Understanding the Physics of Advanced Oxidation in a Venturi Reactor

This paper is part of a research activity concerning theoretical and experimental studies of cavitation as an Advanced Oxidation Process in a convergent-divergent nozzle. The capability and peculiarities of this technology in degrading organic pollutants in water effluents are addressed by theoretic...

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Main Authors: M. Capocelli, M. Prisciandaro, D. Musmarra, A. Lancia
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2013-06-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/6510
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spelling doaj-2bf38a89b08f405ab4f5144a7a1fabed2021-02-22T20:59:29ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162013-06-013210.3303/CET1332116Understanding the Physics of Advanced Oxidation in a Venturi ReactorM. CapocelliM. PrisciandaroD. MusmarraA. LanciaThis paper is part of a research activity concerning theoretical and experimental studies of cavitation as an Advanced Oxidation Process in a convergent-divergent nozzle. The capability and peculiarities of this technology in degrading organic pollutants in water effluents are addressed by theoretical and experimental studies. Dosimetry methods for estimation of hydroxyl radical production are carried out through p-nitrophenol degradation. Additionally, for investigating the phenomenology of Venturi oxidation, a mathematical algorithm is proposed, which couples a microscopic approach (on single bubble dynamic with chemical reactions) with a macroscopic one (nucleation of bubbles’ clouds). Experimental evidences agree with numerical ones in identifying an optimum level of inlet fluid pressure, in producing the highest experimental removal rate and the highest theoretical radicals’ production.https://www.cetjournal.it/index.php/cet/article/view/6510
collection DOAJ
language English
format Article
sources DOAJ
author M. Capocelli
M. Prisciandaro
D. Musmarra
A. Lancia
spellingShingle M. Capocelli
M. Prisciandaro
D. Musmarra
A. Lancia
Understanding the Physics of Advanced Oxidation in a Venturi Reactor
Chemical Engineering Transactions
author_facet M. Capocelli
M. Prisciandaro
D. Musmarra
A. Lancia
author_sort M. Capocelli
title Understanding the Physics of Advanced Oxidation in a Venturi Reactor
title_short Understanding the Physics of Advanced Oxidation in a Venturi Reactor
title_full Understanding the Physics of Advanced Oxidation in a Venturi Reactor
title_fullStr Understanding the Physics of Advanced Oxidation in a Venturi Reactor
title_full_unstemmed Understanding the Physics of Advanced Oxidation in a Venturi Reactor
title_sort understanding the physics of advanced oxidation in a venturi reactor
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2013-06-01
description This paper is part of a research activity concerning theoretical and experimental studies of cavitation as an Advanced Oxidation Process in a convergent-divergent nozzle. The capability and peculiarities of this technology in degrading organic pollutants in water effluents are addressed by theoretical and experimental studies. Dosimetry methods for estimation of hydroxyl radical production are carried out through p-nitrophenol degradation. Additionally, for investigating the phenomenology of Venturi oxidation, a mathematical algorithm is proposed, which couples a microscopic approach (on single bubble dynamic with chemical reactions) with a macroscopic one (nucleation of bubbles’ clouds). Experimental evidences agree with numerical ones in identifying an optimum level of inlet fluid pressure, in producing the highest experimental removal rate and the highest theoretical radicals’ production.
url https://www.cetjournal.it/index.php/cet/article/view/6510
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