Simulator development of industrial process of normal alkanes c9-c14 dehydrogenation using methods of quantum chemistry; Petroleum and Coal; Vol. 52, № 2
| Parent link: | Petroleum and Coal Vol. 52, № 2.— 2010.— P. 129-138 |
|---|---|
| Kolejni autorzy: | Frantsina E. V., Afanasjeva J. I., Ivanchina E. D. Emilia Dmitrievna, Ivashkina E. N., Kravtsov А. V. Anatoly Vasilyevich, Zuev V. A., Kozlov I. A., Milishnikov A. V. |
| Streszczenie: | Based on mathematical approach method, computer modeling system was applied to higher alkanes dehydrogenation process optimization. Use of the system allows determination of the optimal technological characteristics; calculation of process characteristics taking into account feed composition,technological conditions and type of catalyst В фонде НТБ ТПУ отсутствует |
| Język: | angielski |
| Wydane: |
2010
|
| Hasła przedmiotowe: | |
| Format: | Rozdział |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=598282 |
Podobne zapisy
Raising the efficiency of higher alkanes dehydrogenation process; IFOST 2012; Vol. 1
Wydane: (2012)
Wydane: (2012)
Kinetic analysis of monomolecular cracking of normal Alkanes (C4single bondC6) over Brønsted Acid site of Zeolitic type catalyst with energetic evaluation of transition states using Quantum-Chemical modeling; Fuel Communications; Vol. 19, iss. 10
od: Forutan Gh. S. Ghazvini Saba
Wydane: (2024)
od: Forutan Gh. S. Ghazvini Saba
Wydane: (2024)
Kinetic Analysis of Monomolecular Cracking of Normal Alkanes (C4–C6) over Brønsted Acid Site of Zeolitic Type Catalyst with Energetic Evaluation of Transition States Using Quantum-Chemical Modeling; Russian Journal of Applied Chemistry; Vol. 98, iss. 5
od: Forutan K. S. Kazvini Saba
Wydane: (2025)
od: Forutan K. S. Kazvini Saba
Wydane: (2025)
Simulation of industrial MTBE production in reactive distillation column using ASPEN HYSYS; Petroleum and Coal; Vol. 60, iss. 1
od: Mityanina O. E. Olga Evgenyevna
Wydane: (2018)
od: Mityanina O. E. Olga Evgenyevna
Wydane: (2018)
Influence of flowrate and composition of the alkanes dehydrogenation process feedstock on by-products concentration in the linear alkylbenzene sulfonic acid manufacturing technology; Catalysis Today; Vol. 378
Wydane: (2021)
Wydane: (2021)
Acidic and Catalytic Properties of Zeolites Modified by Zinc in the Conversion Process of Lower C3-C4 Alkanes; Catalysts; Vol. 9, Iss. 5
Wydane: (2019)
Wydane: (2019)
Quantum Game Simulation
od: Alonso-Sanz, Ramon
Wydane: (2019)
od: Alonso-Sanz, Ramon
Wydane: (2019)
Comparative analysis of catalyst operation in the process of higher paraffins dehydrogenation at different technological modes using mathematical model; Petroleum Science and Technology; Vol. 36, № 20
Wydane: (2018)
Wydane: (2018)
Digital media processing: DSP algorithms using C
od: Hazarathaiah Malepati
Wydane: (Amsterdam, Elsevier, 2010)
od: Hazarathaiah Malepati
Wydane: (Amsterdam, Elsevier, 2010)
Decreasing the hydrogen-rich gas circulation ratio and service life extension of the C9-C14 alkanes dehydrogenation catalyst; Chemical Engineering Journal; Vol. 282: The XXI International Conference on Chemical Reactors CHEMREACTOR-21, 15 December 2015, Amsterdam
Wydane: (2015)
Wydane: (2015)
