415.
69.
T. Tapalad, A. Neramittagapong, S. Neramittagapong and M. Boonmee. Degradation
of CR dye by ozonation, Chiang Mai Journal of Science, 35(1), (2008) 58- 63.
70.
J. Sharma and B. Janveja. A study on removal of CR dye from the effluents of textile
industry using rice husk carbon activated by steam, Rasayan Journal of Chemistry,
1(4), (2008) 936-942.
71.
M. Movahedi, A.R. Mahjoub and S. Janitabar-Darzi. Photodegradation of CR in
aqueous solution on ZnO as an alternative catalysis to TiO2, Journal of the Iranian
Chemical Society, 6(3), (2009) 570-577.
72.
S.L. Orozco, C.A. Arancibia-Bulnes and R. Suárez-Parra. Radiation absorption and
degradation of an azo dye in a hybrid photocatalytic reactor, Chemical Engineering
Science, 64(9), (2009) 2173-2185.
73.
S.K. Pardeshi and A.B. Patil. Effect of morphology and crystallite size on solar
photocatalytic activity of ZnO synthesized by solution free mechanochemical method,
Journal of molecular catalysis A: Chemical, 308(1-2), (2009) 32-40.
74.
K.M. Joshi and V.S. Shrivastava. Removal of hazardious textile dyes from aqueous
solution by using commercial activated carbon with TiO2 and ZnO as photocatalyst,
International Journal of Chem Tech Research, 2(1), (2010) 427-435.
75.
K. Yogendra, S. Naik, K.M. Mahadevan and N. Madhusudhana. A comparative study
of photocatalytic activities of two different synthesized ZnO composites against
coralene red F3BS dye in presence of natural solar light, International Journal of
Environmental Sciences and Research, 1(1), (2011) 11-15.
76.
M.A. Behnajady, N. Modirshahla and E. Ghazalian. Synthesis of ZnO nanoparticles at
different conditions: A comparison of photocatalytic activity, Digest Journal of
Nanomaterials and Biostructures, 6(1), (2011) 467-474.
77.
Y. Abdollahi, A.H. Abdullah, Z. Zainal and N.A. Yusof. Photodegradation of o-cresol
by ZnO under visible irradiation, International Journal of Advanced Engineering
Sciences and Technologies, 8(2), (2011) 135-144.
37
78.
H.P. Cheng, Y.H. Huang and C. Lee. Decolorization of reactive dye using a photoferrioxalate system with brick grain-supported iron oxide, Journal of Hazardous
Materials, 188 (1-3), (2011) 357-362.
79.
C. Smaranda, M. Gavrilescu and D. Bulgariu. Studies on sorption of CR from aqueous
solution onto soil, International Journal of Environmental, Research, 5(1), (2011)
177-188.
80.
A. Changsuphan, M.I.B.A. Wahab and N.T.K. Oanh. Removal of benzene by ZnO
nanoparticles coated on porous adsorbents in presence of O3 and UV, Chemical
Engineering Journal, 181-182, (2012) 215-221.
81.
O. Yamamoto. Influence of particles size on the antibacterial activity of ZnO,
International Journal of Inorganic Materials, 3(7), (2001) 643-646.
82.
L. Zhang, Y. Ding, M.O. Povey and D.W. York. ZnO nanofluids- A potential
antibacterial agent, Progress in Natural Science, 18(8), (2008) 939-944.
83.
H. Zhongbing, Z. Xu, Y. Danhong, Y. Guangfu, L. Xiaoming, K. Yunqing, Y.
Yadong, H. Di and H. Baoqing. Toxicological effect of ZnO nanoparticles based on
bacteria, Langmuir, 24(8), (2008) 4140-4144.
84.
M. Premanathan, K. Karthikeyan, K. Jeyasubramanian and G. Manivannan. Selective
toxicity of ZnO nanoparticles toward gram-positive bacteria and cancer cells by
apoptosis through lipid peroxidation, Nanomedicine, 7(2), (2011) 184-192.
85.
Z. Emami-Karvani and P. Chehrazi. Antibacterial activity of ZnO nanoparticles on
gram-positive and gram-negative bacteria, African Journal of Microbiology Research,
5(12), (2011) 1368-1373.
86.
M.G. Nair, M. Nirmala, K. Rekha and A. Anukalianited. Structural, optical,
photocatalytic and antibacterial activity of ZnO and cobalt doped ZnO nanoparticles,
Materials Letters, 65(12), (2011) 1797-1800.
