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/Title ({Experimental investigation of a one-level eight-channel cyclone-separator incorporating quarter-rings})
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/Keywords (air treatment,cascade impactor.,channel,channel cyclone,particulate matter,separator)
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Microsoft® Word for Microsoft 365
Microsoft® Word for Microsoft 365
2021-08-31T23:13:04+02:00
2021-08-31T23:16:19+02:00
2021-08-31T23:16:19+02:00
uuid:FDFB4282-C63F-47EE-8789-B6C553233E07
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The main aim of this investigation was an experimental analysis of the air cleaning efficiency in a mock-up next-generation air cleaning device – one-level 8-channel industrial cyclone-separator with quarter-rings – while changing parameters of the inner structure and the assessment of the effects of dispersion of particulate matter. Therefore, the research was carried out in two stages: the first stage covered the analysis of the efficiency of the multi-channel cyclone with particulate matter of <20 and <50 $\mu$m. During the second stage, a cascade impactor was used to measure the particle collection efficiency in the multi-channel cyclone by fractions: PM1, PM2.5 and PM10. Results of the tests with using the cascade impactor were compared to show changes in the PM composition before and after the multi-channel cyclone-separator. According to the obtained experimental data, the one-level 8-channel cyclone-separator collects 70 to 80 % of PM up to 10 $\mu$m in size, 45 to 60 % of PM up to 2.5 $\mu$m in size and 21 to 25 % of PM up to 1 $\mu$m in size.
Aleksandras Chlebnikovas
bibtex/citationkey/Chlebnikovas2021
bibtex/file/:D\:/OneDrive/Mendeley Desktop/Chlebnikovas - 2021 - Experimental investigation of a one-level eight-channel cyclone-separator incorporating quarter-rings.pdf:pdf;:HEMIND_Vol75_No4_241-251_Jul-Aug_2021.pdf:PDF
bibtex/issn/2217-7426
bibtex/journal/HEMIJSKA INDUSTRIJA
bibtex/month/sep
bibtex/number/4
bibtex/pages/241--251
bibtex/url/https://www.ache-pub.org.rs/index.php/HemInd/article/view/765
bibtex/volume/75
10.2298/HEMIND210307024C
air treatment
cascade impactor.
channel
channel cyclone
particulate matter
separator
{Experimental investigation of a one-level eight-channel cyclone-separator incorporating quarter-rings}
2021-09
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