Quantum Chemistry Kinetic Analysis for Cracking Reactions of Normal and Iso Hexane Based on Transition State Energetic Evaluation for Production of n-C4 and i-C4 in FCC Process; Mechanisms of Catalytic Reactions (MCR-XII)
od: Foroutan G. S. Ghazvini Saba
Wydane: (2024)
od: Foroutan G. S. Ghazvini Saba
Wydane: (2024)
Studying the Regularities of Atmospheric Oil Distillates Catalytic Dewaxing Process Using the Method of Mathematical Modelling; Petroleum and Coal; Vol. 62, iss. 3
Wydane: (2020)
Wydane: (2020)
Non-stationary mathematical model of industrial diesel fuel hydrotreating process; Petroleum and Coal; Vol. 60, iss. 1
od: Tataurshchikov A. A. Anton Andreevich
Wydane: (2018)
od: Tataurshchikov A. A. Anton Andreevich
Wydane: (2018)
Frame-Production Model of Petroleum Feedstocks Catalytic Processing for the Representation of Knowledge about Process; Petroleum and Coal; Vol. 63, iss. 3
Wydane: (2021)
Wydane: (2021)
Optimization of Higher Alkanes Dehydrogenation Process under Conditions of Decreased Hydrogen Containing Gas Flow with Using Mathematical Modeling; Procedia Engineering; Vol. 113 : Oil and Gas Engineering (OGE-2015), Omsk, 25-30 April 2015
Wydane: (2015)
Wydane: (2015)
Mathematical simulation of low-temperature gas separation; Petroleum and Coal; Vol. 59, iss. 2
Wydane: (2016)
Wydane: (2016)
Oxidative modification of petroleum resins and reception of emulsions with industrial oils; Petroleum and Coal; Vol. 58, iss. 5
Wydane: (2016)
Wydane: (2016)
Thermodynamic analysis of the reactions of sulphur containing compounds in the process of diesel fractions hydrodesulphurization on the base of quantum-chemical calculations; Petroleum and Coal; Vol. 61, iss. 1
Wydane: (2019)
Wydane: (2019)
Structure of network simulator for training and retraining of operators of controlled technological objects of oil and gas industry; Petroleum and Coal; Vol. 57, iss. 6
Wydane: (2015)
Wydane: (2015)
Analogue Quantum Simulation A New Instrument for Scientific Understanding /
od: Hangleiter, Dominik, i wsp.
Wydane: (2022)
od: Hangleiter, Dominik, i wsp.
Wydane: (2022)
Forecasting the catalyst activity of diesel fuel dewaxing at the industrial unit using the mathematical model; Petroleum and Coal; Vol. 59, iss. 5
Wydane: (2017)
Wydane: (2017)
Catalytic activity of Ga-containing zeolite catalysts in the coupled reforming of methanol and C₃-C₄ alkanes; Theoretical Foundations of Chemical Engineering; Vol. 42, iss. 5
od: Safronova S. S.
Wydane: (2008)
od: Safronova S. S.
Wydane: (2008)
Non-Stationary Computer-Aided Simulation of gasoline Fraction Pyrolysis; Petroleum and Coal; Vol. 63, iss. 3
od: Bunaev A. A. Ayur Alekseevich
Wydane: (2021)
od: Bunaev A. A. Ayur Alekseevich
Wydane: (2021)
Industrial operation analysis of Pt-Re reforming catalyst at the industrial unit by predictive modelling method; Petroleum and Coal; Vol. 60, iss. 3
Wydane: (2018)
Wydane: (2018)
Prediction of the Catalyst Activity in the Process of Vacuum Gas Oil Hydrocracking Using a Mathematical Model; Petroleum and Coal; Vol. 66, iss. 4
od: Belinskaya N. S. Natalia Sergeevna
Wydane: (2024)
od: Belinskaya N. S. Natalia Sergeevna
Wydane: (2024)
Modification of Aromatic Petroleum Resin; Petroleum and Coal; Vol. 58, iss. 5
Wydane: (2016)
Wydane: (2016)
Manganese Catalysts to Obtain Olefins from C[1]-C[4] Alkanes; Procedia Chemistry; Vol. 15 : Chemistry and Chemical Engineering in XXI century (CCE 2015)
Wydane: (2015)
