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催化剂的大分子裂化性能与渣油裂化 被引量:37

RESIDE CRACKING AND BULKY MOLECULE CRACKING ABILITIES OF RFCC CATALYSTS
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摘要 以渣油的催化裂化反应化学为基础 ,详细论述催化剂孔结构及其酸性、基质活性、沸石晶粒度、基质与沸石的相互作用等因素对重油催化裂化催化剂大分子裂化性能的影响。重油特别是渣油的组成特征要求催化剂必须具有合适的大、中、小孔比例及适度的酸性分布 ,以解决大分子烃在沸石催化剂中的活性可接近性问题 ,其中大、中孔尤其是中孔及其活性起着十分关键的作用 ;活性基质不但能大幅度提高催化剂的重油裂化能力 ,且对催化剂的抗重金属、抗碱氮、脱硫、脱氮等性能及产品质量产生重要影响 ;此外 ,针对不同装置催化剂的设计要求 ,提高沸石外表面。 Based on reaction chemistry of resid catalytic cracking,it is discussed extensively how several factors including catalyst texture and acidity,matrix activity,crystallite size of zeolites and interaction of matrix with zeolites affect the ability of bulky molecule cracking of RFCC catalysts.In order to crack bulky molecule in residue effectively,RFCC catalysts should have proper pores of different size,different acidities,especially of large percent mesopore with high activities.Active matrices can not only enhance resid cracking abilities,but also improve other performances such as metal resistance,basic nitrogen resistance and SOx or NOx abatement.Additionally,increasing outer surface area of zeolites and making full use of interaction of matrix with zeolites are also two key factors in catalysts design for different RFCC units.
出处 《炼油设计》 2000年第8期47-51,共5页 Petroleum Refinery Engineering
关键词 渣油 流化催化裂化 催化剂 活性 酸性 RFCC residue,fluid catalytic cracking,catalyst,activity,acidity,review
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  • 1[1]Ritter R E,Young G W.Davison Catalagram,1984,(68):1
  • 2[2]USP 4,021,335.1977
  • 3[3]Savage P E,et al.Ind Eng Chem Pro Des Dev,1985,(24):1169
  • 4[4]Young G W,et al.Paper presented at ACS Natl Mtg,Washington,D C:1983
  • 5[5]Weisz P B,Prater C D.Advances in Catalysis,1954,(6):143
  • 6[6]Nace D M.Ind Eng Chem,1970,9(2):203
  • 7[7]Connor P O',F.van Houtert.Ketjen Catal Symp,Scheveningen,The Netherlands :1986
  • 8[8]Ruckenstein E,Tsai H C.AIChE J,1981,27(4):697
  • 9[9]Connor P O,et al.Fluid Catalytic Cracking Ⅱ:Concepts in Catalyst Design ,M L Occelli(Editor),ACS,Symp Ser 452,1991:319
  • 10[10]Mitchell M M Jr.Fluid Catalytic Cracking:Science and Technology,J S Mag ee and M M Mitchell Jr.(Editor),Studies in Surface Science and Catalysis 76,1993 :298

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