108
60. Leuenberger EL (1985) Oil and Gas J, pp. 125
61. Rawlence DJ, Gosling K (1991) Irreversible deactivation of FCC catalysts. Catal Today
11:47–59
62. Keyworth DA, Turner WJ, Reid TA (1988), Oil and Gas J, pp. 65
63. Beyerlein RA, Tamborski GA, Marshall CL, Meyers BL, Hall JB, Higgins BJ (1991) In:
Occelli ML (ed) ACS symposium series 452, chapter 8. ACS, Washington, DC, p 109
64. O’Connor P, Gevers AW, Humphries A, Gerritsen LA, Desai PH (1991) In: Occelli ML (ed)
ACS symposium series 452, Chapter 8. ACS, Washington, DC, p 318
65. Stokes OM (1988) Grace Davison Catalagram no. 77
66. Dale GH, McKay DL (Sept. 1977) Passivate Metals in FCC Feeds. Hydrocarb Process
56(9):97–102
67. Zhao X, Peters AW, Weatherbee GW (1997) Nitrogen chemistry and NOx control in a fluid
catalytic cracking regenerator. Ind Eng Chem Res 36:4535–4542
68. Pettersen FA, Blanton WA (1986) Paper 37e. AICHE, summer national meeting, Boston, MA
69. Ono Y, Yashima K (2000) Science and engineering of zeolite. Kodansha Sci 7:11
70. Sadeghbeigi R (2000) Fluid catalytic cracking handbook, 2nd edn. Gulf Professional
Publishing, Houston, TX, pp 95–97
71. Rheaume L, Ritter RE (1988) ACS symposium series 375 Ocelli MO, 9 edn, pp 146–161
72. Siddiqui MAB, Aitani AM (2007) FCC gasoline sulfur reduction by additives: a review. Pet
Sci Technol 25:299–313
73. Alkemade U, Dougan T (1996) New catalytic technology for FCC gasoline reduction without
yield penalty. Stud Surf Sci Catal 100:303–311
74. Alkemade U, Dougan T (1996) New catalytic technology for FCC gasoline reduction without
yield penalty. In: Absi-Halabi M (ed) Catalysts in petroleum refining and petrochemical industries. Elsevier, Amsterdam, pp 303–315
75. Purnell S, Hunt D, Leach D (2002) Catalytic reduction of sulfur and olefins in the
FCCU. Presented at the NPRA annual meeting, San Antonio, TX
76. Wormsbecher R, Kim G (1994), Sulfur reduction in FCC gasoline, WR Grace and Co Conn,
US5376608
77. Wormsbecher R, Kim G (1996), Sulfur reduction in FCC gasoline, WR Grace and Co Conn,
US5525210
78. Zhao X, Bhore N, Cheng W, Kumar R, Roberie T, Ziebarth M (2001), Gasoline sulfur reduction in fluid catalytic cracking, WO0121732
79. Myrstad T, Boe B, Rytter E, Engan H, Corma A, Rey F (1999), Reduction of sulphur content
in FCC-naphtha US6497811
80. Andersson P, Pirjamali M, Jaras S, Kizling M (1999) Cracking catalyst additives for sulfur
removal from FCC gasoline. Catal Today 53:565–573
81. Shan H, Li C, Yuan M, Yang H (2002) Preprints 47:55–57
82. Gokak DT, Thota C, Rai P, Jose N, Viswanathan PS (2017). Sulphur reduction catalyst additive
composition in fluid catalytic cracking and method of preparation thereof, US9533928
