Influence of the Reactor Material Composition on Coke Formation during Ethane Steam Cracking
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Kevin Van Geem | Guy Marin | Marie-Françoise Reyniers | Andrés E. Muñoz Gandarillas | G. Marin | K. V. Geem | M. Reyniers
[1] Kevin Van Geem,et al. Coke Formation in the Transfer Line Exchanger during Steam Cracking of Hydrocarbons , 2009 .
[2] Carl Schietekat,et al. Swirl flow tube reactor technology: An experimental and computational fluid dynamics study , 2014 .
[3] Guy Marin,et al. The Influence of Dimethyl Disulfide on Naphtha Steam Cracking , 2001 .
[4] F. Kopinke,et al. New results about the mechanism of TLE fouling in steam crackers , 1993 .
[5] G. Marin,et al. Influence of Dimethyl Disulfide on Coke Formation during Steam Cracking of Hydrocarbons , 2007 .
[6] M. Grimsditch,et al. Chromium-oxide Growth on Fe–Cr–Ni Alloy Studied with Grazing-emission X-ray Fluorescence , 2007 .
[7] Hong Xu,et al. Anti-coking property of the SiO2/S coating during light naphtha steam cracking in a pilot plant setup , 2011 .
[8] J. Vercammen,et al. On-line analysis of complex hydrocarbon mixtures using comprehensive two-dimensional gas chromatography. , 2010, Journal of chromatography. A.
[9] A. Dalai,et al. Design and Preparation of Ni-Co Bimetallic Nanocatalyst for Carbon Dioxide Reforming of Methane , 2012 .
[10] S. Nowak,et al. On the mechanism of coke formation in steam cracking—conclusions from results obtained by tracer experiments , 1988 .
[11] P. Broutin,et al. Coke deposition under steam cracking conditions – Study of the influence of the feedstock conversion by micropilots experiments , 1998 .
[12] Gilbert F. Froment,et al. Influence of Metal Surface and Sulfur Addition on Coke Deposition in the Thermal Cracking of Hydrocarbons , 1995 .
[13] A. Chauhan,et al. Internal carburization and carbide precipitation in Fe-Ni-Cr alloy tubing retired from ethylene pyrolysis service , 2006 .
[14] G. Marin,et al. The influence of phosphorus containing compounds on steam cracking of n-hexane , 2006 .
[15] Kevin Van Geem,et al. Energy efficiency of the cold train of an ethylene cracker , 2007 .
[16] Y. Yang,et al. Morphologies of coke deposited on surfaces of pure Ni and Fe-Cr-Ni-Mn alloys during pyrolysis of propane , 2000 .
[17] Kevin Van Geem,et al. Dimensional analysis for scaling up and down steam cracking coils , 2007 .
[18] J. Rostrup-Nielsen. Mechanisms of carbon formation on nickel-containing catalysts , 1977 .
[19] Haiyong Cai,et al. Coke formation in steam crackers for ethylene production , 2002 .
[20] M. P. Bergeron,et al. TESTS DEMONSTRATE ANTICOKING CAPABILITY OF NEW COATING , 1999 .
[21] J. Nørskov,et al. Mechanisms for catalytic carbon nanofiber growth studied by ab initio density functional theory calculations , 2006 .
[22] Jacques Villermaux,et al. Un réacteur continu parfaitement agité par jets gazeux pour l'étude cinétique de réactions chimiques rapides , 1973 .
[23] F. Billaud,et al. Coke Formation During Hydrocarbons Pyrolysis. Part One: Steam Cracking , 1992 .
[24] R. Eckert,et al. Gaseous pretreatment of high-alloy steels used in ethylene furnaces: Pretreatment of Incoloy 800 , 2003 .
[25] F. Kopinke,et al. Transfer-Line Heat Exchanger Fouling during Pyrolysis of Hydrocarbons. 1. Deposits from Dry Cracked Gases , 1995 .
[26] Jingbo Yan,et al. Cyclic carburizing behaviour of Al modified high Si-containing HP40 alloy , 2013 .
