Literatura académica sobre el tema "Diesel hydrotreating unit"
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Artículos de revistas sobre el tema "Diesel hydrotreating unit"
Samoilov, N. A. "Mathematical Modeling of Diesel Fuel Hydrotreating". Oil and Gas Technologies 130, n.º 5 (2020): 18–25. http://dx.doi.org/10.32935/1815-2600-2020-130-5-18-25.
Texto completoTian, Ruijie, Weibin Xu, Yongchao Li, Jun Tian y Le Wu. "Energy Consumption Analysis of a Diesel Hydrotreating Unit Using an Aspen Simulation". Processes 10, n.º 10 (11 de octubre de 2022): 2055. http://dx.doi.org/10.3390/pr10102055.
Texto completoKorovnikova, Natalia, Volodymyr Oliinik y Oleksandr Dubyna. "Research of Pyrophoric Compounds in Order to Reduce their Hazard". Materials Science Forum 1038 (13 de julio de 2021): 454–59. http://dx.doi.org/10.4028/www.scientific.net/msf.1038.454.
Texto completoTUKTIN, B. T., A. S. TENIZBAEVA, G. T. SEIDILDA y D. E. SHOGANBEK. "HYDROTREATMENT OF DIESEL FRACTIONS ON A MODIFIED ALUMINUM-NICKEL-MOLYBDENUM CATALYST KGO-12". Neft i gaz 1, n.º 121 (15 de abril de 2020): 86–94. http://dx.doi.org/10.37878/2708-0080/2021-1.07.
Texto completoSamoilov, Naum. "The specifics of mathematical modeling complex multicomponent chemical processes". Industrial processes and technologies 1, n.º 1 (2021): 37–52. http://dx.doi.org/10.37816/2713-0789-2021-1-1-37-52.
Texto completoSerdyukova, E. Yu, Yu V. Kozhevnikova, D. A. Nikolaeva y A. A. Perminova. "Exploring the Possibility of Engagement in the Raw Materials of Hydrotreating the Diesel Fraction of Biocomponents". Chemistry and Technology of Fuels and Oils 637, n.º 3 (2023): 3–7. http://dx.doi.org/10.32935/0023-1169-2023-637-3-3-7.
Texto completoTarusov, D. V., V. K. Slakaev, G. S. Mutovkin, V. E. Znaemov, A. N. Karpov, N. Y. Bashkirtseva, A. V. Tarasov y D. V. Borisanov. "Changing the properties of narrow fractions in the process of hydrotreating light coking gas oil". World of petroleum products 04 (2022): 36–41. http://dx.doi.org/10.32758/2782-3040-2022-0-4-36-41.
Texto completoBandyopadhyay, Rajarshi, Ole Frej Alkilde y Sreedevi Upadhyayula. "Applying pinch and exergy analysis for energy efficient design of diesel hydrotreating unit". Journal of Cleaner Production 232 (septiembre de 2019): 337–49. http://dx.doi.org/10.1016/j.jclepro.2019.05.277.
Texto completoMurali, C., R. K. Voolapalli, N. Ravichander, D. T. Gokak y N. V. Choudary. "Trickle bed reactor model to simulate the performance of commercial diesel hydrotreating unit". Fuel 86, n.º 7-8 (mayo de 2007): 1176–84. http://dx.doi.org/10.1016/j.fuel.2006.09.019.
Texto completoDemin, A. M., A. P. Naumenko, O. A. Reutova y A. I. Odinets. "Economic evaluation of use of heat exchange equipment diagnostic software at diesel hydrotreating unit". Journal of Physics: Conference Series 1260 (agosto de 2019): 032009. http://dx.doi.org/10.1088/1742-6596/1260/3/032009.
Texto completoTesis sobre el tema "Diesel hydrotreating unit"
Bandyopadhyay, Rajarshi. "Comprehensive study on industrial diesel hydrotreating unit : new insights on design and optimization". Thesis, IIT Delhi, 2019. http://eprint.iitd.ac.in:80//handle/2074/8053.
Texto completoStrutzel, Flávio Augusto Martins. "Controle IHMPC de um processo industrial de hidrotratamento de diesel". Universidade de São Paulo, 2014. http://www.teses.usp.br/teses/disponiveis/3/3137/tde-24062014-102335/.
Texto completoThis work addresses the control and optimization problem of industrial diesel hydrotreating units (UHDT) by MPC controllers (Model Predictive Control). It is presented a brief historical of conventional MPC controllers and infinite horizon controllers (IHMPC), as well as a brief description of the Diesel Hydrotreating process and the particulars of the application of process control for this type of industrial plant. It was then generated, step by step, one algorithm that summarized and aggregated control characteristics of various MPC controllers available in the open literature, in particular those that have been developed over the past few years by USPs laboratory of simulation and control of (LSCP), in order to obtain an algorithm suitable for solving the addressed control problem. In a computational simulation environment, the resulting algorithm allowed to simultaneously control and optimize continuous processes, being able to robustly stabilize the industrial plant and at the same time increase the profitability of its operation. For this purpose, an \"objective function\" was developed which increased the economic conversion of crude feed to hydrotreated product and minimized the consumption of raw materials, and this correlation was added to the control algorithm. The simulations allowed that the previously discussed control strategies could be tested and the results presented and discussed.
Actas de conferencias sobre el tema "Diesel hydrotreating unit"
Studley, Bruce C. y Victor Fuentes. "Initial Operating Experiences and Overall Enhancements at the Chilean Coke Fired Petropower Cogeneration Facility". En 2002 International Joint Power Generation Conference. ASMEDC, 2002. http://dx.doi.org/10.1115/ijpgc2002-26182.
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