Диссертация (1091644), страница 16
Текст из файла (страница 16)
Eng. Sci.- 2003.- V. 58.- P. 867-875.11185.Jacobs, G. Influence of Reduction Promoters on Stability of Cobalt/γ-AluminaFischer-Tropsch Synthesis Catalysts / G. Jacobs, W. Ma, B. Davis //Catalysts.- 2014.- V. 4.- P. 49-76.86.Vannice, M.A. The catalytic synthesis of hydrocarbons from H 2 CO mixturesover the group VIII metals: I. The specific activities and product distributionsof supported metals / M.A. Vannice // J.
Catal. 1975. V.37. №3. P.449-461.87.Vannice, M.A. The catalytic synthesis of hydrocarbons from H2CO mixturesover the group VIII metals: II. The kinetics of the methanation reaction oversupported metals /M.A. Vannice//J. Catal. 1975. V.37. №3. P.462- 473.88.Vannice, M.A. The catalytic synthesis of hydrocarbons from H2CO mixturesover the Group VIII metals: V. The catalytic behavior of silica-supportedmetals / M.A.
Vannice // J. Catal.- 1977.- V. 50. № 2.- P. 228-236.89.Nurunnabi, M.Performance and characterization of Ru/Al2O3 and Ru/SiO2catalysts modified with Mn for Fischer–Tropsch synthesis/ M. Nurunnabi, K.Murata, K. Okabe, M. Inaba, I.
Takahara // Appl. Catal.- 2008.- V. 340.- P.203-211.90.Хенрици-Оливэ, Г. Химия каталитического гидрирования СО / Г. С.Хенрици-Оливэ, Оливэ .- М.: Мир.- 1987.- 155 c.91.Репер, М. В // кн.: Катализ в С1-химии. Под ред. В. Кайма. Л.: Химия.1987.- 296 с.92.Xavier, K. Doping effects of cerium oxide on Ni/Al2O3 catalysts formethanation / K. Xavier, R. Sreekala, K. Rashid, K. Yusuff, B. Sen // Catal.Today.- 1999.- V. 49.- P.
17-21.93.Czekaj, I. Characterization of surface processes at the Ni-based catalyst duringthe methanation of biomass-derived synthesis gas: X-ray photoelectronspectroscopy (XPS) / I. Czekaj, F. Loviat, F. Raimondi, J. Wambach, S.Biollaz, A. Wokaun // Appl. Сatal.- 2007. V. 329.- P. 68-78.94.Habazaki, H. Co-methanation of carbon monoxide and carbon dioxide onsupported nickel and cobalt catalysts prepared from amorphous alloys / H.112Habazaki, M. Yamasaki, B.P.
Zhang, A. Kawashima, S. Kohno, T. Takai, K.Hashimoto // Appl. Catal.- 1998.- V. 172.- P. 131-140.95.Znak, L. The effect of potassium on Ni/Al2O3 catalyst in relation to CO/H 2reaction / L. Znak, J. Zielinski // Applied Catalysis A: General.-2012.- 413–414.-P.132–139.96.Huang, Y.-J. The effect of catalyst preparation on catalytic activity: III.Thecatalytic activity of Ni/Al2O3 catalysts prepared byincipientwetness / Y.J.Huang, J.A.Schwarz // Appl. Catal.- 1987.- V. 32.- P.
45-57.97.Mirzaei, A. Effect of support and promoter on the catalytic performance andstructural properties of the Fe-Co-Ni catalysts for CO hydrogenation / A.Mirzaei, S. Shahriari, M. Arsalanfar // Journal of Natural Gas Science andEngineering.- 2013.- V. 15.- P. 106-117.98.Duprez, D. Regeneration of Nickel Catalysts Deactivated by FilamentousCarbon / D.
Duprez, K. Fadili // Chem. Res.- 1997.- V. 36.- P. 3180-3187.99.Osaki, T. Role of Potassium in Carbon-Free CO2 Reforming of Methane on KPromoted Ni/Al2O3 Catalysts / T. Osaki, T. Mori // J. Catal.- 2001.- V. 204.- P.89-97.100. Hwang, S.
Hydrogenation of carbon monoxide to methane over mesoporousnickel-M-alumina (M = Fe, Ni, Co, Ce, and La) xerogel catalysts /S. Hwang,J. Lee, U. Hong, J. Jung, D. Koh, H. Lim, C. Byun, I. Song // J. Ind. Eng.Chem.- 2012.- V. 18.- P. 243-248.101. Hwang, S. Methane production from carbon monoxide and hydrogen overnickel–alumina xerogel catalyst: Effect of nickel content / S. Hwang, J. Lee,U. Hong, J. Seo, J.