Wydane: (2015)
Handbook of Petroleum Processing
Wydane: (2015)
Wydane: (2015)
Using hydrate foam to extinguish petroleum product tank fires; Journal of Loss Prevention in the Process Industries; Vol. 98
Wydane: (2025)
Wydane: (2025)
Characteristics of the process of coal-water fuels spraying with additives of liquid waste from industrial rubber goods processing; Chemical and Petroleum Engineering; Vol. 57, iss. 1-2
od: Gvozdyakov D. V. Dmitry Vasilievich
Wydane: (2021)
od: Gvozdyakov D. V. Dmitry Vasilievich
Wydane: (2021)
Computer simulator for student training to effective exploitation the catalytic cracking unit; Petroleum and Coal; Vol. 58, iss. 1
Wydane: (2016)
Wydane: (2016)
Application of numerical signal differentiation methods to determine statio-narity of A process; Petroleum and Coal; Vol. 59, iss. 2
Wydane: (2018)
Wydane: (2018)
Paint materials based on petroleum resins; Petroleum and Coal; Vol. 60, iss. 4
od: Bondaletov V. G. Vladimir Grigoryevich
Wydane: (2018)
od: Bondaletov V. G. Vladimir Grigoryevich
Wydane: (2018)
Modelling of regeneration process of zeolite-containing cracking catalysts; Petroleum and Coal; Vol. 60, iss. 6
Wydane: (2018)
Wydane: (2018)
Analysis of droplets formation process in water-in-oil emulsions; Petroleum and Coal; Vol. 58, iss. 7
Wydane: (2016)
Wydane: (2016)
Mathematical modeling of the process catalytic isomerization of light naphtha; Petroleum and Coal; Vol. 61, iss. 2
Wydane: (2019)
Wydane: (2019)
Identification of Regularities of Vacuum Gas Oil Hydrocracking Process; Petroleum and Coal; Vol. 62, iss. 2
Wydane: (2020)
Wydane: (2020)
Advantages of Combining Different Processes for Diesel Fuel Desulfurization; Petroleum and Coal; Vol. 65, iss. 1
Wydane: (2023)
Wydane: (2023)
Intensification of the dehydrogenation process of different hydrocarbons in a catalytic membrane reactor; Chemical Engineering and Processing: Process Intensification; Vol. 155
od: Shelepova E. V.
Wydane: (2020)
od: Shelepova E. V.
Wydane: (2020)
Arylation of alkanes using arendiazonium tozylates; Химия и химическая технология в XXI веке
od: Nikiforova K. A. Ksenia Alekseevna
Wydane: (2019)
od: Nikiforova K. A. Ksenia Alekseevna
Wydane: (2019)
Podobne zapisy
-
Raising the efficiency of higher alkanes dehydrogenation process; IFOST 2012; Vol. 1
Wydane: (2012) -
Kinetic analysis of monomolecular cracking of normal Alkanes (C4single bondC6) over Brønsted Acid site of Zeolitic type catalyst with energetic evaluation of transition states using Quantum-Chemical modeling; Fuel Communications; Vol. 19, iss. 10
od: Forutan Gh. S. Ghazvini Saba
Wydane: (2024) -
Kinetic Analysis of Monomolecular Cracking of Normal Alkanes (C4–C6) over Brønsted Acid Site of Zeolitic Type Catalyst with Energetic Evaluation of Transition States Using Quantum-Chemical Modeling; Russian Journal of Applied Chemistry; Vol. 98, iss. 5
od: Forutan K. S. Kazvini Saba
Wydane: (2025) -
Simulation of industrial MTBE production in reactive distillation column using ASPEN HYSYS; Petroleum and Coal; Vol. 60, iss. 1
od: Mityanina O. E. Olga Evgenyevna
Wydane: (2018) -
Influence of flowrate and composition of the alkanes dehydrogenation process feedstock on by-products concentration in the linear alkylbenzene sulfonic acid manufacturing technology; Catalysis Today; Vol. 378
Wydane: (2021)