Lab Scale High-Pressure Equipment for Supercritical Drying

This paper is devoted to the development of high-pressure laboratory equipment for supercritical drying processes. Conducting processes under supercritical conditions requires appropriate high-pressure apparatus. High-pressure apparatus' working part design was developed on the basis of the res...

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Main Authors: Pavel Yu. Tsygankov, Illarion I. Khudeev, Artem E. Lebedev, Evgeniy A. Lebedev, Natalia V. Menshutina
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/577
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spelling doaj-eac4a4b488a845128f3c10be5dc452b32021-02-17T20:59:05ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-08-017010.3303/CET1870147Lab Scale High-Pressure Equipment for Supercritical Drying Pavel Yu. TsygankovIllarion I. KhudeevArtem E. LebedevEvgeniy A. LebedevNatalia V. MenshutinaThis paper is devoted to the development of high-pressure laboratory equipment for supercritical drying processes. Conducting processes under supercritical conditions requires appropriate high-pressure apparatus. High-pressure apparatus' working part design was developed on the basis of the results of supercritical carbon dioxide hydrodynamics mathematical modeling. To do this, modern computer simulation methods, based on principles of computational fluid dynamics (CFD), were used. Such methods allow to calculate velocity, pressure, physico-chemical properties fields within the apparatus at arbitrary boundary conditions. In addition, it is important to develop process flowsheets that include high-pressure vessels, high-pressure pumps, separators, intermediate tanks, complex shut-off and control valves, a set of instrumentation and automation. The developed laboratory equipment was realized and successfully commissioned. Proposed equipment can be used for studying the kinetics of the supercritical drying process. Such studies are necessary for resource and energy saving, efficiency increasing and scale up. https://www.cetjournal.it/index.php/cet/article/view/577
collection DOAJ
language English
format Article
sources DOAJ
author Pavel Yu. Tsygankov
Illarion I. Khudeev
Artem E. Lebedev
Evgeniy A. Lebedev
Natalia V. Menshutina
spellingShingle Pavel Yu. Tsygankov
Illarion I. Khudeev
Artem E. Lebedev
Evgeniy A. Lebedev
Natalia V. Menshutina
Lab Scale High-Pressure Equipment for Supercritical Drying
Chemical Engineering Transactions
author_facet Pavel Yu. Tsygankov
Illarion I. Khudeev
Artem E. Lebedev
Evgeniy A. Lebedev
Natalia V. Menshutina
author_sort Pavel Yu. Tsygankov
title Lab Scale High-Pressure Equipment for Supercritical Drying
title_short Lab Scale High-Pressure Equipment for Supercritical Drying
title_full Lab Scale High-Pressure Equipment for Supercritical Drying
title_fullStr Lab Scale High-Pressure Equipment for Supercritical Drying
title_full_unstemmed Lab Scale High-Pressure Equipment for Supercritical Drying
title_sort lab scale high-pressure equipment for supercritical drying
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-08-01
description This paper is devoted to the development of high-pressure laboratory equipment for supercritical drying processes. Conducting processes under supercritical conditions requires appropriate high-pressure apparatus. High-pressure apparatus' working part design was developed on the basis of the results of supercritical carbon dioxide hydrodynamics mathematical modeling. To do this, modern computer simulation methods, based on principles of computational fluid dynamics (CFD), were used. Such methods allow to calculate velocity, pressure, physico-chemical properties fields within the apparatus at arbitrary boundary conditions. In addition, it is important to develop process flowsheets that include high-pressure vessels, high-pressure pumps, separators, intermediate tanks, complex shut-off and control valves, a set of instrumentation and automation. The developed laboratory equipment was realized and successfully commissioned. Proposed equipment can be used for studying the kinetics of the supercritical drying process. Such studies are necessary for resource and energy saving, efficiency increasing and scale up.
url https://www.cetjournal.it/index.php/cet/article/view/577
work_keys_str_mv AT pavelyutsygankov labscalehighpressureequipmentforsupercriticaldrying
AT illarionikhudeev labscalehighpressureequipmentforsupercriticaldrying
AT artemelebedev labscalehighpressureequipmentforsupercriticaldrying
AT evgeniyalebedev labscalehighpressureequipmentforsupercriticaldrying
AT nataliavmenshutina labscalehighpressureequipmentforsupercriticaldrying
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