Clarke P F,Pruden B B. Asphaltene precipitation:Detection using heat transfer analysis,and inhibition using chemical additives[J]. Fuel,1997,76(7):607-614.
[3]
Oh K,Ring T A,Deo M D. Asphaltene aggregation in organic solvents[J]. Journal of Colloid and Interface Science,2004,271(1):212-219.
Almutairi A,Bahzad D,Halabi M A. A comparative study on the performance of a catalyst system for the desulfurization of two kinds of atmospheric residues,Kuwait export and eocene residual oils[J]. Catalysis Today,2007,125(3-4):203-210.
[10]
León O,Rogel E,Urbina A,et al. Study of the adsorption of alkyl benzene-derived amphiphiles on asphaltene particles[J]. Langmuir,1999,15:7653-7657.
[11]
Speight J G. The Desulfurization of Heavy Oils and Residua[M]. New York:Marcel Dekker Inc.,2000.
[12]
Kuznicki T,Masliyah J H,Bhattacharjee S. Molecular dynamics study of model molecules resembling asphaltene-like structures in aqueous organic solvent systems[J]. Energy & Fuels,2008,22(4):2379-2389.
[13]
Gray M R,Zhao Y,McKnight C M,et al. Coking of hydroprocessing catalyst by residue fractions of bitumen[J]. Energy & Fuels,1999,13:1037-1045.
[14]
Gawel I,Bociarska D,Biskupski P. Effect of asphaltenes on hydroprocessing of heavy oils and residua[J]. Applied Catalysis A:General,2005,295(1):89-94.
[15]
Torres-Mancera P,Rayo P,Ancheyta J,et al. Catalyst deactivation pattern along a residue hydrotreating bench-scale reactor[J]. Catalysis Today,2014,220-222:153-158.
Que G,Liang W. Thermal conversion of Shengli residue and its constituents[J]. Fuel,1992,71(12):1483-1485.
[20]
Marafi A,Hauser A,Stanislaus A. Deactivation patterns of Mo/Al2O3,Ni-Mo/Al2O3 and Ni-MoP/Al2O3 catalysts in atmospheric residue hydrodesulphurization[J]. Catalysis Today,2007,125(3-4):192-202.
[21]
Callejas M A,Inez M T M,Blasco T,et al. Coke characterisation in aged residue hydrotreating catalysts by solid-state 13C-NMR spectroscopy and temperature-programmed oxidation[J]. Applied Catalysis A:General,2001,218(1-2):181-188.
[22]
Sahoo S K,Ray S S,Singh I D. Structural characterization of coke on spent hydroprocessing catalysts used for processing of vacuum gas oils[J]. Applied Catalysis A:General,2004,278(1):83-91.
[23]
Fonseca A,Zeuthen P,Nagy J B. Assignment of an average chemical structure to catalyst carbon deposits on the basis of quantitative 13C NMR spectra[J]. Fuel,1996,75(12):1413-1423.
[24]
Guichard B,Roy-Auberger M,Devers E,et al. Characterization of aged hydrotreating catalysts. Part I:Coke depositions,study on the chemical nature and environment[J]. Applied Catalysis A:General,2009,367(1-2):1-8.
[25]
Jong Z K P D,Reinalda D,Emeis C A. Coke deposition in trickle-bed reactors during heavy oil processing—Catalytic and physical effects[M]//B. D A G F. Studies in Surface Science and Catalysis. Elsevier,1994:155-166.
[26]
Lewis I. Chemistry of carbonization[J]. Carbon,1982,20(6):519-529.
Yang C H,Du F,Zheng H,et al. Hydroconversion characteristics and kinetics of residue narrow fractions[J]. Fuel,2005,84(6):675-684.
[33]
Thakur D S,Thomas M G. Catalyst deactivation in heavy petroleum and synthetic crude processing:A review[J]. Applied Catalysis,1985,15(2):197-225.
[34]
Tsai M,Chen Y,Li C. Restrictive diffusion under hydrotreating reactions of heavy residue oils in a trickle bed reactor[J]. Ind. Eng. Chem. Res,1993,32(8):1603-1609.
Sanford E C. Mechanism of coke prevention by hydrogen during residuum hydrocracking[J]. American Chemical Society,Division of Petroleum Chemistry,1993,38(2):413-416.
[38]
Heck R H,DiGuiseppi F T. Kinetic effects in resid hydrocracking[J]. Energy & Fuels,1994,8(3):557-560.
[39]
安晟. 渣油加氢处理催化剂焦炭和金属沉积规律的研究[D]. 沈阳:辽宁石油化工大学,2009.
[40]
Stanislaus A,Absi-Halabi M,Al-Doloma K. Effect of phosphorus on the acidity of γ-alumina and on the thermal stability of γ-alumina supported nickel—molybdenum hydrotreating catalysts[J]. Applied Catalysis,1988,39:239-253.
Takahashi T,Higashi H,Kai T. Development of a new hydrodemetallization catalyst for deep desulfurization of atmospheric residue and the effect of reaction temperature on catalyst deactivation[J]. Catalysis Today,2005,104(1):76-85.
[46]
Rocha Junior L C,Ferreira M S,Da Silva Ramos A C. Inhibition of asphaltene precipitation in Brazilian crude oils using new oil soluble amphiphiles[J]. Journal of Petroleum Science and Engineering,2006,51(1-2):26-36.