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Results 1 to 25 of 1121

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Selective catalytic oxidation of acetonitrileBRAZDIL, J. F; TELLER, R. G; MARRITT, W. A et al.Journal of catalysis (Print). 1986, Vol 100, Num 2, pp 516-519, issn 0021-9517, supplArticle

Vanadium poisoning of cracking catalysts: mechanism of poisoning and design of vanadium tolerant catalyst systemWORMSECHER, R. F; PETERS, A. W; MASELLI, J. M et al.Journal of catalysis (Print). 1986, Vol 100, Num 1, pp 130-137, issn 0021-9517Article

Carbon monoxide oxidation on vanadium pentoxides of different grain morphology: structure sensitivity of the reactionBAIKER, A; DOLLENMEIER, P; HE, R et al.Journal of catalysis (Print). 1986, Vol 100, Num 2, pp 345-352, issn 0021-9517, supplArticle

Epoxidation of allylic alcohol in the presence of vanadium pentoxideMORIGUCHI, T; YOSHIHARA, M; MATSUBARA, Y et al.Yukagaku. 1990, Vol 39, Num 1, pp 29-32, issn 0513-398XArticle

Synthesis and characterization of vanadium(V) and -(IV) hydroxamate complexes. X-ray crystal structures of oxochlorobis(benzohydroxamato)vanadium(V) and oxoisopropoxo(N,N'-dihydroxy-N,N'-diisopropylheptanediamido)vanadium(V)FISHER, D. C; BARCLAY-PEET, S. J; BALFE, C. A et al.Inorganic chemistry (Print). 1989, Vol 28, Num 24, pp 4399-4406, issn 0020-1669, 8 p.Article

Mise en évidence de la formation de complexes entre le vanadium(V) et des molécules monocarbonées (acide formique, monoxyde et dioxyde de carbon) en milieu non aqueux = Evidence for complex formation between vanadium(V) and monocarbon molecules formic acid, carbon monoxide and dioxide in non aqueous mediumPRADEAU, D; POSTAIRE-VIGREUX, M; HAMON, M et al.Analytica chimica acta. 1989, Vol 225, Num 1, pp 217-225, issn 0003-2670, 9 p.Article

Spectrophotometric determination of vanadium(V) with methoxypromazine maleate and its application to vanadium steels and mineralsTHIMME GOWDA, A; SANKE GOWDA, H.Analytica chimica acta. 1988, Vol 209, Num 1-2, pp 293-297, issn 0003-2670Article

Thermogravimetric investigation of reactions between vanadium(V) compounds and pyrosulphate in alkali metal sulphate meltsDEARNALEY, R. I; KERRIDGE, D. H.Thermochimica acta. 1987, Vol 121, pp 121-135, issn 0040-6031Article

Extract-photometric determination of vanadium(V) with 3-indole-acetohydroxamic acidCARO GAMEZ, C; VALIENTE GONZALEZ, P; JIMENEZ ARRABAL, M et al.Fresenius' journal of analytical chemistry. 1991, Vol 340, Num 3, pp 169-172, issn 0937-0633, 4 p.Conference Paper

Preparation of no-carrier-added 48V(IV) and 48V(V) for biological tracer useIWATA, R; IWAI, K; IDO, T et al.Journal of radioanalytical and nuclear chemistry. 1989, Vol 134, Num 2, pp 303-309, issn 0236-5731, 7 p.Article

Cinétique de dissolution des cristaux de dioxyde de vanadium dans l'oxyde de vanadium (V) fonduIVON, A. I; CHERNENKO, I. M; KUDZINA, A. P et al.Žurnal fizičeskoj himii. 1988, Vol 62, Num 3, pp 611-616, issn 0044-4537Article

A combined transient response and temperature-programmed desorption technique used in the ammoxidation of 3-picoline over a V2O5 catalystANDERSSON, A.Journal of catalysis (Print). 1986, Vol 100, Num 2, pp 414-428, issn 0021-9517, supplArticle

Potassium promotion of supported V2O5 catalystsBAIKER, A; GLINSKI, M; KIJENSKI, J et al.Journal of physical chemistry (1952). 1986, Vol 90, Num 17, pp 4217-4218, issn 0022-3654Article

Structure and reactivity of titania-supported oxides. II: Characterisation of various vanadium oxide on titania catalysts by X-ray photoelectron spectroscopyBOND, G. C; PEREZ ZURITA, J; FLAMERZ, S et al.Applied catalysis. 1986, Vol 27, Num 2, pp 353-362, issn 0166-9834Article

Complex formation in pyrosulfate melts. III: Density and conductometric measurements of the system V2O5-K2S2O7 in the temperature range 350-490 °CHATEM, G; FEHRMANN, R; GAUNE-ESCARD, M et al.Journal of physical chemistry (1952). 1987, Vol 91, Num 1, pp 195-203, issn 0022-3654Article

Chemical and spectroscopic study of the nature of a vanadium oxide monolayer supported on a high-surface-area TiO2 anataseBUSCA, G; CENTI, G; MARCHETTI, L et al.Langmuir. 1986, Vol 2, Num 5, pp 568-577, issn 0743-7463Article

Catalytic reduction of nitrogen oxides. II: The reduction of NO2INGEMAR ODENBRAND, C. U; ANDERSSON, L. A. H; BRANDIN, J. G. M et al.Applied catalysis. 1986, Vol 27, Num 2, pp 363-377, issn 0166-9834Article

Monolayers and double layers of vanadium pentoxide on different carriers: preparation, characterization, and catalytic activitiesKIJENSKI, J; BAIKER, A; GLINSKI, M et al.Journal of catalysis (Print). 1986, Vol 101, Num 1, pp 1-11, issn 0021-9517Article

Système Bi2O3-V2O5BLINOVSKOV, YA. N; FOTIEV, A. A.Žurnal neorganičeskoj himii. 1987, Vol 32, Num 1, pp 254-256, issn 0044-457XArticle

A study of the reactivity of surface-adsorbed oxygen species with C2H6 on V2O5/SiO2IWAMATSU, E; AIKA, K; ONISHI, T et al.Bulletin of the Chemical Society of Japan. 1986, Vol 59, Num 6, pp 1665-1669, issn 0009-2673Article

Textural properties of V2O5/TiO2 catalysts obtained from VOCl3MARTIN, C; RIVES, V.Adsorption Science & Technology. 1985, Vol 2, Num 4, pp 241-251, issn 0263-6174Article

Influence of drying conditions on the properties of vanadium-sulfate catalystsCHARIKOVA, O. G; KOSTYUCHENKO, V. V; MOSIN, YU. M et al.Glass and ceramics. 1993, Vol 50, Num 5-6, pp 216-219, issn 0361-7610Article

Etude du pouvoir oxydant du pentoxyde de vanadium en milieu non aqueux. Application à l'oxydation de molécules organiques oxygénées monofonctionnelles = Oxidation power of vanadium pentaoxide in non aqueous medium. Application to monofunctionalized oxygenated organic molecules oxidationPRADEAU, D; HAMON, M.Talanta (Oxford). 1989, Vol 36, Num 3, pp 383-389, issn 0039-9140, 7 p.Article

A study of the interaction of V2O5/TiO2 (anatase) by high-resolution electron microscopy (HREM)KANG, Z. C; BAO, Q. X.Applied catalysis. 1986, Vol 26, Num 1-2, pp 251-263, issn 0166-9834Article

FT-IR study of the surface chemistry of anatase-supported vanadium oxide monolayer catalystsBUSCA, G.Langmuir. 1986, Vol 2, Num 5, pp 577-582, issn 0743-7463Article

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