273 - 279 |
Urea decomposition and HNCO hydrolysis studied over titanium dioxide, Fe-Beta and gamma-Alumina Lundstrom A, Snelling T, Morsing P, Gabrielsson P, Senar E, Olsson L |
280 - 286 |
Steam reforming of phenol over Ni-based catalysts - A comparative study Gull BM, Babich IV, Lefferts L, Seshan K |
287 - 294 |
Facile synthesis of N-doped TiO2 nanoparticles by a modified polymeric precursor method and its photocatalytic properties Soares GB, Bravin B, Vaz CMP, Ribeiro C |
295 - 303 |
Steam reforming of ethanol/gasoline mixtures: Deactivation, regeneration and stable performance Simson A, Farrauto R, Castaldi M |
304 - 315 |
Hydrogen from urea-water and ammonia-water solutions Rollinson AN, Rickett GL, Lea-Langton A, Dupont V, Twigg MV |
316 - 322 |
Titanium dioxide photocatalysis to decompose isopropyl methylphosphonofluoridate (GB) in gas phase Sato K, Hirakawa T, Komano A, Kishi S, Nishimoto CK, Mera N, Kugishima M, Sano T, Ichinose H, Negishi N, Seto Y, Takeuchi K |
323 - 336 |
Conventional versus lattice photocatalysed reactions: Implications of the lattice oxygen participation in the liquid phase photocatalytic oxidation with nanostructured ZnO thin films on reaction products and mechanism at both 254 nm and 340 nm Ali AM, Emanuelsson EAC, Patterson DA |
337 - 342 |
On the mechanism of enhanced photocatalytic activity of composite TiO2/carbon nanofilms Sellappan R, Galeckas A, Venkatachalapathy V, Kuznetsov AY, Chakarov D |
343 - 349 |
Oxidative desulfurization of dibenzothiophene with dioxygen and reverse micellar peroxotitanium under mild conditions Jiang CY, Wang JJ, Wang ST, Guan HY, Wang XH, Huo MX |
350 - 358 |
A study of the effect of microwave treatment on metal zeolites and their use as photocatalysts toward naptalam Kanan SM, Abdo N, Khalil M, Li XB, Abu-Yousef IA, Barilrobert F, Patterson HH |
359 - 369 |
The effect of zirconia additive on the activity and structure stability of V2O5/WO3-TiO2 ammonia SCR catalysts Shi AJ, Wang XQ, Yu T, Shen MQ |
370 - 378 |
Oxidative degradation of azo dye by hydrogen peroxide electrogenerated in situ on anthraquinonemonosulphonate/polypyrrole composite cathode with heterogeneous CuO/gamma-Al2O3 catalyst Zhang GQ, Wang SA, Zhao S, Fu L, Chen GH, Yang FL |
379 - 389 |
Preparation and characterization of Pt on modified multi-wall carbon nanotubes to be used as electrocatalysts for high temperature fuel cell applications Orfanidi A, Daletou MK, Neophytides SG |
390 - 397 |
The role of activated carbons functionalized with thiol and sulfonic acid groups in catalytic wet peroxide oxidation Gomes HT, Miranda SM, Sampaio MJ, Figueiredo JL, Silva AMT, Faria JL |
398 - 404 |
Hydroxyapatite/titanium dioxide nanocomposites for controlled photocatalytic NO oxidation Mitsionis A, Vaimakis T, Trapalis C, Todorova N, Bahnemann D, Dillert R |
405 - 415 |
Catalytic hydroreforming of the polyethylene thermal cracking oil over Ni supported hierarchical zeolites and mesostructured aluminosilicates Escola JM, Aguado J, Serrano DP, Garcia A, Peral A, Briones L, Calvo R, Fernandez E |
416 - 422 |
Direct nitrous oxide decomposition with CoOx-CeO2 catalysts Iwanek E, Krawczyk K, Petryk J, Sobczak JW, Kaszkur Z |
423 - 432 |
Selective oxidation of glycerol with oxygen in a base-free aqueous solution over MWNTs supported Pt catalysts Liang D, Gao J, Sun H, Chen P, Hou ZY, Zheng XM |
433 - 444 |
Catalytic conversion of wastes from the bioethanol production into carbon nanomaterials Alves JO, Zhuo CW, Levendis YA, Tenorio JAS |
445 - 452 |
Nanocomposite of Ag-AgBr-TiO2 as a photoactive and durable catalyst for degradation of volatile organic compounds in the gas phase Zhang YH, Tang ZR, Fu XZ, Xu YJ |
453 - 459 |
Effect of inorganic ions, H2O2 and pH on the photocatalytic inactivation of Escherichia coli with silver impregnated combustion synthesized TiO2 catalyst Sontakke S, Modak J, Madras G |
460 - 468 |
2.8NiO-H1.8Ni0.6(OH)MoO4-Novel nanocomposite material for the reactive adsorption of sulfur-containing molecules at moderate temperature Skrzypski J, Bezverkhyy I, Safonova O, Bellat JP |
469 - 475 |
Comparison of activated carbon-supported Pd and Rh catalysts for aqueous-phase hydrodechlorination Diaz E, Mohedano AF, Casas JA, Calvo L, Gilarranz MA, Rodriguez JJ |
476 - 487 |
