Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air

The efficiency of ethylene impurities decomposition in barrierless plasma-chemical system during artificial injection into the air of a sea container has been studied. The experimental study was performed at the air temperature 5oC in container volume 65 m3. The initial level of ozone in the air was...

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Main Authors: Leonid M. Zavada, Dmytro V. Kudin
Format: Article
Language:English
Published: V.N. Karazin Kharkiv National University Publishing 2021-03-01
Series:East European Journal of Physics
Subjects:
Online Access:https://periodicals.karazin.ua/eejp/article/view/16919
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spelling doaj-9b804f2eeed14642afe463670d69f4882021-03-23T13:41:16ZengV.N. Karazin Kharkiv National University PublishingEast European Journal of Physics2312-43342312-45392021-03-0119910310.26565/2312-4334-2021-1-1316919Plasma Chemical Method of Decreasing the Ethylene Impurities in the AirLeonid M. Zavada0Dmytro V. Kudin1National Science Center “Kharkov Institute of Physics and Technology”, Kharkiv, UkraineNational Science Center “Kharkov Institute of Physics and Technology”, Kharkiv, UkraineThe efficiency of ethylene impurities decomposition in barrierless plasma-chemical system during artificial injection into the air of a sea container has been studied. The experimental study was performed at the air temperature 5oC in container volume 65 m3. The initial level of ozone in the air was 100 ppb. This concentration is below concentration which audible to humans. It has been established that the use of a carbon filter after a plasma chemical system allows to maintain the ozone content in the air at an acceptable level (in terms of human health and food storage). During 24 hours the ethylene concentration increases until an equilibrium concentration is reached. After the plasma chemical rector was switched on, the ethylene concentration in the container began to decrease due to decomposition in the low-temperature plasma and interaction with ozone until new equilibrium concentration was reached. The ozone concentration after plasma chemical reactor was switched to begin increased. After 1 hour, the new minimum equilibrium ethylene and ozone concentration was established. The decrease in concentration occurred exponentially and reached a new equilibrium concentration above zero, which is consistent with the theory. The increase in ozone concentration occurs by about 20-25%. It has been shown that using plasma chemical system based on barrierless plasma chemical reactors can reduce the ethylene concentration by up to 10 times, even for low concentrations of ethylene in the air.https://periodicals.karazin.ua/eejp/article/view/16919ethyleneplasma chemistry barrierless reactor
collection DOAJ
language English
format Article
sources DOAJ
author Leonid M. Zavada
Dmytro V. Kudin
spellingShingle Leonid M. Zavada
Dmytro V. Kudin
Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air
East European Journal of Physics
ethylene
plasma chemistry barrierless reactor
author_facet Leonid M. Zavada
Dmytro V. Kudin
author_sort Leonid M. Zavada
title Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air
title_short Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air
title_full Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air
title_fullStr Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air
title_full_unstemmed Plasma Chemical Method of Decreasing the Ethylene Impurities in the Air
title_sort plasma chemical method of decreasing the ethylene impurities in the air
publisher V.N. Karazin Kharkiv National University Publishing
series East European Journal of Physics
issn 2312-4334
2312-4539
publishDate 2021-03-01
description The efficiency of ethylene impurities decomposition in barrierless plasma-chemical system during artificial injection into the air of a sea container has been studied. The experimental study was performed at the air temperature 5oC in container volume 65 m3. The initial level of ozone in the air was 100 ppb. This concentration is below concentration which audible to humans. It has been established that the use of a carbon filter after a plasma chemical system allows to maintain the ozone content in the air at an acceptable level (in terms of human health and food storage). During 24 hours the ethylene concentration increases until an equilibrium concentration is reached. After the plasma chemical rector was switched on, the ethylene concentration in the container began to decrease due to decomposition in the low-temperature plasma and interaction with ozone until new equilibrium concentration was reached. The ozone concentration after plasma chemical reactor was switched to begin increased. After 1 hour, the new minimum equilibrium ethylene and ozone concentration was established. The decrease in concentration occurred exponentially and reached a new equilibrium concentration above zero, which is consistent with the theory. The increase in ozone concentration occurs by about 20-25%. It has been shown that using plasma chemical system based on barrierless plasma chemical reactors can reduce the ethylene concentration by up to 10 times, even for low concentrations of ethylene in the air.
topic ethylene
plasma chemistry barrierless reactor
url https://periodicals.karazin.ua/eejp/article/view/16919
work_keys_str_mv AT leonidmzavada plasmachemicalmethodofdecreasingtheethyleneimpuritiesintheair
AT dmytrovkudin plasmachemicalmethodofdecreasingtheethyleneimpuritiesintheair
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