Jung, D. Koh, H. Lim, C. Byun, I. Song // J. Ind. Eng.Chem.- 2011.- V. 17.- P. 154–157 .102. Schulz, H. Short history and present trends of Fischer–Tropsch synthesis/ H.Schulz // Appl. Catal.- 1999.- V. 186.- P. 3-12.103. Rosynek, M. Effect of cobalt source on the reduction properties of silicasupported cobalt catalysts / M. Rosynek, C. Polansky // Appl. Catal.- 1991.V. 73.- P. 97-112.113104.
Niemela, M. Preparation and characterization of Co/SiO2, Co-Mg/SiO2 andMg-Co/SiO2 catalysts and their activity in CO hydrogenation / M. Niemela, A.Krause, T. Vaara, V. Lahtinen // Topics in Catal.- 1995.- V. 2. P. 45-57.105. Lapidus, A .Hydrocarbon synthesis from carbon monoxide and hydrogen onimpregnated cobalt catalysts. Part I. Physico-chemical properties of 10%cobalt/alumina and 10% cobalt/silica / A. Lapidus, A.
Krylova, V. Kazanskii,V. Borovkov, A. Zaitsev // Applied Catalysis.- 1991.- V. 73.- P. 65-82.106. Reuel, R. The stoichiometries of H2 and CO adsorptions on cobalt: Effects ofsupport and preparation / R. Reuel, C. Bartolomew // J. Catal.- 1984.- V. 85.P.
63-77.107. Lee, W.H. Multiple reaction states in CO hydrogenation on alumina-supportedcobalt catalysts / W.H. Lee, C.H. Bartholomew // J. Catal.- 1989.- V. 120.- P.256-271.108. Glugla, P.G. Activated formation of a H-CO complex on NiAl2O3 catalysts /P.G. Glugla,K.M.Baily,J.L.Falconer // J. High Resolut. Chromatogr.Chromatogr. Commun, 1989, vol. 115, p. 24.109.
Lapidus,A. L. Influence of preparation method on activity of cobalt catalystsfor hydrocarbon synthesis from CO and H2/ A. L. Lapidus,A. Yu.Krylova,Khoang Chong Iem// Russ Chem Bull.-1984.-V.-33.-P. 251-255.110. Крылова, А. Активность промотированных Со-катализаторов в синтезеуглеводородов из СО и Н2 / А.Ю.
Крылова, М. Салехуддин, А.Г. Газаряни др // Нефтехимия.- 1985.- Т. 25, № 4.- С. 498-502.111. Миначев, Х.М. Применение цеолитов в качестве носителей Сокатализаторов синтеза углеводородов из СО и Н2/ Х.М. Миначев, А.Л.Лапидус, А.Ю. Крылова // Химия твердого топлива. – 1988.
– №. 6. – С.5.112. Krylova, A.YU. Investigation of a Co-MgO-ZSM catalyst by temperatureprogrammedreduction,temperature-programmeddesorption,andIRspectroscopy/ A. Yu. Krylova,A. L. Lapidus,S. D. Sominskii,L. F. Rar,A.Zukal,J.kousky,M. Jancalkova,V. I. Yakerson,A. Yu. Krylova,A. L. Lapidus,114S. D. Sominskii,L.
F. Rar,A. Zukal,J. Ratkousky,M. Jancalkova,V. I.Yakerson// Russ Chem Bull.-1992.-V. 41.-P. 41–45.113. Rauthousky, J. Hydrocarbon synthesis from carbon monoxide + hydrogen onimpregnated cobalt catalysts: Part III. Cobalt (10%)/silica-alumina catalysts /J. Rauthousky, A. Zukal, A. Lapidus, A. Krylova // Appl. Catal.- 1991.- V.79.- P. 167-180.114. Chang C. Synthesis gas conversion to aromatic hydrocarbons / C. Chang, W.Lang, A. Silvestri // J.
Catalysis.- 1979.- V. 56.- P. 268-273.115. Minachev, KH.M. State of the art in hydrocarbon synthesis from co and h2 /KH.M. Minachev, A.L.Lapidus, A.YU.Krylova// Химия тверд. топлива1993.- № 6.- С. 7-20.116. Lapidus, A.L. Scientific principles of synthesis of liquid hydrocarbons fromCO and H2 in the presence of cobalt catalysts (review)/ A.
