Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination

Ethylene (C<sub>2</sub>H<sub>4</sub>) is a plant hormone that has numerous effects on many horticultural and ornamental crops. It accelerates senescence, stimulates chlorophyll loss, enhances excessive softening, promotes discoloration and browning during storage of fresh pro...

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Main Authors: Maria Lucia V. de Chiara, Maria Luisa Amodio, Francesco Scura, Luigina Spremulli, Giancarlo Colelli
Format: Article
Language:English
Published: PAGEPress Publications 2014-12-01
Series:Journal of Agricultural Engineering
Subjects:
Online Access:http://www.agroengineering.org/index.php/jae/article/view/435
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spelling doaj-ea5aa45066b24e40a5d6e0af7e56d3aa2020-11-25T03:10:23ZengPAGEPress PublicationsJournal of Agricultural Engineering1974-70712239-62682014-12-0145414615210.4081/jae.2014.435383Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illuminationMaria Lucia V. de Chiara0Maria Luisa Amodio1Francesco Scura2Luigina Spremulli3Giancarlo Colelli4Department of Science of Food, Agriculture and Environment, University of FoggiaDepartment of Science of Food, Agriculture and Environment, University of FoggiaSTC srl Science, Technology & Consulting, Mesagne (BR)STC srl Science, Technology & Consulting, Mesagne (BR)Department of Science of Food, Agriculture and Environment, University of FoggiaEthylene (C<sub>2</sub>H<sub>4</sub>) is a plant hormone that has numerous effects on many horticultural and ornamental crops. It accelerates senescence, stimulates chlorophyll loss, enhances excessive softening, promotes discoloration and browning during storage of fresh produce. Among the techniques used to remove or inhibit ethylene action during postharvest handling of fresh products (potassium-based system, high temperature catalytic oxidation, inhibition of ethylene receptors), the use of titanium oxide (TiO<sub>2</sub>)-based materials with photocatalytic activity under ultraviolet (UV) light is one of the most promising. A fluidised-bed photoreactor (FBP) was designed to decompose ethylene in the storage room atmosphere, and the relative prototype was manufactured. Since TiO<sub>2</sub> powder alone is not suitable for use within a fluidised bed, preliminary tests to select the best support were performed. Alumina microspheres showed a good fluidisation behavior; its functionality was tested with different kind of support material and actual photocatalytic activity was tested using SiO<sub>2</sub>/TiO<sub>2</sub>-coated alumina microspheres. A reduction of approximately 72% of ethylene concentration in the tested 40 ppm ethylene gas mixture was observed after 4.5 h of 36W UV light exposure. FBP resulted to be suitable to avoid the detrimental presence of C<sub>2</sub>H<sub>4</sub> in the atmosphere surrounding fresh products within cold storage rooms.http://www.agroengineering.org/index.php/jae/article/view/435ethylene reduction, fluidised bed photoreactor, postharvest storage, titanium oxide.
collection DOAJ
language English
format Article
sources DOAJ
author Maria Lucia V. de Chiara
Maria Luisa Amodio
Francesco Scura
Luigina Spremulli
Giancarlo Colelli
spellingShingle Maria Lucia V. de Chiara
Maria Luisa Amodio
Francesco Scura
Luigina Spremulli
Giancarlo Colelli
Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination
Journal of Agricultural Engineering
ethylene reduction, fluidised bed photoreactor, postharvest storage, titanium oxide.
author_facet Maria Lucia V. de Chiara
Maria Luisa Amodio
Francesco Scura
Luigina Spremulli
Giancarlo Colelli
author_sort Maria Lucia V. de Chiara
title Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination
title_short Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination
title_full Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination
title_fullStr Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination
title_full_unstemmed Design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed SiO2/TiO2 nanocomposites under UV-A illumination
title_sort design and preliminary test of a fluidised bed photoreactor for ethylene oxidation on mesoporous mixed sio2/tio2 nanocomposites under uv-a illumination
publisher PAGEPress Publications
series Journal of Agricultural Engineering
issn 1974-7071
2239-6268
publishDate 2014-12-01
description Ethylene (C<sub>2</sub>H<sub>4</sub>) is a plant hormone that has numerous effects on many horticultural and ornamental crops. It accelerates senescence, stimulates chlorophyll loss, enhances excessive softening, promotes discoloration and browning during storage of fresh produce. Among the techniques used to remove or inhibit ethylene action during postharvest handling of fresh products (potassium-based system, high temperature catalytic oxidation, inhibition of ethylene receptors), the use of titanium oxide (TiO<sub>2</sub>)-based materials with photocatalytic activity under ultraviolet (UV) light is one of the most promising. A fluidised-bed photoreactor (FBP) was designed to decompose ethylene in the storage room atmosphere, and the relative prototype was manufactured. Since TiO<sub>2</sub> powder alone is not suitable for use within a fluidised bed, preliminary tests to select the best support were performed. Alumina microspheres showed a good fluidisation behavior; its functionality was tested with different kind of support material and actual photocatalytic activity was tested using SiO<sub>2</sub>/TiO<sub>2</sub>-coated alumina microspheres. A reduction of approximately 72% of ethylene concentration in the tested 40 ppm ethylene gas mixture was observed after 4.5 h of 36W UV light exposure. FBP resulted to be suitable to avoid the detrimental presence of C<sub>2</sub>H<sub>4</sub> in the atmosphere surrounding fresh products within cold storage rooms.
topic ethylene reduction, fluidised bed photoreactor, postharvest storage, titanium oxide.
url http://www.agroengineering.org/index.php/jae/article/view/435
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