[1] E. S. Johansong, Gas-liquid contacting process., U.S. Pat., 2987465, June 6(1961).[2] M. Marafi, A. Stanislaus, E. Furimsky, Handbook of Spent Hydroprocessing Catalysts, Elsevier, 2017.[3] E.K. Liu, D. Kim, and T.Y. Chan, Ebullated bed process with recycle eductor. U.S. Pat., 5360535(1994).[4] S.M. Sayles, W. B. Livingston, and M. P. Bellinger, Temperature control in an ebullated bed reactor. U.S. Pat., 4913800(1990).[5] M.A. Callejas, M.T. Martinez, Hydrocracking of a Maya residue, kinetics and product yield distributions, Ind. Eng. Chem. Res. 38(1999) 3285-3289.[6] A.R. Ayasse, H. Nagaishia, E.W. Chanb, R. Murray, Gray lumped kinetics of hydrocracking of bitumen, Fuel 76(11) (1997) 1025-1033.[7] H. Puron, P. Arcelus-Arrillaga, K.K. Chin, J.L. Pinilla, B. Fidalgo, M. Millan, Kinetic analysis of vacuum residue hydrocracking in early reaction stages, Fuel 117(A) (2014) 408-414.[8] E. Manek, J. Haydary, Modelling of catalytic hydrocracking and fractionation of refinery vacuum residue, Chem. Pap. 68(12) (2014) 1716-1724.[9] E. Manek, J. Haydary, Hydrocracking of vacuum residue with solid and dispersed phase catalyst:Modeling of sediment formation and hydrodesulfurization, Fuel Process. Technol. 159(2017) 320-327.[10] S. Sanchez, M.A. Rodriguez, J. Ancheyta, Kinetic model for moderate hydrocracking of heavy oils, Ind. Eng. Chem. Res. 44(25) (2005) 9409-9413.[11] Aspen manual, Physical Property Methods and Models, Aspen Technology, Inc., 2001[12] C.A. McKnight, L.P. Hackman, J.R. Grace, A. Macchi, D. Kiel, J. Tyler, Fluid dynamic studies in support of an industrial three-phase fluidized bed hydroprocessor, Can. J. Chem. Eng. 81(3-4) (2003) 338-350.[13] T. Gauthier, J.P. Heraud, S. Kressmann, J. Verstraete, Impact of vaporization in a residue hydroconversion process, Chem. Eng. Sci. 62(18) (2007) 5409-5417.[14] J.M. Schweitzer, S. Kressmann, Ebullated bed reactor modeling for residue conversion, Chem. Eng. Sci. 59(22) (2004) 5637-5645. |