L. Lapidus//RussChem Bull.-1991.-V.40.-P. 2335–2349.117. Sachtler, W. Catalytic site requirements for elementary steps in syngasconversion to oxygenates over promoted rhodium / W. Sachtler, M. Ichikawa// J. Phys. Chem.- 1986.- V. 90.- P. 4752-4758.118. Levin,M. E. The Enhancement of CO Hydrogenation on Rhodiumby TiO,Overlayer s/ M. E. Levin, M. Salmeron, A. T. Bell,G. A.
Somorjai //journal ofcatalysis.-1987.- V. 106.- P. 401-409.119. Lapidus, A. L. Role of Co-catalyst components in carbon monoxide-assistedacetylene hydropolymerization/ A. L. Lapidus, A. Yu. Krylova, M. S.Kharson, V. M. Kogan, L. V. Sineva// Russian Chemical Bulletin.-1994.V.43.-P. 355–359.120. Lapidus,A.
L. Physico-chemical properties of metalosilicate supports andcobalt catalysts based on them/ A. L. Lapidus, A. Yu. Krylova, M. P. Kapur,V. L. Vershinin,V. B. Mel'nikov,A. Zukal,I. Rathousky,I. Starek// RussianChemical Bulletin.- 1993.-V.42(4).-P.627-631.115121. Shih, Sh. Chemical reactions of alkenes and alkynes with solid-state defectson ZSM-5 / Sh.Shih // J. Catal.- 1983.- V. 79.- P. 390-395.122. Allenger, V.M.
Simultaneous polymerization and oligomerization of acetyleneon alumina and fluoridated alumina catalysts / V. M. Allenger, D.D. McLean,V. Ternan // J. Catal. - 1991. - V. 131. - P. 305123. Крылова, А.Ю. Гидрирование СО на металлах VIII группы, нанесенныхна углеводородные волокна / А.Ю. Крылова, О.А. Малых, Г.И.Емельянова, А.Л .Лапидус // Кинетика и катализ.-1989.- т.
30.- № 6.- C.1495-1499.124. Shen, J. Commercial Deployment of Fischer–Tropsch Synthesis: TheCoproduction Option / J. Shen, E. Schmetz, G. Kawalkin, G. Stiegel, R.Noceti, J. Winslow, M. Robert, K.R. Donald, V. Venkataraman, D. Driscoll,D. Cicero, W. Haslebacher, B. Hsieh, S. Jain, J. Tennant // Topics inCatalysis.- 2003.- V. 26.- P. 13-20.125. Schulz, H. Short history and present trends of Fischer–Tropsch synthesis /H.Schulz // Applied Catalysis A: General.- 1999.- V. 186.- P. 3-12.126. Davis, B.H.
Fischer–Tropsch Synthesis: Reaction mechanisms for ironcatalysts / B.H. Davis // Catalysis Today.- 2009.- V. 141.- P. 25-33.127. Butt, J.B. Carbide phases on iron-based Fischer-Tropsch synthesis catalystspart I: Characterization studies / J.B. Butt // Catalysis Letters. 1990. V. 7. P.61-81.128. Чернавский, П.А. Размерные эффекты в карбидировании наночастицжелеза/ П.А. Чернавский, В.И. Зайковский, Г.В. Панкина // ЖурналФизической Химии.- 2012.- Т. 86, № 8.- C. 1390-1396129.
Herranz, T. Genesis of iron carbides and their role in the synthesis ofhydrocarbons from synthesis gas / T. Herranz, S. Rojas, F. Perez-Alonso, M.Ojeda, P. Terreros, J. Fierro // Journal of Catalysis.- 2006.- V. 243.- P. 199211.130. Козюков ,Е.А. Искусственные горючие газы и жидкие топлива/Е.А.Козюков, А.Ю Крылова//-М.: Изд-во МАИ, 2008. – 224 с.116131. Steynberg, A. P. Introduction to Fischer-Tropsch Technology / A.
P.Steynberg, M. E. Dry // Studies in Surface Science and Catalysis.- 2004.- V.152.- P. 361.132.Rajamani , K. Gas Holdup in Slurry Bubble Columns: Effect of ColumnDiameter and Slurry Concentrations / Krishna. R, de Swart . J, Ellenberger.J, Martina.