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Title Classification of Separation Equipment by Design and Technological Features
Authors Ivanov, Vitalii Oleksandrovych  
Pavlenko, Ivan Volodymyrovych  
Caganova, D.
Liaposhchenko, Oleksandr Oleksandrovych  
Demianenko, Maryna Mykolaivna
Lobov, Yevhenii Serhiiovych
Golokhvost, O.
ORCID http://orcid.org/0000-0003-0595-2660
http://orcid.org/0000-0002-6136-1040
http://orcid.org/0000-0002-6657-7051
Keywords modular separation device
technological classification
flexible assembly
Type Article
Date of Issue 2022
URI https://essuir.sumdu.edu.ua/handle/123456789/89571
Publisher European Alliance for Innovation
License Creative Commons Attribution 4.0 International License
Citation Ivanov V, Pavlenko I, Caganova D, Liaposhchenko O, Demianenko M, Lobov Y, Golokhvost O. Classification of Separation Equipment by Design and Technological Features. EAI Endorsed Trans Energy Web [Internet]. 2021 Aug. 18 [cited 2022 Sep. 17];9(38):e1. Available from: https://publications.eai.eu/index.php/ew/article/view/74
Abstract Production range increasing causes many obstacles to ensure the work of the chemical industry. Production must respond quickly to the slightest change and must be customer-oriented. Due to this, there is a general trend towards increasing production flexibility by introducing modular systems. Thus, there is a need to classify existing solutions to develop flexible systems based on them. The article contains the analysis of chemical industry development tendencies, a methodology of research of modular separation devices, and their classification by design and technological features. The study result is a design and technological classification with a code that can optimize various separation devices. As a result of experimental research, preliminary and acceptance tests of experimental samples, the main hydrodynamic and separation characteristics of modular separation devices and combined multifunctional separators are determined: hydraulic resistance 0.15–2.00 kPa for units and 15–30 kPa for devices; effective capture of particles from the size of 5 μm; efficiency of separate stages of modular separation devices is about 70–90 %; efficiency of combined multifunctional separators is approximately 99.5–99.9 %. The offered multipurpose separators equipped with dynamically regulated modular separation devices do not concede to world analogs by the main technical characteristics of combined multistage separators worldwide.
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