Investigation of physical and chemical parameters of the raw hydrocarbon material base of Kaliningrad region for the concept development of an oil refinery
Abstract
Keywords
Full Text:
PDFReferences
Okhotnikova ES, Yusupova TN, Barskaya EE, Ganeeva YuM, Mukhametshin RZ. Geochemical analysis of crude oils in kaliningrad oblast oil fields and its importance for oil production. Petroleum Chem. 2021;61(9):994–1000. doi:10.1134/S0965544121090012
Domźalski J, Górecki W, Mazurek A, Myœko A, Strzetelski W, Szama K. The prospects for petroleum exploration in the eastern sector of Southern Baltic as revealed by sea bottom geochemical survey correlated with seismic data. Przegląd Geolog. 2004;52(8/2):792–799.
Kharin GS, Eroshenko DV. Basic intrusives and hydrocarbonic potential of the South-East Baltic. Oceanolog. 2014;54(2):245–258. doi:10.1134/S0001437014020118
Oldberg I. Chapter 16 The Kaliningrad Region: an Exclave with Internal and External Problems. The Kaliningrad Region. Brill, Schöningh; 2021. 241–261 p. doi:10.30965/9783657760626_017
Savenkova TI. Razvitie transporta i transportno-logisticheskikh sistem v regione baltiiskogo morya [Development of transport and transport and logistics systems in the Baltic Sea region]. Vestnik SamGUPS [Bulletin of SamGUPS]. 2015;2–1(28):143–154. Russian. doi:10.13140/2.1.4365.3123
Efimova EG, Volovoj V, Vroblevskaya SA. Ports of Eastern Baltic and Russian transit policy: competition and cooperation. Baltic Reg. 2021;13.(3):125–148. doi:10.5922/2079-8555-2021-3-7
Li Z, Li T. Economic sanctions and regional differences: evidence from sanctions on Russia. Sustain. 2022;14(10):6112. doi:10.3390/su14106112
Safieva RZ, Zinovieva LV, Yanchenko ЕЕ, Borisova ОА. Metodicheskie ukazaniya po distsipline «Khimiya nefti i gaza» [Methodological guidelines for the discipline "Chemistry of oil and gas"]. Moscow: Gubkin Russian State University publishing; 2002. 40 p. Russian.
Simon S, Nenningsland AL, Herschbach E, Sjöblom J. Extraction of basic components from petroleum crude oil. Energy Fuels. 2010;24(2):1043–1050. doi:10.1021/ef901119y
Dashtkar B, Khandan Alamdari S, Farahbakhsh N. Designing a model for optimizing the production of gasoline products in the oil refinery. Karafan Quarterly Sci J. 2022. doi:10.48301/KSSA.2022.299589.1673
Zhou X, Sun Z, Yan H, Feng X, Zhao H, Liu Y, Chen X, Yang C. Produce petrochemicals directly from crude oil catalytic cracking, a techno-economic analysis and life cycle society-environment assessment. J Clean Product. 2021;308:127283. doi:10.1016/j.jclepro.2021.127283
Oznobikhina LA. Formation of environmental safety of the environment as a result of the activities of the oil refining enterprise. IOP Conf Ser Earth Environ Sci. 2021;808(1):012058. doi:10.1088/1755-1315/808/1/012058
Sobanov AA, Burnaeva LM, Galkina IV, Tudriy EV. Metodicheskie ukazaniya po kursu khimicheskaya tekhnologiya (analiz nefti i nefteproduktov) [Methodical guidance to the discipline chemical engineering (analysis of oil and oil products)]. Kazan: Kazan (Volga Region) Federal University publishing; 2011. 56 p. Russian.
Varavina EP, Bratakh MI, Burova MYa, Yatskevich EA. Laboratornyi praktikum po kursu «Tekhnologiya sbora i podgotovki neftepromyslovoy produktsii» [Laboratory workshop on the course "Technology for the collection and preparation of oil products."]. Kharkiv: National Technical University "Kharkiv Polytechnic Institute" publishing; 2016. 124 p. Russian.
Tertyshna O, Martynenko V, Zamikula K. Forming of crude oil mixtures with increased yield of target fractions. Chem Chem Technol. 2017;11(3):383–386. doi:10.23939/chcht11.03.383
Sancho A, Ribeiro JC, Reis MS, Martins FG. Cluster analysis of crude oils with k-means based on their physicochemical properties. Comp Chem Eng. 2022;157:107633. doi:10.1016/j.compchemeng.2021.107633
Dai X, Zhao L, Li Z, Du W, Zhong W, He R, Qian F. A data-driven approach for crude oil scheduling optimization under product yield uncertainty. Chem Eng Sci. 2021;246:116971. doi:10.1016/j.ces.2021.116971
Ranaee E, Ghorbani H, Keshavarzian S, Abarghoei PG, Riva M, Inzoli F, Guadagnini A. Analysis of the performance of a crude-oil desalting system based on historical data. Fuel. 2021;291:120046. doi:10.1016/j.fuel.2020.120046
Mkrtchyan L, Straub U, Giachino M, Kocher T, Sansavini G. Insurability risk assessment of oil refineries using Bayesian Belief Networks. J Loss Prevent Proc Indust. 2022;74:104673. doi:10.1016/j.jlp.2021.104673
Abdulrahman I, Máša V, Teng SY. Process intensification in the oil and gas industry: A technological framework. Chem Eng Proc Proc Intensificat. 2021;159:108208. doi:10.1016/j.cep.2020.108208
Handogo R, Prasetyo F, Sanjaya SP, Anugraha RP. Preliminary design of mini oil refinery plant. J Adv Res Fluid Mech Therm Sci. 2022;92(1):39–50. doi:10.37934/arfmts.92.1.3950
Al-Jamimi HA, BinMakhashen GM, Deb K, Saleh TA. Multiobjective optimization and analysis of petroleum refinery catalytic processes: A review. Fuel. 2021;288:119678. doi:10.1016/j.fuel.2020.119678
Stolyarenko AE. Perspektivy pererabotki uglevodorodov Kaliningradskoi oblasti [Prospects of hydrocarbon processing in the Kaliningrad region]. J Adv Res Technic Sci. 2022;28:46–49. Russian. doi:10.26160/2474-5901-2022-28-46-49.
DOI: https://doi.org/10.15826/chimtech.2022.9.4.13
Copyright (c) 2022 Pavel Shcherban, Yakov Masyutin, Anna Vatagina, Margarita Belova, Alexander Stolyarenko
This work is licensed under a Creative Commons Attribution 4.0 International License.
© Website Chimica Techno Acta, 2014–2024
ISSN 2411-1414 (Online)
This journal is licensed under a Creative Commons Attribution 4.0 International