Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces

In recent years an increase of population complaints about odour emissions from industrials occurred. For this reason several abatement systems have been developed in order to reduce odour emissions that could impact on the surrounding territory. The evaluation of the odour reduction efficiency of s...

Full description

Bibliographic Details
Main Authors: L. Dentoni, M. Bascelli, L. Capelli, S. Sironi, R. Del Rosso, M. Buccolini
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2012-09-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/6988
id doaj-178140955ebe45008e703d9e905a26de
record_format Article
spelling doaj-178140955ebe45008e703d9e905a26de2021-02-22T21:06:05ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162012-09-013010.3303/CET1230049Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid SurfacesL. DentoniM. BascelliL. CapelliS. SironiR. Del RossoM. BuccoliniIn recent years an increase of population complaints about odour emissions from industrials occurred. For this reason several abatement systems have been developed in order to reduce odour emissions that could impact on the surrounding territory. The evaluation of the odour reduction efficiency of such systems is a crucial aspect and therefore methods to evaluate it have been developed. This work focuses on the development of an experimental apparatus in order to evaluate the odour reduction efficiency of nebulization systems on odorous surfaces. This apparatus was designed in order to simulate field conditions, such as the wind flow on the odorous surface. The designed apparatus was used to evaluate the odour abatement efficiency of deodorizing products from Chimec S.p.A. on API liquid, taken form a refinery API tank. Olfactometric analyses were carried out on samples relevant to API solution without any treatment and after product nebulization. The efficiency was evaluated at different wind speeds inside the apparatus, in order to simulate different conditions that may occur on field. Moreover, tests were carried out in order to evaluate the influence of the product concentration in water on the odour abatement efficiency. Tests show that by nebulizing the product with an optimized dosage an odour abatement efficiency of 80% can be reached. Further tests could be performed by using other odour emitting surfaces or to compare the efficiency of different products designed for odour abatement.https://www.cetjournal.it/index.php/cet/article/view/6988
collection DOAJ
language English
format Article
sources DOAJ
author L. Dentoni
M. Bascelli
L. Capelli
S. Sironi
R. Del Rosso
M. Buccolini
spellingShingle L. Dentoni
M. Bascelli
L. Capelli
S. Sironi
R. Del Rosso
M. Buccolini
Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces
Chemical Engineering Transactions
author_facet L. Dentoni
M. Bascelli
L. Capelli
S. Sironi
R. Del Rosso
M. Buccolini
author_sort L. Dentoni
title Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces
title_short Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces
title_full Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces
title_fullStr Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces
title_full_unstemmed Design of a Specific Apparatus to Evaluate Odour Reduction Efficiency of a Nebulizing System Applied on Odorous Liquid Surfaces
title_sort design of a specific apparatus to evaluate odour reduction efficiency of a nebulizing system applied on odorous liquid surfaces
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2012-09-01
description In recent years an increase of population complaints about odour emissions from industrials occurred. For this reason several abatement systems have been developed in order to reduce odour emissions that could impact on the surrounding territory. The evaluation of the odour reduction efficiency of such systems is a crucial aspect and therefore methods to evaluate it have been developed. This work focuses on the development of an experimental apparatus in order to evaluate the odour reduction efficiency of nebulization systems on odorous surfaces. This apparatus was designed in order to simulate field conditions, such as the wind flow on the odorous surface. The designed apparatus was used to evaluate the odour abatement efficiency of deodorizing products from Chimec S.p.A. on API liquid, taken form a refinery API tank. Olfactometric analyses were carried out on samples relevant to API solution without any treatment and after product nebulization. The efficiency was evaluated at different wind speeds inside the apparatus, in order to simulate different conditions that may occur on field. Moreover, tests were carried out in order to evaluate the influence of the product concentration in water on the odour abatement efficiency. Tests show that by nebulizing the product with an optimized dosage an odour abatement efficiency of 80% can be reached. Further tests could be performed by using other odour emitting surfaces or to compare the efficiency of different products designed for odour abatement.
url https://www.cetjournal.it/index.php/cet/article/view/6988
work_keys_str_mv AT ldentoni designofaspecificapparatustoevaluateodourreductionefficiencyofanebulizingsystemappliedonodorousliquidsurfaces
AT mbascelli designofaspecificapparatustoevaluateodourreductionefficiencyofanebulizingsystemappliedonodorousliquidsurfaces
AT lcapelli designofaspecificapparatustoevaluateodourreductionefficiencyofanebulizingsystemappliedonodorousliquidsurfaces
AT ssironi designofaspecificapparatustoevaluateodourreductionefficiencyofanebulizingsystemappliedonodorousliquidsurfaces
AT rdelrosso designofaspecificapparatustoevaluateodourreductionefficiencyofanebulizingsystemappliedonodorousliquidsurfaces
AT mbuccolini designofaspecificapparatustoevaluateodourreductionefficiencyofanebulizingsystemappliedonodorousliquidsurfaces
_version_ 1724256093690920960