Modeling and Optimization of a Semi Regenerative Catalytic Reforming of Naphtha in the Presence of Catalyst Coking

Publish Year: 1399
نوع سند: مقاله ژورنالی
زبان: English
View: 56

This Paper With 9 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_JPSTR-10-2_004

تاریخ نمایه سازی: 29 آذر 1402

Abstract:

Catalytic naphtha reforming is practiced extensively in petroleum refineries and petrochemical industries to convert low-octane naphtha into high-octane gasoline. Moreover, this process is an important source of hydrogen and aromatics obtained as side products. Bifunctional Pt-catalysts used in reforming are deactivated by coking during its industrial operation. This results in a reduction of the yield and octane number. In this paper, modeling and optimization of a semi regenerative catalytic reforming of naphtha have been carried out by considering catalyst deactivation and complex multicomponent composition of a hydrocarbon mixture. Furthermore, a detailed coke formation mechanism was described. In addition, operating parameters (yield, octane number, and activity) for different catalysts were predicted and optimized. In addition, the analysis was extended to study the reactor configuration features and their influence on the process parameters. Finally, economic values were calculated, and the benefits of process improvement were demonstrated.

Authors

Inna Pchelintseva

National Research Tomsk Polytechnic University, Tomsk, Russia

Emilia Ivanchina

National Research Tomsk Polytechnic University, Tomsk, Russia

Ekaterina Chernyakova

National Research Tomsk Polytechnic University, Tomsk, Russia

Dmitry S. Poluboyartsev

Joint Stock Company, Tomsk Oil and Gas Research and Design Institute, Tomsk, Russia

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • Rahimpour M R, Jafari M, Iranshah D, (۲۰۱۳) Progress in ...
  • Nakamura D. (۲۰۰۴) Worldwide refining capacity creeps ahead in, Oil ...
  • Aitani A (۲۰۰۶) Catalytic naphtha reforming (۱st ed.),” Encyclopedia of ...
  • Antos G J, Aitani AM (۲۰۰۴) Catalytic Naphtha Reforming (۲nd ...
  • Sharikov YuV, Petrov P A (۲۰۰۷) Universal model for catalytic ...
  • Lei Z, Li C, Chen B, Erqiang W, Zhang J ...
  • Borutskii P N, Kozlova E G, Podkletnova N M, Gil’Chenok ...
  • Han M, Li X, Lin S (۲۰۰۱) Intrinsic kinetics of ...
  • Martinis J (۲۰۰۴) Single event kinetic modeling of solid acid ...
  • Ganji H, Ahari JS, Farshi A, Kakavand M (۲۰۰۴) Modelling ...
  • Baur R, Taylor R, Krishna R (۲۰۰۱) Dynamic behavior of ...
  • Froment G F (۲۰۰۱) Modeling of catalyst deactivation, Applied Catalysis ...
  • Aguayo A, Gayubo A, Atutxa A, Olazar M, Bilbao J ...
  • Ostrovskii NM (۲۰۰۵) Problems in the study of catalyst deactivation ...
  • Romanovskiy RV, Frantsina EV, Youriev EM, Ivashkina EN, Ivanchina ED, ...
  • Kravtsov AV, Ivanchina ED, Ivashkina EN, Kostenko AV, Yuriev EM, ...
  • Ivashkina EN, Frantsina EV, Romanovsky RV, Dolganov IM, Ivanchina ED, ...
  • Fetisova VA, Ivashkina EN, Ivanchina ED, Kravtsov A (۲۰۰۹) Mathematical ...
  • Ancheyta J, Villafuerte-Macias E (۲۰۰۰) Kinetic modeling of naphtha catalytic ...
  • Stijepovic MZ, Ostojic AV, Milenkovic I, Linke P (۲۰۰۹) Development ...
  • Rodríguez MA, Ancheyta J (۲۰۱۱) Detailed description of kinetic and ...
  • Wei W, Bennet CA, Tanaka R, Hou G, Klein MT ...
  • Arani HM, Shirvani M, Safdarian K, Dorostkar E (۲۰۰۹) Lumping ...
  • Belyi AS (۲۰۰۵) Reforming catalysts of the PR family: scientific ...
  • Noskov AS (۲۰۰۵) Two centuries of mathematical modelling, Report at ...
  • Hou W, Su H, Hu Y, Chu J (۲۰۰۶) Modeling, ...
  • Lid T, Skogestad S (۲۰۰۸) Data reconciliation and optimal operation ...
  • Taskar U, Riggs J B (۱۹۹۷) Modeling and optimization of ...
  • Hongjun Z, Mingliang S, Huixin W, Zeji L, Hongbo J ...
  • Siddiqui SA, Ali MA (۲۰۰۶) Parametric study of catalytic reforming ...
  • Padmavathi G, Chaudhuri KK (۱۹۹۷) Modelling and simulation of commercial ...
  • Shanying HU, Zhu XX (۲۰۰۲) Molecular modeling and optimization for ...
  • Ostrovskii NM (۲۰۰۵) Problems in the study of catalyst deactivation ...
  • Rahimpour MR (۲۰۰۶) Operability of an industrial catalytic naphtha reformer ...
  • Ostrovskii NM (۲۰۰۶) General equation for linear mechanisms of catalyst ...
  • Dehghani O, Gholipour M R, Shokrollahi M S, Yancheshmeh S, ...
  • Kern C, Jess A (۲۰۰۵) Regeneration of coked catalysts – ...
  • Gyngazova MS, Kravtsov AV, Ivanchina ED, Korolenko MV, Chekantsev NV ...
  • Zagoruiko A N, Belyi AS, Smolikov M D, Noskov AS ...
  • Davis SM, Laura F, Somorjai GAJ (۱۹۸۲) Catalysis, ۷۷, ۲: ...
  • Dolganova IO, Dolganov IM, Ivashkina EN, Ivanchina ED Romanovskiy RV ...
  • Gyngazova M S, Kravtsov A V, Ivanchina E D, Korolenko ...
  • Yakupova IV, Chernyakova ES, Ivanchina ED, Vinidiktova MV, Seytenova GZ ...
  • Yakupova IV, Chernjakova (Sharova) ES, Ivanchina Je D, Belyj AS, ...
  • Yakupova IV, Ivanchina ED, Sharova ES (۲۰۱۴) Mathematical modelling method ...
  • Yakupova IV, Ivanchina ED, Sharova ES, Syskina AA (۲۰۱۴) Computer ...
  • Pchelintseva IV (۲۰۱۹) Regularities of catalytic conversion of hydrocarbons in ...
  • نمایش کامل مراجع