Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration

Flame propagation in the interconnected pipe with various size has a potential to initiate an explosion hazard. Thus in this study, the biogas/air flame propagation was investigated in the interconnected pipe. The experiment was conducted in pipe interconnected with three different diameters which a...

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Main Authors: N. S., Noor Azmi, Siti Zubaidah, Sulaiman, A., Ramli, R. M., Kasmani, Siti Kholijah, Abdul Mudalip, Rohaida, Che Man, Shalyda, Md Shaarani, Zatul Iffah, Mohd Arshad, Nur Aqidah, Muhammad Harinder Khan, N. H., Semawi
Format: Conference or Workshop Item
Language:English
Published: IOP Publishing 2019
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Online Access:http://umpir.ump.edu.my/id/eprint/24831/7/biogas%20flame%20propagation%20in%20interconnected%20pipe.pdf
http://umpir.ump.edu.my/id/eprint/24831/
https://doi.org/10.1088/1755-1315/268/1/012032
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spelling my.ump.umpir.248312020-06-12T02:13:57Z http://umpir.ump.edu.my/id/eprint/24831/ Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration N. S., Noor Azmi Siti Zubaidah, Sulaiman A., Ramli R. M., Kasmani Siti Kholijah, Abdul Mudalip Rohaida, Che Man Shalyda, Md Shaarani Zatul Iffah, Mohd Arshad Nur Aqidah, Muhammad Harinder Khan N. H., Semawi TP Chemical technology Flame propagation in the interconnected pipe with various size has a potential to initiate an explosion hazard. Thus in this study, the biogas/air flame propagation was investigated in the interconnected pipe. The experiment was conducted in pipe interconnected with three different diameters which are 5 cm, 10 cm and 46 cm respectively. The biogas is mixed with the ratio of 60:40 of methane and carbon dioxide. The concentration of biogas/air was varied at ER: 0.8 - 1.4 respectively. The mixtures were ignited using a spark plug. The pressure and flame speed were measured using thermocouples K type and pressure transducers located along the rig. Pure methane was also tested to examine the effect of CO2 on the biogas flame propagation. From the experimental analysis, the highest maximum overpressure (2.5 bar) and flame speed (41.9 m/s) were recorded at the smallest pipe diameter (0.5 cm) at rich concentration, ER = 1.2 and 1.4 respectively. The results show that the thermal diffusive effect is one of the factors contributed to the flame propagation that resulted to the increase of the maximum overpressure and flame speed. However, the presence of CO2 in biogas makes the biogas explosion is less severe as compared to the methane. IOP Publishing 2019 Conference or Workshop Item NonPeerReviewed pdf en cc_by http://umpir.ump.edu.my/id/eprint/24831/7/biogas%20flame%20propagation%20in%20interconnected%20pipe.pdf N. S., Noor Azmi and Siti Zubaidah, Sulaiman and A., Ramli and R. M., Kasmani and Siti Kholijah, Abdul Mudalip and Rohaida, Che Man and Shalyda, Md Shaarani and Zatul Iffah, Mohd Arshad and Nur Aqidah, Muhammad Harinder Khan and N. H., Semawi (2019) Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration. In: IOP Conference Series: Earth and Environmental Science, International Conference on Sustainable Energy and Green Technology, 11-14 December 2018 , Kuala Lumpur, Malaysia. pp. 1-6., 268 (012032). ISSN 1755-1315 https://doi.org/10.1088/1755-1315/268/1/012032
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
N. S., Noor Azmi
Siti Zubaidah, Sulaiman
A., Ramli
R. M., Kasmani
Siti Kholijah, Abdul Mudalip
Rohaida, Che Man
Shalyda, Md Shaarani
Zatul Iffah, Mohd Arshad
Nur Aqidah, Muhammad Harinder Khan
N. H., Semawi
Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration
description Flame propagation in the interconnected pipe with various size has a potential to initiate an explosion hazard. Thus in this study, the biogas/air flame propagation was investigated in the interconnected pipe. The experiment was conducted in pipe interconnected with three different diameters which are 5 cm, 10 cm and 46 cm respectively. The biogas is mixed with the ratio of 60:40 of methane and carbon dioxide. The concentration of biogas/air was varied at ER: 0.8 - 1.4 respectively. The mixtures were ignited using a spark plug. The pressure and flame speed were measured using thermocouples K type and pressure transducers located along the rig. Pure methane was also tested to examine the effect of CO2 on the biogas flame propagation. From the experimental analysis, the highest maximum overpressure (2.5 bar) and flame speed (41.9 m/s) were recorded at the smallest pipe diameter (0.5 cm) at rich concentration, ER = 1.2 and 1.4 respectively. The results show that the thermal diffusive effect is one of the factors contributed to the flame propagation that resulted to the increase of the maximum overpressure and flame speed. However, the presence of CO2 in biogas makes the biogas explosion is less severe as compared to the methane.
format Conference or Workshop Item
author N. S., Noor Azmi
Siti Zubaidah, Sulaiman
A., Ramli
R. M., Kasmani
Siti Kholijah, Abdul Mudalip
Rohaida, Che Man
Shalyda, Md Shaarani
Zatul Iffah, Mohd Arshad
Nur Aqidah, Muhammad Harinder Khan
N. H., Semawi
author_facet N. S., Noor Azmi
Siti Zubaidah, Sulaiman
A., Ramli
R. M., Kasmani
Siti Kholijah, Abdul Mudalip
Rohaida, Che Man
Shalyda, Md Shaarani
Zatul Iffah, Mohd Arshad
Nur Aqidah, Muhammad Harinder Khan
N. H., Semawi
author_sort N. S., Noor Azmi
title Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration
title_short Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration
title_full Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration
title_fullStr Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration
title_full_unstemmed Biogas flame propagation in the interconnected pipe: The effect of biogas/air mixture concentration
title_sort biogas flame propagation in the interconnected pipe: the effect of biogas/air mixture concentration
publisher IOP Publishing
publishDate 2019
url http://umpir.ump.edu.my/id/eprint/24831/7/biogas%20flame%20propagation%20in%20interconnected%20pipe.pdf
http://umpir.ump.edu.my/id/eprint/24831/
https://doi.org/10.1088/1755-1315/268/1/012032
_version_ 1672610881873117184
score 13.160551