Calculation of the optimal blending component ratio by using mathematical modeling method

Vyacheslav A. Chuzlov, Galina Y. Nazarova, Igor M. Dolganov, Irena O. Dolganova, Gaini Zh. Seitenova

Research output: Contribution to journalArticle

Abstract

This paper assumes a preliminary calculation of the costs of the components of the mixture using a software-implemented mathematical model. The operation of mixing is carried out in accordance with the predetermined costs and physical-chemical properties of the products of the processes of secondary and deep oil refining. The flow rate and flow properties depend on the hydrocarbon composition of the feedstock and the activity of the catalysts used and are determined numerically. Resource efficiency of gasoline production is achieved only through the correct proportions of the composition, determined using software that allows you to adjust the conditions of production of gasoline, taking into account changes in the composition of the processed raw materials and the activity of catalysts. Within the framework of the research, the results of optimization of the processes of preparing motor fuels, as well as prediction of optimal volumes and formulas for mixing components to obtain gasoline of the required quality, taking into account changes in the composition of the processed raw materials and the activity of reforming catalysts, isomerization, alkylation and catalytic cracking, are obtained.

Original languageEnglish
JournalPetroleum Science and Technology
DOIs
Publication statusPublished - 1 Jan 2019

Fingerprint

catalyst
Gasoline
Chemical analysis
Catalysts
modeling
software
Raw materials
cost
Catalytic cracking
chemical property
Alkylation
Reforming reactions
Isomerization
Hydrocarbons
hydrocarbon
Feedstocks
Chemical properties
Refining
Costs
Oils

Keywords

  • blending; mathematical modeling; motor fuels; nonadditivity; octane number

ASJC Scopus subject areas

  • Chemistry(all)
  • Chemical Engineering(all)
  • Fuel Technology
  • Geotechnical Engineering and Engineering Geology
  • Energy Engineering and Power Technology

Cite this

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title = "Calculation of the optimal blending component ratio by using mathematical modeling method",
abstract = "This paper assumes a preliminary calculation of the costs of the components of the mixture using a software-implemented mathematical model. The operation of mixing is carried out in accordance with the predetermined costs and physical-chemical properties of the products of the processes of secondary and deep oil refining. The flow rate and flow properties depend on the hydrocarbon composition of the feedstock and the activity of the catalysts used and are determined numerically. Resource efficiency of gasoline production is achieved only through the correct proportions of the composition, determined using software that allows you to adjust the conditions of production of gasoline, taking into account changes in the composition of the processed raw materials and the activity of catalysts. Within the framework of the research, the results of optimization of the processes of preparing motor fuels, as well as prediction of optimal volumes and formulas for mixing components to obtain gasoline of the required quality, taking into account changes in the composition of the processed raw materials and the activity of reforming catalysts, isomerization, alkylation and catalytic cracking, are obtained.",
keywords = "blending; mathematical modeling; motor fuels; nonadditivity; octane number",
author = "Chuzlov, {Vyacheslav A.} and Nazarova, {Galina Y.} and Dolganov, {Igor M.} and Dolganova, {Irena O.} and {Zh. Seitenova}, Gaini",
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AU - Chuzlov, Vyacheslav A.

AU - Nazarova, Galina Y.

AU - Dolganov, Igor M.

AU - Dolganova, Irena O.

AU - Zh. Seitenova, Gaini

PY - 2019/1/1

Y1 - 2019/1/1

N2 - This paper assumes a preliminary calculation of the costs of the components of the mixture using a software-implemented mathematical model. The operation of mixing is carried out in accordance with the predetermined costs and physical-chemical properties of the products of the processes of secondary and deep oil refining. The flow rate and flow properties depend on the hydrocarbon composition of the feedstock and the activity of the catalysts used and are determined numerically. Resource efficiency of gasoline production is achieved only through the correct proportions of the composition, determined using software that allows you to adjust the conditions of production of gasoline, taking into account changes in the composition of the processed raw materials and the activity of catalysts. Within the framework of the research, the results of optimization of the processes of preparing motor fuels, as well as prediction of optimal volumes and formulas for mixing components to obtain gasoline of the required quality, taking into account changes in the composition of the processed raw materials and the activity of reforming catalysts, isomerization, alkylation and catalytic cracking, are obtained.

AB - This paper assumes a preliminary calculation of the costs of the components of the mixture using a software-implemented mathematical model. The operation of mixing is carried out in accordance with the predetermined costs and physical-chemical properties of the products of the processes of secondary and deep oil refining. The flow rate and flow properties depend on the hydrocarbon composition of the feedstock and the activity of the catalysts used and are determined numerically. Resource efficiency of gasoline production is achieved only through the correct proportions of the composition, determined using software that allows you to adjust the conditions of production of gasoline, taking into account changes in the composition of the processed raw materials and the activity of catalysts. Within the framework of the research, the results of optimization of the processes of preparing motor fuels, as well as prediction of optimal volumes and formulas for mixing components to obtain gasoline of the required quality, taking into account changes in the composition of the processed raw materials and the activity of reforming catalysts, isomerization, alkylation and catalytic cracking, are obtained.

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