References
- E. Pelizzetti, N. Serpone (Eds.), Photocatalysis: Fundamentals and Applications, Wiley, New York, 1989.
- O. Legrini, E. Oliveros, A.M. Braun, Photochemical processes for water treatment, Chem. Rev., 93 (1993) 671–698.
- D.F. Ollis, H. Al-Ekabi (Eds.), Photocatalytic Purification and Treatment of Water and Air, Elsevier, Amsterdam, 1993.
- D.M. Blake, Bibliography of Work on the Photocatalytic Removal of Hazardous Compounds from Water and Air (fourth update), National Renewable Energy Laboratory (NREL), Golden, CO, 2001.
- T. Vulic, M. Hadnadjev-Kostic, O. Rudic, M. Radeka, R. Marinkovic-Neducin, J. Ranogajec, Improvement of cement based mortars by application of photocatalytic active Ti–Zn–Al nanocomposites, Cement Concrete Comp., 36 (2013) 121–127.
- J. Chen, C.S. Poon, Photocatalytic cementitious materials: influence of the microstructure of cement paste on photocatalytic pollution degradation, Environ. Sci. Technol., 43 (2009) 8948–8952.
- J. Chen, S.C. Kou, C.S. Poon, Photocatalytic cement-based materials: comparison of nitrogen oxides and toluene removal potentials and evaluation of self-cleaning performance, Build Environ., 46 (2011) 1827–1833.
- B. Ruot, A. Plassais, F. Olive, L. Guillot, L. Bonafous, TiO2–containing cement paste and mortars: measurements of the photocatalytic efficiency using rhodamine B-based colorimetric test, Solar Energy, 83 (2009) 1794–1801.
- V. Augugliario, V. Loddo, M. Pagliaro, G. Palmisano, L. Palmisano, Clean by light irradiation practical applications of supported TiO2, R. Soc. Chem., (2010) 144–167.
- A.H. Aissa, E. Puzenatm, A. Plassais, J.M. Herrmann, C. Haehnel, C. Guillard, Characterization and photocatalytic performance in air of cementitious materials containing TiO2. Case study of formaldehyde removal, Appl. Catal. B Environ., 107 (2011) 1–8.
- F. Pacheco-Torgal, S. Jalali, Nanotechnology: advantages and drawbacks in the field of construction and building materials, Constr. Build Mater., 25 (2011) 582–590.
- M.V. Diamanti, M. Ormellese, M. Pedeferri, Characterization of photocatalytic and superhydrophilic properties of mortars containing titanium dioxide, Cem. Concr. Res., 38 (2008) 1349–1353.
- F. Sanchez, K. Sobolov, Nanotechnology in concrete – a review. Constr. Build Mater., 24 (2010) 2060–2071.
- A. Nazari, S. Riahi, TiO2 nanoparticles effects on physical, thermal and mechanical properties of self compacting concrete with ground granulated blast furnace slag as binder, Energy Build., 43 (2011) 995–1002.
- J. Chen, S.C. Kou, C.S. Poon, Photocatalytic cement-based materials: comparison of nitrogen oxides and toluene removal potentials and evaluation of self-cleaning performance, Build Environ., 46 (2011) 1827–1833.
- H.M. Jennings, J.W. Bullard, From electrons to infrastructure: engineering concrete from the bottom up, Cem. Concr. Res., 41 (2011) 727–735.
- C.S. Turchi, D.F. Ollis, Photocatalytic degradation of organic water contaminants: mechanisms involving hydroxyl radical attack, J. Catal. 122 (1990) 178–192.
- W.Z. Tang, An. Huren, UV/TiO2 photocatalytic oxidation of commercial dyes in aqueous solutions, Chemosphere, 31 (1995) 4157–4170.
- S. Chakrabarti, B.K. Dutta, Photocatalytic degradation of model textile dyes in wastewater using ZnO as semiconductor catalyst, J. Hazard. Mater., b112 (2004) 269–278.
- J.M. Herrmann, Heterogeneous photocatalysis: fundamentals and applications to the removal of various types of aqueous pollutants, Catal. Today, 53 (1999) 115.
- M.A. Fox, M.T. Dulay, Heterogeneous photocatalysis, Chem. Rev., 93 (1993) 341–357.
- J. Xinliang, Y. Cui, L. Yanfeng, Q. Yongxin, Y. Liuqing, Z. Guanghui, H. Huaiyuan, Preparation of novel nano-adsorbent based on organic–inorganic hybrid and their adsorption for heavy metals and organic pollutants presented in water environment, J. Hazard. Mater., 186 (2011) 1672–1680.