Autothermal reforming of low-sulfur diesel over bimetallic RhPt supported on Al2O3, CeO2-ZrO2, SiO2 and TiO2 Karatzas X, Jansson K, Gonzalez A, Dawody J, Pettersson LJ |
488 - 493 |
Renewable fine chemicals from rice and citric subproducts: Ecomaterials Martin-Luengo MA, Yates M, Diaz M, Rojo ES, Gil LG |
494 - 502 |
Influence of thermally induced structural changes of 2 wt% Pd/LaFeO3 on methane combustion activity Eyssler A, Winkler A, Mandaliev P, Hug P, Weidenkaff A, Ferri D |
503 - 509 |
Ultra-low loading Pt Rh/Sn0.9In0.1P2O7 three-way catalyst for propane + NO + O-2 reaction Dong X, Tsuneyama K, Hibino T |
510 - 519 |
Adsorption and dissociation of ammonia on clean and metal-covered TiO2 rutile (110) surfaces: A comparative DFT study Cheng DJ, Lan JH, Cao DP, Wang WC |
520 - 528 |
An FTIR study of Rh-PtSn/C catalysts for ethanol electrooxidation: Effect of surface composition Garcia-Rodriguez S, Rojas S, Pena MA, Fierro JLG, Baranton S, Leger JM |
529 - 539 |
Effect of Ti(IV) loading on CH4 oxidation activity and SO2 tolerance of Pd catalysts supported on silica SBA-15 and HMS Venezia AM, Di Carlo G, Liotta LF, Pantaleo G, Kantcheva M |
540 - 549 |
Preferential oxidation of CO over Pt-Sn/AC catalyst: Adsorption, performance and DRIFTS studies Caglayan BS, Soykal II, Aksoylu AE |
550 - 558 |
Cinder supported K2CO3 as catalyst for biodiesel production Liu H, Su LY, Liu FF, Li C, Solomon UU |
559 - 564 |
Highly efficient photocatalytic oxidation of phenol over ordered mesoporous Bi2WO6 Sun SM, Wang WZ, Xu JH, Wang L, Zhang ZJ |
565 - 576 |
Iron redox cycling in hydroxyl radical generation during the photo-Fenton oxidative degradation: Dynamic change of hydroxyl radical concentration Tokumura M, Morito R, Hatayama R, Kawase Y |
577 - 585 |
In situ formation of large-scale Ag/AgCl nanoparticles on layered titanate honeycomb by gas phase reaction for visible light degradation of phenol solution Tang YX, Subramaniam VP, Lau TH, Lai YK, Gong DG, Kanhere PD, Cheng YH, Chen Z, Dong ZL |
586 - 591 |
Novel luminescent photocatalytic deNO(x) activity of CaAl2O4:(Eu, Nd)/TiO2-xNy composite Li HH, Yin S, Sato T |
592 - 599 |
Antibacterial performance of a novel photocatalytic-coated cordierite foam for use in air cleaners Yao YY, Ochiai T, Ishiguro H, Nakano R, Kubota Y |
600 - 608 |
Toluene photocatalytic oxidation at ppbv levels: Kinetic investigation and carbon balance determination Debono O, Thevenet F, Gravejat P, Hequet V, Raillard C, Lecoq L, Locoge N |
609 - 615 |
Preparation and characterization of Pt/TiO2 nanotubes catalyst for methanol electro-oxidation Abida B, Chirchi L, Baranton S, Napporn TW, Kochkar H, Leger JM, Ghorbel A |
616 - 620 |
Plasma-assisted methane reduction of a NiO catalyst-Low temperature activation of methane and formation of carbon nanofibres Gallon HJ, Tu X, Twigg MV, Whitehead JC |
621 - 629 |
Fe-doped ceria solids synthesized by the microemulsion method for CO oxidation reactions Laguna OH, Centeno MA, Boutonnet M, Odriozola JA |
630 - 638 |
Elucidating the photocatalytic degradation pathway of acetaldehyde: An FTIR in situ study under atmospheric conditions Hauchecorne B, Terrens D, Verbruggen S, Martens JA, Van Langenhove H, Demeestere K, Lenaerts S |
639 - 649 |
The ethanol steam reforming over Cu-Ni/SiO2 catalysts: Effect of Cu/Ni ratio Chen LC, Lin SD |
650 - 656 |
Preparation of nano-sized Cu from a rod-like CuFe2O4: Suitable for high performance catalytic applications Yang SC, Su WN, Lin SD, Rick J, Cheng JH, Liu JY, Pan CJ, Liu DG, Lee JF, Chan TS, Sheu HS, Hwang BJ |
657 - 663 |
Investigations of photocatalytic activities of photosensitive semiconductors dispersed into epoxy matrix Calza P, Rigo L, Sangermano M |
664 - 671 |
Spatially resolving LNT desulfation: re-adsorption induced by oxygen storage materials Luo JY, Al-Harbi M, Pang M, Epling WS |
672 - 680 |
Preparation and characterization of SBA-15 supported Pd catalyst for CO oxidation Wang HP, Liu CJ |
681 - 688 |
Photocatalytic reforming of C3-polyols for H-2 production Part (I). Role of their OH groups Fu XL, Wang XX, Leung DYC, Gu Q, Chen SF, Huang HB |
689 - 696 |
Photocatalytic reforming of C3-polyols for H-2 production Part II. FTIR study on the adsorption and photocatalytic reforming reaction of 2-propanol on Pt/TiO2 Gu Q, Fu XL, Wang XX, Chen SF, Leung DYC, Xie XQ |