[27] Weixing Chen,et al. Stability of MnCr2O4 spinel and Cr2O3 in high temperature carbonaceous environments with varied oxygen partial pressures , 2010 .
[28] Geraldine J. Heynderickx,et al. CFD simulations of steam cracking furnaces using detailed combustion mechanisms , 2006, Comput. Chem. Eng..
[29] P. Dagaut,et al. A jet-stirred reactor for kinetic studies of homogeneous gas-phase reactions at pressures up to ten atmospheres (∼1 MPa) , 1986 .
[30] Guy Marin,et al. Computer generation of a network of elementary steps for coke formation during the thermal cracking of hydrocarbons , 2001 .
[31] G. Froment,et al. Relative rates of coke formation from hydrocarbons in steam cracking of naphtha. 2. Paraffins, naphthenes, mono-, di-, and cycloolefins, and acetylenes , 1993 .
[32] M. Edrissi,et al. Synthesis of MnAl2O4 nanocrystallites by Pechini and sequential homogenous precipitation methods: characterization, product comparison, photocatalytic effect, and Taguchi optimization , 2012, Journal of Sol-Gel Science and Technology.
[33] Guy Marin,et al. Kinetic Modeling of Coke Formation during Steam Cracking , 2002 .
[34] A. Niaei,et al. Coke Formation Mechanisms and Coke Inhibiting Methods in Pyrolysis Furnaces , 2002 .
[35] G. Froment,et al. Filamentous carbon formation and gasification: Thermodynamics, driving force, nucleation, and steady-state growth , 1997 .
[36] G. Marin,et al. Optimization of the Decoking Procedure of an Ethane Cracker with a Steam/Air Mixture , 2006 .
[37] J. Jedliński. The oxidation behaviour of FeCrAl ‘alumina forming’ alloys at high temperatures , 1997 .
[38] Gilbert F. Froment,et al. RELATIVE RATES OF COKE FORMATION FROM HYDROCARBONS IN STEAM CRACKING OF NAPHTHA .3. AROMATIC-HYDROCARBONS. , 1993 .
[39] Weifeng Wei,et al. Oxidation Behavior of Ni–Cr–Fe-Based Alloys: Effect of Alloy Microstructure and Silicon Content , 2010 .
[40] Paul Broutin,et al. Anticoking Coatings for High Temperature Petrochemical Reactors , 1999 .
[41] Weixing Chen,et al. Carburization behaviour of Mn―Cr―O spinel in high temperature hydrocarbon cracking environment , 2009 .
[42] J. C. Marek,et al. Coke formation during pyrolysis: roles of residence time, reactor geometry, and time of operation , 1988 .
[43] M. J. Bennett,et al. A physical and chemical examination of an ethylene steam cracker coke and of the underlying pyrolysis tube , 1981 .
[44] J. C. Marek,et al. Mechanistic model for formation of coke in pyrolysis units producing ethylene , 1988 .
[45] G. Froment,et al. Coke Formation in the Thermal Cracking of Hydrocarbons. 4. Modeling of Coke Formation in Naphtha Cracking , 1994 .
[46] G. Verdier,et al. Consider new materials for ethylene furnace applications: An innovative metallurgy solves maintenance issues , 2011 .
[47] Kevin Van Geem,et al. Influence of Silicon and Silicon/Sulfur-Containing Additives on Coke Formation during Steam Cracking of Hydrocarbons , 2008 .
[48] F. Abild‐Pedersen,et al. Carbide induced reconstruction of monatomic steps on Ni(111) -a density functional study , 2007 .
[49] Gilbert F. Froment,et al. The coupled simulation of heat transfer and reaction in a pyrolysis furnace , 1988 .
[50] J. Defrancq,et al. Kinetic studies of coke formation and removal on HP40 in cycled atmospheres at high temperatures. , 1998 .
[51] E. Fedorova,et al. Quantification of growth kinetics and adherence of oxide scales formed on Ni-based superalloys at high temperature , 2010 .