Design of laboratory cyclone separator for biogas purification

This article deals with calculation of a cyclone separator for biogas purification using physical and chemical methods. There is presented a methodology for determination of operating dimensions of the cyclone separator and description of principal features of the cyclone separator model. Calculatio...

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Main Authors: Marián Fodora, Ján Gaduš, Jan Mareček, Tomáš Vítěz, Viera Kažimírová
Format: Article
Language:English
Published: Mendel University Press 2013-01-01
Series:Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis
Subjects:
Online Access:https://acta.mendelu.cz/61/3/0631/
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spelling doaj-59f690cb0fd14fd49eabd2c41943e9162020-11-24T22:16:17ZengMendel University PressActa Universitatis Agriculturae et Silviculturae Mendelianae Brunensis1211-85162464-83102013-01-0161363163510.11118/actaun201361030631Design of laboratory cyclone separator for biogas purificationMarián Fodora0Ján Gaduš1Jan Mareček2Tomáš Vítěz3Viera Kažimírová4Research Centre for Renewable Energy Sources, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 949 76 Nitra, Slovak RerpublicResearch Centre for Renewable Energy Sources, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 949 76 Nitra, Slovak RerpublicDepartment of Agriculture, Food and Environmental Engineering, Mendel University in Brno, Zemědělská 1, 613 00, Brno, Czech RepublicDepartment of Agriculture, Food and Environmental Engineering, Mendel University in Brno, Zemědělská 1, 613 00, Brno, Czech RepublicDepartment of Production Engineering, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 949 76 Nitra, Slovak RerpublicThis article deals with calculation of a cyclone separator for biogas purification using physical and chemical methods. There is presented a methodology for determination of operating dimensions of the cyclone separator and description of principal features of the cyclone separator model. Calculations have been performed for the diameter of the cylindrical part of cyclone separator 175 mm and for the biogas volume flow rate 6.9∙10−5 m3∙s−1. The calculations can be used in practice for the design of cyclone separator depending on the flow rate of biogas, size of the biogas plants respectively. The developed cyclone separator has been used for the cleaning of biogas in operating conditions at the biogas plant in Kolinany (Slovakia). The presented method of biogas purification has been used for the removing of hydrogen sulphide, particulate matter and carbon dioxide from the raw biogas at the biogas plant. Removal of these undesirable impurities from the biogas is an important step in the production of a fully valued fuel, biomethane. https://acta.mendelu.cz/61/3/0631/biogas purificationphysical-chemical methodconstruction design of cycloneseparator
collection DOAJ
language English
format Article
sources DOAJ
author Marián Fodora
Ján Gaduš
Jan Mareček
Tomáš Vítěz
Viera Kažimírová
spellingShingle Marián Fodora
Ján Gaduš
Jan Mareček
Tomáš Vítěz
Viera Kažimírová
Design of laboratory cyclone separator for biogas purification
Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis
biogas purification
physical-chemical method
construction design of cycloneseparator
author_facet Marián Fodora
Ján Gaduš
Jan Mareček
Tomáš Vítěz
Viera Kažimírová
author_sort Marián Fodora
title Design of laboratory cyclone separator for biogas purification
title_short Design of laboratory cyclone separator for biogas purification
title_full Design of laboratory cyclone separator for biogas purification
title_fullStr Design of laboratory cyclone separator for biogas purification
title_full_unstemmed Design of laboratory cyclone separator for biogas purification
title_sort design of laboratory cyclone separator for biogas purification
publisher Mendel University Press
series Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis
issn 1211-8516
2464-8310
publishDate 2013-01-01
description This article deals with calculation of a cyclone separator for biogas purification using physical and chemical methods. There is presented a methodology for determination of operating dimensions of the cyclone separator and description of principal features of the cyclone separator model. Calculations have been performed for the diameter of the cylindrical part of cyclone separator 175 mm and for the biogas volume flow rate 6.9∙10−5 m3∙s−1. The calculations can be used in practice for the design of cyclone separator depending on the flow rate of biogas, size of the biogas plants respectively. The developed cyclone separator has been used for the cleaning of biogas in operating conditions at the biogas plant in Kolinany (Slovakia). The presented method of biogas purification has been used for the removing of hydrogen sulphide, particulate matter and carbon dioxide from the raw biogas at the biogas plant. Removal of these undesirable impurities from the biogas is an important step in the production of a fully valued fuel, biomethane.
topic biogas purification
physical-chemical method
construction design of cycloneseparator
url https://acta.mendelu.cz/61/3/0631/
work_keys_str_mv AT marianfodora designoflaboratorycycloneseparatorforbiogaspurification
AT jangadus designoflaboratorycycloneseparatorforbiogaspurification
AT janmarecek designoflaboratorycycloneseparatorforbiogaspurification
AT tomasvitez designoflaboratorycycloneseparatorforbiogaspurification
AT vierakazimirova designoflaboratorycycloneseparatorforbiogaspurification
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