83. Zhao X, Cheng WC, Rudesill JA (2002) AM-02-53 presented at the NPRA annual meeting,
San Antonio, TX
84. Pumell S (2003) A comprehensive approach to catalyst design for residue applications. Annual
meeting, 23–25 Mar, San Antonio, TX
85. Gates BC, Katzer JR, Schuit GG (1979) Chemistry of catalytic processes. McGraw-Hill,
New York, NY
86. Venuto PB, Habib ET (1979) Fluid catalytic cracking with zeolite catalysts. Marcel Dekker,
Inc., New York, NY
87. Koermer G, Deeba M (1991) The chemistry of FCC coke formation. Catal Rep 7(2)
88. Ajay K, Prabha D, Supriyo M, Pintu M, Chiranjeevi T (2020) Propylene maximization studies.
Unpublished data
89. Mohan Prabhu K (2019) Catalysis basics & designing of FCC catalysts and additives, invited
talk at BPCL
90. Alex C (2019) Pulikottil, Recent developments in FCC catalysts, invited talk at National
Catalysis work shop held at IIT Delhi
A. R. Khande et al.
60. Leuenberger EL (1985) Oil and Gas J, pp. 125
61. Rawlence DJ, Gosling K (1991) Irreversible deactivation of FCC catalysts. Catal Today
11:47–59
62. Keyworth DA, Turner WJ, Reid TA (1988), Oil and Gas J, pp. 65
63. Beyerlein RA, Tamborski GA, Marshall CL, Meyers BL, Hall JB, Higgins BJ (1991) In:
Occelli ML (ed) ACS symposium series 452, chapter 8. ACS, Washington, DC, p 109
64. O’Connor P, Gevers AW, Humphries A, Gerritsen LA, Desai PH (1991) In: Occelli ML (ed)
ACS symposium series 452, Chapter 8. ACS, Washington, DC, p 318
65. Stokes OM (1988) Grace Davison Catalagram no. 77
66. Dale GH, McKay DL (Sept. 1977) Passivate Metals in FCC Feeds. Hydrocarb Process
56(9):97–102
67. Zhao X, Peters AW, Weatherbee GW (1997) Nitrogen chemistry and NOx control in a fluid
catalytic cracking regenerator. Ind Eng Chem Res 36:4535–4542
68. Pettersen FA, Blanton WA (1986) Paper 37e. AICHE, summer national meeting, Boston, MA
69. Ono Y, Yashima K (2000) Science and engineering of zeolite. Kodansha Sci 7:11
70. Sadeghbeigi R (2000) Fluid catalytic cracking handbook, 2nd edn. Gulf Professional
Publishing, Houston, TX, pp 95–97
71. Rheaume L, Ritter RE (1988) ACS symposium series 375 Ocelli MO, 9 edn, pp 146–161
72. Siddiqui MAB, Aitani AM (2007) FCC gasoline sulfur reduction by additives: a review. Pet
Sci Technol 25:299–313
73. Alkemade U, Dougan T (1996) New catalytic technology for FCC gasoline reduction without
yield penalty. Stud Surf Sci Catal 100:303–311
74. Alkemade U, Dougan T (1996) New catalytic technology for FCC gasoline reduction without
yield penalty. In: Absi-Halabi M (ed) Catalysts in petroleum refining and petrochemical industries. Elsevier, Amsterdam, pp 303–315
75. Purnell S, Hunt D, Leach D (2002) Catalytic reduction of sulfur and olefins in the
FCCU. Presented at the NPRA annual meeting, San Antonio, TX
76. Wormsbecher R, Kim G (1994), Sulfur reduction in FCC gasoline, WR Grace and Co Conn,
US5376608
77. Wormsbecher R, Kim G (1996), Sulfur reduction in FCC gasoline, WR Grace and Co Conn,
US5525210
78. Zhao X, Bhore N, Cheng W, Kumar R, Roberie T, Ziebarth M (2001), Gasoline sulfur reduction in fluid catalytic cracking, WO0121732
79. Myrstad T, Boe B, Rytter E, Engan H, Corma A, Rey F (1999), Reduction of sulphur content
in FCC-naphtha US6497811
80. Andersson P, Pirjamali M, Jaras S, Kizling M (1999) Cracking catalyst additives for sulfur
removal from FCC gasoline. Catal Today 53:565–573
81. Shan H, Li C, Yuan M, Yang H (2002) Preprints 47:55–57
82. Gokak DT, Thota C, Rai P, Jose N, Viswanathan PS (2017). Sulphur reduction catalyst additive
composition in fluid catalytic cracking and method of preparation thereof, US9533928
83. Zhao X, Cheng WC, Rudesill JA (2002) AM-02-53 presented at the NPRA annual meeting,
San Antonio, TX
84. Pumell S (2003) A comprehensive approach to catalyst design for residue applications. Annual
meeting, 23–25 Mar, San Antonio, TX
85. Gates BC, Katzer JR, Schuit GG (1979) Chemistry of catalytic processes. McGraw-Hill,
New York, NY
86. Venuto PB, Habib ET (1979) Fluid catalytic cracking with zeolite catalysts. Marcel Dekker,
Inc., New York, NY
87. Koermer G, Deeba M (1991) The chemistry of FCC coke formation. Catal Rep 7(2)
88. Ajay K, Prabha D, Supriyo M, Pintu M, Chiranjeevi T (2020) Propylene maximization studies.
Unpublished data
89. Mohan Prabhu K (2019) Catalysis basics & designing of FCC catalysts and additives, invited
talk at BPCL
90. Alex C (2019) Pulikottil, Recent developments in FCC catalysts, invited talk at National
Catalysis work shop held at IIT Delhi
A. R. Khande et al.
