سیویلیکا را در شبکه های اجتماعی دنبال نمایید.

Hydrocracking Lumped Kinetic Model with Catalyst Deactivation in Arak Refinery Hydrocracker Unit

Publish Year: 1390
Type: Journal paper
Language: English
View: 123
این Paper فقط به صورت چکیده توسط دبیرخانه ارسال شده است و فایل کامل قابل دریافت نیست. برای یافتن Papers دارای فایل کامل، از بخش [جستجوی مقالات فارسی] اقدام فرمایید.

Export:

Link to this Paper:

Document National Code:

JR_JPSTR-1-1_004

Index date: 20 December 2023

Hydrocracking Lumped Kinetic Model with Catalyst Deactivation in Arak Refinery Hydrocracker Unit abstract

A kinetic model of a fixed bed tubular reactor incorporating catalyst deactivation was developed for the ISOMAX unit of Arak refinery. The kinetic parameters for the hydrocracking reactions over the commercial catalyst were determined using initial activity plant data i.e. when the catalyst is fresh. Catalyst deactivation was then taken into account by means of deactivation function based on plant data. The catalyst deactivation function is defined in terms of normalized time (BPP) of operation. Effect of catalyst deactivation on the product yield has been investigated. Steady state material and energy balances were then developed for an extended four lumped kinetic network. To determine the effect of reaction types on the rate, we calculate frequency factor for each individual bed with constant activation energy and heat of reaction. Furthermore, we calculate the frequency factor for individual beds, for the first one to estimate the rate of reactions in the different beds. The results show that the reactions in the first and second bed are faster than those in the 3rd and 4th beds. The comparison between model conversion and experimental conversion of the unit indicates that the model is capable of predicting product yield with an error of less than 5%.

Hydrocracking Lumped Kinetic Model with Catalyst Deactivation in Arak Refinery Hydrocracker Unit Keywords:

Hydrocracking Lumped Kinetic Model with Catalyst Deactivation in Arak Refinery Hydrocracker Unit authors

A. Moghadassi

Department of Chemical Engineering, Faculty of Engineering, Arak University, Arak, Iran

N. Amini

Department of Chemical Engineering, Faculty of Engineering, Arak University, Arak, Iran

O. Fadavi

Center of R&D, ShazandArak Oil Refinery, Arak, Iran

M. Bahmani

Department of Chemical Engineering, Tarbiat Moalem University, Tehran, Iran

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 :
Weekman V.W.Jr., “Lumps, models and kinetics in practice”, Chem. Eng. ...
Weekman V.W.Jr. and Nace D.M., “Kinetics of Catalytic Cracking Selectivity ...
Koseoglu R.O. and Philips C.R., “Kinetic model for the noncatalytic ...
Ramdoss P.K. and Tarrer R.C., “High temperature liquification of waste ...
Liguras D.K. and Allen D.T., “Structural models for catalytic cracking ...
Zarkesh J., Akbarnejad M., Badakhshan A. and Khorasheh F., “Kinetic ...
Khorasheh F., Zainali H., Chan E.C. and Gray M.R., “Kinetic ...
Cicarelli P., Astarita G. and Gallifuoco A., “Continuous Kinetics Lumping ...
Laxminarasimhan C.S., Verma R.P. and Ramachandran P.A., “Continuous Lumping Model ...
Froment G.F. and Bischoff K.B., “Chemical Reactor analysis and Design”, ...
Hughes R., “Deactivation of Catalysts,” ۱۸۴, Academic Press, London, ۱۹۸۴ ...
Moghadassi A.R., Amini N., Fadavi O. and Bahmani M., “Investigation ...
Yan T.Y., “Dynamics of a trickle bed hydrocracker with a ...
Qader S.A. and Hill G.R., “Coal liquefaction in a slurry ...
El-Kady F.Y., “Hydrocracking of Vacuum Distillate Fraction over Bifunctional Molybdenum ...
Wojciechowski B.W., “A Theoretical treatment of catalyst decay”, Can. J. ...
نمایش کامل مراجع