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Results 1 to 25 of 5149

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Effect of adsorbate polarity on thermodesorption profiles from oxidized and metal-impregnated activated carbonsMAROTO-VALER, M. Mercedes; DRANCA, Ion; LUPASCU, Tudor et al.Carbon (New York, NY). 2004, Vol 42, Num 12-13, pp 2655-2659, issn 0008-6223, 5 p.Article

Short path thermal desorption : food science applicationsHARTMAN, T. G; OVERTON, S. V; MANURA, J. J et al.Food technology (Chicago). 1991, Vol 45, Num 7, pp 104-105, issn 0015-6639Article

Direct numerical method to analyze thermal desorption spectraFROITZHEIM, H; SCHENK, P; WEDLER, G et al.Journal of vacuum science and technology. A. Vacuum, surfaces, and films. 1993, Vol 11, Num 2, pp 345-353, issn 0734-2101Article

H2O outgassing properties of fumed and precipitated silica particles by temperature-programmed desorptionLONG NGOC DINH; BALOOCH, Mehdi; LEMAY, James Daniel et al.Journal of colloid and interface science. 2000, Vol 230, Num 2, pp 432-440, issn 0021-9797Article

Evaluation of parameters from thermal desorption spectra: methods borrowed from the analysis of thermoluminescenceCHEN, R.Surface science. 1998, Vol 400, Num 1-3, pp 258-265, issn 0039-6028Article

A new design of temperature programmer for desorption studyKI-HYOUK CHOI; HO-IN LEE.Instrumentation science & technology. 1994, Vol 22, Num 1, pp 73-82, issn 1073-9149Article

The study of diffusion processes in the thermodesorption resultsRAKIC, V; DONDUR, V; MISLJENOVIC, D et al.Journal of thermal analysis. 1992, Vol 38, Num 4, pp 879-885, issn 0368-4466Conference Paper

Thermal desorption-tandem mass spectrometry for the detection and identification of formulated productsSNYDER, A. P; CROSS, C. W; LIEBMAN, S. A et al.Journal of analytical and applied pyrolysis. 1989, Vol 16, Num 3, pp 191-204, issn 0165-2370, 14 p.Article

Comment to: Temperature programmed X-ray photoelectron spectroscopy : a new technique for the study of surface kineticsNETTESHEIM, S; HANDSCHUH, M; ZENOBI, R et al.Surface science. 1997, Vol 391, Num 1-3, pp L1249-L1251, issn 0039-6028Article

Angular distribution of desorbed moleculesLI, X. W; GUO, B. Z; LIN, S. H et al.Journal de physique IV. Colloque. 1991, Vol 1, Num 2, pp C2.33-C2.38Conference Paper

Etude des propriétés acides de la ferriérite par la méthode de la thermodésorption programmée de l'ammoniacMARDILOVICH, I. P; TROKHIMETS, A. I.Žurnal fizičeskoj himii. 1987, Vol 61, Num 8, pp 2139-2144, issn 0044-4537Article

Ambivalent Role of Water in Thermodesorption of Hydrocarbons from Contaminated SoilROLAND, Ulf; HOLZER, Frank; KOPINKE, Frank-Dieter et al.Environmental science & technology. 2011, Vol 45, Num 2, pp 732-737, issn 0013-936X, 6 p.Article

Calculation of desorption rates for Xe/Pt(111) using a realistic gas-surface potentialBETHUNE, D. S; BARKER, J. A; RETTNER, C. T et al.The Journal of chemical physics. 1990, Vol 92, Num 11, pp 6847-6854, issn 0021-9606Article

Characterization by means of temperature programmed reduction and desorption of propylene metathesis catalystSPINICCI, R; TOFANARI, A.Materials chemistry and physics. 1985, Vol 12, Num 4, pp 321-329, issn 0254-0584Article

Simulation of hydrogen thermal desorption from transition metals using a multiple-site hopping modelCABRERA, A. L; WEINKETZ, S; CABRERA, G. G et al.Surface science. 1994, Vol 317, Num 1-2, pp 275-279, issn 0039-6028Article

Application of CRTA to the study of microporosity by thermodesorption of pre-adsorbed waterTORRALVO, M. J; GRILLET, Y; ROUQUEROL, F et al.Journal of thermal analysis. 1994, Vol 41, Num 6, pp 1529-1534, issn 0368-4466Conference Paper

Règles de la désactivation thermique du catalyseur déposé destiné à la synthèse du chlorure de méthyleGRINBERG, S. B; SVETLANOV, E. B; SEMENYUK, F. V et al.Kinetika i kataliz. 1987, Vol 28, Num 5, pp 1273-1275, issn 0453-8811Article

Investigations of deintercalation processes in graphite intercalation compounds with SbCl5 and IClMATZUI, L; VOVCHENKO, L; OVSIENKO, I et al.Journal of thermal analysis and calorimetry. 2000, Vol 62, Num 2, pp 479-483, issn 1388-6150Conference Paper

Model for oxygen recombination on silicon-dioxide surfacesSEWARD, W. A; JUMPER, E. J.Journal of thermophysics and heat transfer. 1991, Vol 5, Num 3, pp 284-291, issn 0887-8722Conference Paper

Low-temperature desorption of Si clusters from a graphite surface stabilized by Si depositionTANAKA, H; KANAYAMA, T.Surface science. 1998, Vol 406, Num 1-3, pp L603-L606, issn 0039-6028Article

Temperature programmed desorption by dimers from a surfaceLUQUE, J. J; CORDOBA, A.Surface science. 1987, Vol 187, Num 1, pp L611-L615, issn 0039-6028Article

Influence du milieu réactionnel et de l'auto-fluctuation de la vitesse de la réaction d'oxydation de l'oxyde de carbone sur PT(110)VISHNEVSKIJ, A. L; SAVCHENKO, V. F.Kinetika i kataliz. 1987, Vol 28, Num 6, pp 1516-1517, issn 0453-8811Article

Propriétés acides des zéolites de type ZSM-5 et ZSM-11YUSHCHENKO, V. V; ROMANOVSKIJ, B. V; MEGED, N. F et al.Kinetika i kataliz. 1987, Vol 28, Num 5, pp 1270-1273, issn 0453-8811Article

A study of Si(111) surface oxidation by temperature programmed desorptionWATANABE, K; HIRAYAMA, H.Surface science. 1994, Vol 317, Num 3, pp L1125-L1128, issn 0039-6028Article

Investigation of In growth on W( 110) by means of electron spectroscopies, low energy electron diffraction, thermodesorption and scanning tunneling microscopyTRZCINSKI, M; GABL, M; MEMMEL, N et al.Surface science. 2007, Vol 601, Num 18, pp 4470-4474, issn 0039-6028, 5 p.Conference Paper

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