87.
X. Yanping, H. Yiping, L.I. Peter, J. Tony and S. Xianming. Antibacterial activity and
mechanism of action of ZnO nanoparticles against Campylobacter jejuni, Applied and
Environmental Microbiology, 77(7), (2011) 2325-2331.
88.
L.Q. Wang, X.N. Yang, Y. Han, R.J. Zhang and Y.L. Yang. Synthesis and
characterization of ZnO nanoparticles in the method of precipitation, Key Engineering
Materials, 474-476, (2011) 1725-1729.
38
89.
G.K. Williamson and W.H. Hall. X-ray line broading from field aluminium and
wolfram, Acta Metallurgica, 1(1), (1953) 22-31.
90.
H.P. Klug and L.E. Alexander. X-ray diffraction methods for polycrystalline and
amorphous materials, John Wiley and Sons, (1954).
91.
R. Anthony. West, Solid State Chemistry and Its Applications, John Wileys Sons,
(1984).
92.
W.K. Surewicz, H.H. Mantsch and D. Chapman. Determination of protein secondary
structure by fourier transform infrared spectroscopy: A critical assessment,
Biochemistry, 32(2), (1993) 389-393.
93.
A.W. bauer, W.M.N. Kirby, J.C. Sherris and M. Turck. Antibotic susceptibility testing
by standardized single disc method. Journal of Clinical Pathology, 49, (1996) 493496.
94.
A. Pan, R. Yu, S. Xie, Z. Zhang, C. Jin and B. Zou. ZnO flowers made up of thin
nanosheets and their optical properties, Journal of Crystal Growth, 282, (2005) 165172.
95.
A. Ochieng, R.L.L. Pambi, P. Netshitangani, J. Akach and M.S. Onyango. Solar/UV
photocatalytic degradation of two commercial textile dyes, Journal of Sustainable
Development and Environmental Protection, 2(1), (2012) 36-48.
96.
M. Vimalan and C.K. Mahadevan. Effect of Mn2+ addition on the electrical properties
of ZnO-ZnS nanocomposites, Archives of Applied Science Research, 2 (2), (2010)
337-348.
97.
A. Al-Hajry, A. Umar, Y.B. Hahn and D.H. Kim. Growth, properties and dye
sensitized solar cell-applications of ZnO nano rods grown by low temperature solution
process, Superlattices and Microstructres, 45(6), (2009) 529-534.
98.
S. Shanthi and U. Muthuselvi. A study of morphology of synthesized nano ZnO and
its application in photodegradation of malachite green dye using different sources of
energy, International Journal of Chemistry and Applications, 4(1), (2012) 39-52.
99.
P. Sathya1, G. Velraj and S. Meyvel. Fourier transform infrared spectroscopic study of
ancient brick samples from Salavankuppam Region, Tamilnadu, India, Advances in
Applied Science Research, 3(2), (2012) 776-779.
100. B. Neppolian, H.C. Choi, S. Sakthivel, B. Arabindoo and V. Murugesan. Solar light
induced and TiO2 assisted degradation of textile dye reactive blue 4, Chemosphere, 46,
(2002) 1173-1181.
39
101. B. Pare, P. Singh and S.B Jonnalagadda. Visible light induced heterogeneous
advanced oxidation process to degrade pararosanilin dye in aqueous suspension of
ZnO. Indian Journal of Chemistry, 47, (2008) 830-835.
102. I.K. Konstantinou and T.A. Albanis. TiO2 assisted photocatalytic degradation of azo
dye in aqueous solution: Kinetic and mechanistic investigation: A review, Applied
Catalysis B: Environmental, 49(1), (2004) 1-14.
103. B. Pare, P. Singh and S.B Jonnalagadda. Artificial light assisted photocatalytic
degradation of lissamine fast yellow dye in ZnO suspension in slurry batch reactor
Indian Journal of Chemistry, 48, (2009) 1364-3169.
104. B. Gözmena, M. Turabik and A. Hesenov. Photocatalytic degradation of basic red 46
and basic yellow 28 in single and binary mixture by UV/TiO2/periodate system,
Journal of Hazardous Material, 164, (2009) 1487-1495.
105. H. Zhao, S. Xu, J. Zhong and X. Bao. Kinetic study on the photocatalytic degradation
of pyridine in TiO2 suspension systems, Catalysis Today, 93-95, (2004) 857-861.
40