Bai H, Liu L, Liu Z, Sun DD (2013) Hierarchical 3D dendritic TiO 2 Nanospheres building with
Ultralong 1D nanoribbon/wires for high performance concurrent photocatalytic membrane
water purification. Water Res 47:4126–4138
Bansal T, Mohite AD, Shah HM, Galande C, Srivastava A, Jasinski JB, Ajayan PM, Alphenaar BW
(2012) New insights into the density of states of graphene oxide using capacitive photocurrent
spectroscopy. Carbon 50:808–814
Bard AJ, Fox MA (1995) Artificial photosynthesis: solar splitting of water to hydrogen and oxygen.
Acc Chem Res 28:141–145
Belabed C, Haine N, Benabdelghani Z, Bellal B, Trari M (2014) Photocatalytic hydrogen evolution
on the hetero-system polypyrrol/TiO2 under visible light. Int J Hydrog Energy 39:17533–17539
Benotti MJ, Stanford BD, Wert EC, Snyder SA (2009) Evaluation of a photocatalytic reactor
membrane pilot system for the removal of pharmaceuticals and endocrine disrupting compounds
from water. Water Res 43:1513–1522
Bethi B, Sonawane SH, Bhanvase BA, Gumfekar SP (2016) Nanomaterials-based advanced
oxidation processes for wastewater treatment: a review. Chem Eng Process 109:178–189
Boudjemaa A, Bachari K, Trari M (2013) Photoelectrochemical characterization of porous material
Fe-FSM-16. Application for hydrogen production. Mater Sci Semicond Process 16:838–844
Boudjemaa A, Mokrani T, Bachari K, Coville NJ (2015) Electrochemical and photoelectrochemical
properties of carbon spheres prepared via chemical vapor deposition. Mater Sci Semicond
Process 30:456–461
Boumaza S, Boudjemaa A, Bouguelia A, Bouarab R, Trari M (2010) Visible light induced
hydrogen on new hetero-system ZnFe 2 O 4 /SrTiO 3 . Appl Energy 87:2230–2236
Boyd G, Reemtsma H, Grimm A, Mitra S (2003) Pharmaceuticals and personal care products
(PPCPs) in surface and treated waters of Louisiana, USA and Ontario, Canada. Sci Total
Environ 311:135–149
Calatayud DG, Rodríguez M, Gallego B, Fernández-Hevia D, Jardiel T (2012) Preparación de
Materiales Fotocatalizadores Basados en Bi 4 Ti 3 O 12 Dopados con Metales de Transición. Bol
Soc Esp Cerám Vidrio 51:55–60
Calza P, Hadjicostas C, Sakkas VA, Sarro M, Minero C, Medana C, Albanis TA (2016)
Photocatalytic transformation of the antipsychotic drug risperidone in aqueous media on
reduced graphene oxide TiO 2 composites. Appl Catal B Environ 183:96–106
Candal R, de la Cruz Martínez, A (2015) New visible-light active semiconductors. In: HernándezRamírez A, Medina-Ramírez I (eds) Photocatalytic semiconductors. Springer, pp 41–67. https://
doi.org/10.1007/978-3-319-10999-2_2
Carballa M, Omil F, Lema J, Llompart M, García-Jares C, Rodríguez I, Gómez M, Ternes T (2004)
Behavior of pharmaceuticals, cosmetics and hormones in a sewage treatment plants. Water Res
38:2918–2926
Carp O, Huisman CL, Reller A (2004) Photoinduced reactivity of titanium dioxide. Prog Solid State
Chem 32:33–177
Chen X, Mao SS (2007) Titanium dioxide nanomaterials: synthesis, properties, modifications, and
applications. Chem Rev 107:2891–2959
Chen JX, Zhu LZ (2011) Oxalate enhanced mechanism of hydroxyl-Fe-pillared bentonite during
the degradation of Orange II by UV-Fenton process. J Hazard Mater 185:1477–1481
Chen X, Shen S, Guo L, Mao SS (2010a) Semiconductor-based photocatalytic hydrogen generation. Chem Rev 110:6503–6570
Chen L, Zhang X, Xu Y, Du X, Sun X, Sun L, Wang H, Zhao Q, Yu A, Zhang H, Ding L (2010b)
Determination of fluoroquinolone antibiotics in environmental water samples based on magnetic molecularly imprinted polymer extraction followed by liquid chromatography-tandem
mass spectrometry. Anal Chim Acta 662:31–38
Chen C, Cai W, Long M, Zhou B, Wu Y, Wu D, Feng Y (2010c) Synthesis of visible-light
responsive graphene oxide/TiO 2 omposites with p/n heterojunction. ACS Nano 4:6425–6432
Chen B, Hou J, Lu K (2013) Formation mechanism of TiO 2 nanotubes and their applications in
Photoelectrochemical water splitting and supercapacitors. Langmuir 29:5911–5919
252
A. Boudjemaa and S. Gómez-Ruiz
Précédent

- 262/417

Suivant