341 - 342 |
Environmental applications of solar energy (introduction by guest editors) Rodriguez SM, Farreras JG |
343 - 352 |
Design of photocatalytic reactors made easy by considering the photons as immaterial reactants Camera-Roda G, Santarelli F, Martin CA |
353 - 359 |
New helio-photocatalytic-photovoltaic hybrid system for simultaneous water decontamination and solar energy conversion Sarria V, Kenfack S, Malato S, Blanco J, Pulgarin C |
360 - 368 |
Optimizing the solar photo-Fenton process in the treatment of contaminated water. Determination of intrinsic kinetic constants for scale-up Rodriguez M, Malato S, Pulgarin C, Contreras S, Curco D, Gimenez J, Esplugas S |
369 - 375 |
Environmental assessment of different solar driven advanced oxidation processes Munoz I, Rieradevall J, Torrades F, Peral J, Domenech X |
376 - 383 |
Decolouration of textile dyes in wastewaters by photocatalysis with TiO2 Prieto O, Fermoso J, Nunez Y, del Valle JL, Irusta R |
384 - 392 |
Influence of the iron source on the solar photo-Fenton degradation of different classes of organic compounds Nogueira RFP, Silva MRA, Trovo AG |
393 - 401 |
Solar photo-catalysis to remove paper mill wastewater pollutants Amat AM, Arques A, Lopez F, Miranda MA |
402 - 408 |
Degradation of lincomycin in aqueous medium: Coupling of solar photocatalysis and membrane separation Augugliaro V, Garcia-Lopez E, Loddo V, Malato-Rodriguez S, Maldonado I, Marci G, Molinari R, Palmisano L |
409 - 421 |
Solar water splitting for hydrogen production with monolithic reactors Agrafiotis C, Roeb M, Konstandopoulos AG, Nalbandian L, Zaspalis VT, Sattler C, Stobbe P, Steele AM |
422 - 430 |
2-Ethyl-1-hexanol based screen-printed titania thin films for dye-sensitized solar cells Tsoukleris DS, Arabatzis IM, Chatzivasilogiou E, Kontos AI, Belessi V, Bernard MC, Falaras P |