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Distillate FCC and Reside FCC

This web-based training course on Distillate FCC and Reside FCC functionality, administration and development, is available online to all individuals, institutions, corporates and enterprises in India (New Delhi NCR, Bangalore, Chennai, Kolkatta), US, UK, Canada, Australia, Singapore, United Arab Emirates (UAE), China and South Africa. No matter where you are located, you can enroll for any training with us - because all our training sessions are delivered online by live instructors using interactive, intensive learning methods.

Catalytic cracking process developed in the early 1900s is an important procedure involved in the crude oil refinement and processing industry. Fluid catalytic conversion on specifically FCC is one of the most important petroleum refinery processes for converting the high-boiling, high molecular weight hydrocarbon fractions of petroleum crude oil into valuable gasoline, olefinic products and condensates. Originally done through thermal cracking, today, petroleum products cracking is done through catalytic cracking owing to the production of more gasoline with higher octane rings. The FCC units being used in the contemporary industry are all continuous working units operating 24 hours a day for as long as 3 to 5 years only shutting down for routine maintenance. The FCC units are categorized into two broad types of "stacked and "side by side" each having their own characteristics and advantages. Knowledge of fluid catalytic cracking is imperative for professionals dealing with gasoline processing operations in the E&P industry.


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Course Details

In this Distillate FCC and Reside FCC online training course the entire fluid catalytic cracking process is elaborated upon from scratch, taking into consideration the various fundamental and basic concepts of the domain. The course begins with the history of petroleum cracking and goes up-to the current and contemporary technologies involved in catalytic cracking across the E&P industry. Completing this Fluid Catalytic Cracking online training course, the trainees will be able to effectively manage the entire FCC processing unit and provide support and improvement in the petroleum cracking process. Considering the importance of the work, the training focuses on the applicative understanding of the subject through hands-on practical lab sessions with trainer support. Although this course is taught from scratch, it is advised that the trainees have some basic familiarity with the petroleum industry to successfully complete this course.


MAIN REACTIONS INVOLVED IN CATALYTIC CRACKING

  • Cracking
  • Isomerisation
  • De-hydrogenenation
  • Hydrogen transfer
  • Cyclization
  • Condensation
  • Alkylation and de-alkylation

FLUID CATALYTIC CRACKING

  • Introduction of zeolite catalyst
  • Introduction of ultra stable Y-zeolite
  • Switch over from bed cracking to riser cracking
  • Introduction of large number of additives for boosting of gasoline octane/yield
  • Sox control
  • Nickel and vanadium passivation

FEED STOCK

  • Typical feedstocks
  • Heavy stream feedstocks
  • Major contaminant in the feed includes carbon residue and metals.
  • While FCC process feed containing up to 4% Conradson carbon MSCC can process all Kinds of feed

Process Steps

  • Reaction
  • Regeneration
  • Fractionation

Typical operating parameter of FCC

  • Raw oil feed at heater inlet
  • Furnace outlet temperature
  • Reactor feed temperature
  • Reactor Vapor temperature

MODIFIED CATALYTIC CRACKING PROCESSES

  • Resid FCC (RFCC) Process
  • Deep Catalytic Cracking (DCC)
  • Milli Second Catalytic cracking (MSCC) Process
  • Petro FCC Process
  • Maximizing Propylene Output in FCC

HYDROCRACKING

  • Comparison of Catalytic Cracking and Hydrocracking
  • Recent Developments in Hydrocracking
  • Hydro-treatment & Hydrocracking Catalyst
  • CATALYST DEACTIVATION

    CATALYST REGENERATION


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