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Summary of the Monograph of F. I. Samedova “The Application of Supercritical Fluids in Petroleum and Oil Fractions Refining”

机译:F. I. Samedova专着“超临界流体在石油和石油馏分精制中的应用”摘要

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In the monograph of F. I. Samedova “The application of supercritical fluids in petroleum refining and oil fractions” (Baku, 2014) the results of the use of supercritical fluids in petroleum refining and petroleum products are presented. The investigations were made under the guidance of the corresponding member of the Azerbaijan National Academy of Science, professor F. I. Samedova and representatives of the scientific school she has established: Doctor of Technical Sciences R. Z. Gasanova, Ph.D. A. M. Kasumova, Ph.D. S. Y. Rashidova and N. F. Kafarova, as well as with representatives of the spectral laboratory Ph.D. A. D. Kuliyev and Ph.D. B. M. Aliyev. Scientific editors of the monograph are academics M. I. Rustamov and V. M. Abbasov. The recent advances in term of the possible applications of supercritical extraction processes in the field of oil refining and oil fractions are shown. The analysis of the economic efficiency of supercritical extraction processes using SC CO2 is carried out. The scheme of the pilot plant at the Experimental Plant of the Institute of Petrochemical Processes of Azerbaijan National Academy of Sciences (IPCP of ANAS) is described. The monograph [1] is intended for researchers, graduate students, engineers and graduate students engaged in the development and introduction of new energy-saving and environmentally friendly technologies for oil refining and oil fractions. In order to find the ways to create energy-efficient, environmentally-friendly technologies in 1970 the use of supercritical fluids as solvents in cleaning processes, extraction, separation and fractionation are proposed. This approach can lead to the creation of environmentally friendly processes in the food, perfumery, pharmaceutical, oil, coal processing industry and in the field of polymer processing. Considering the need of creation of environmentally friendly and energy-saving technologies in the oil refining industries, in 2000 IPCP of ANAS began the research on the intensification of processes used in the oil industry-oil refining and heavy fractions of water, salts and solids, high molecular heteroatomic compounds: resinous-asphaltene substances including the metals using a supercritical fluid. The monograph highlights the results of studies on the use of supercritical fluid SC CO2 emissions from petroleum refining and oil fractions with a view to their intensification and ecological rehabilitation of the environment.
机译:在F. I. Samedova的专着“超临界流体在炼油和石油馏分中的应用”(巴库,2014年)中,介绍了超临界流体在炼油和石油产品中的使用结果。调查是在阿塞拜疆国家科学院相应成员F. I. Samedova教授和她建立的科学学院的代表的指导下进行的:技术科学博士R. Z. Gasanova博士。卡苏莫娃(A. M. Kasumova)博士S. Y. Rashidova和N. F. Kafarova,以及光谱实验室博士的代表。 A. D. Kuliyev和博士B. M. Aliyev。该专着的科学编辑是学者M. I. Rustamov和V. M. Abbasov。显示了超临界萃取方法在炼油和石油馏分领域的可能应用方面的最新进展。进行了使用SC CO2的超临界萃取过程的经济效率分析。描述了阿塞拜疆国家科学院石化工艺研究所(ANAS的IPCP)的实验工厂中试工厂的方案。专着[1]专供从事炼油和石油馏分节能与环保新技术开发和引进的研究人员,研究生,工程师和研究生使用。为了在1970年找到创建节能,环保技术的方法,提出了在清洁过程,萃取,分离和分馏中使用超临界流体作为溶剂的方法。这种方法可以导致在食品,香料,制药,石油,煤炭加工工业以及聚合物加工领域中建立环保工艺。考虑到需要在炼油行业中创造环保和节能技术,ANAS的IPCP于2000年开始研究强化炼油行业中使用的流程-炼油以及水,盐和固体的重质馏分,高分子杂原子化合物:树脂-沥青质物质,包括使用超临界流体的金属。该专着着重研究了从炼油和石油馏分中利用超临界流体SC CO2排放进行研究的结果,以期加强环境和生态修复。

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