Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust

In order to encounter the shortage of fossil fuel, many efforts have been performed by researchers worldwide to find out an alternative technologies of renewable energy conversion. Biomass gasification, one of many promising energy conversion technologies, becomes more attractive in recent years. Th...

Full description

Bibliographic Details
Main Authors: Anak Agung Susastriawan, Harwin Saptoadi
Format: Article
Language:English
Published: SDEWES Centre 2023-03-01
Series:Journal of Sustainable Development of Energy, Water and Environment Systems
Subjects:
Online Access: http://www.sdewes.org/jsdewes/pid10.0435
_version_ 1797871003295023104
author Anak Agung Susastriawan
Harwin Saptoadi
author_facet Anak Agung Susastriawan
Harwin Saptoadi
author_sort Anak Agung Susastriawan
collection DOAJ
description In order to encounter the shortage of fossil fuel, many efforts have been performed by researchers worldwide to find out an alternative technologies of renewable energy conversion. Biomass gasification, one of many promising energy conversion technologies, becomes more attractive in recent years. The present work aims to investigate an effect of air tuyere-grate distance (i.e. 260, 330, 400 mm) and equivalence ratio (i.e. 0.15, 0.20, and 0.25) on thermal behavior of the small-scale downdraft gasifier fed by sawdust. The reactor has internal diameter of 300 mm and height of 725 mm (from grate to the top). The thermal behavior of the gasifier in terms of axial temperature of the reactor, volume fraction of carbon monoxide, hydrogen, methane and higher heating value of the producer gas, and also cold gas efficiency are observed and analyzed. The result indicates that tuyere position above the grate affects the performance of the gasifier. The maximum higher heating value of the producer gas and cold gas efficiency are found at optimum tuyere-grate distance of 330 mm and equivalence ratio of 2.0. The maximum higher heating value of the producer gas and cold gas efficiency are 2.84 MJ/Nm3 and 66.36%, correspondingly. 
first_indexed 2024-04-10T00:36:17Z
format Article
id doaj.art-53f2eef5629941ab97e6c21d94946b94
institution Directory Open Access Journal
issn 1848-9257
language English
last_indexed 2024-04-10T00:36:17Z
publishDate 2023-03-01
publisher SDEWES Centre
record_format Article
series Journal of Sustainable Development of Energy, Water and Environment Systems
spelling doaj.art-53f2eef5629941ab97e6c21d94946b942023-03-14T15:08:38ZengSDEWES CentreJournal of Sustainable Development of Energy, Water and Environment Systems1848-92572023-03-0111111010.13044/j.sdewes.d10.04351100435Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood SawdustAnak Agung Susastriawan0Harwin Saptoadi1 Institut Sains dan Teknologi Akprind, Yogyakarta, Indonesia Universitas Gadjah Mada, Yogyakarta, Indonesia In order to encounter the shortage of fossil fuel, many efforts have been performed by researchers worldwide to find out an alternative technologies of renewable energy conversion. Biomass gasification, one of many promising energy conversion technologies, becomes more attractive in recent years. The present work aims to investigate an effect of air tuyere-grate distance (i.e. 260, 330, 400 mm) and equivalence ratio (i.e. 0.15, 0.20, and 0.25) on thermal behavior of the small-scale downdraft gasifier fed by sawdust. The reactor has internal diameter of 300 mm and height of 725 mm (from grate to the top). The thermal behavior of the gasifier in terms of axial temperature of the reactor, volume fraction of carbon monoxide, hydrogen, methane and higher heating value of the producer gas, and also cold gas efficiency are observed and analyzed. The result indicates that tuyere position above the grate affects the performance of the gasifier. The maximum higher heating value of the producer gas and cold gas efficiency are found at optimum tuyere-grate distance of 330 mm and equivalence ratio of 2.0. The maximum higher heating value of the producer gas and cold gas efficiency are 2.84 MJ/Nm3 and 66.36%, correspondingly.  http://www.sdewes.org/jsdewes/pid10.0435 biomass; downdraft gasifier; equivalence ratio; sawdust; tuyere
spellingShingle Anak Agung Susastriawan
Harwin Saptoadi
Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust
Journal of Sustainable Development of Energy, Water and Environment Systems
biomass; downdraft gasifier; equivalence ratio; sawdust; tuyere
title Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust
title_full Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust
title_fullStr Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust
title_full_unstemmed Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust
title_short Effect of Air Supply Location and Equivalence Ratio on Thermal Performance of Downdraft Gasifier Fed by Wood Sawdust
title_sort effect of air supply location and equivalence ratio on thermal performance of downdraft gasifier fed by wood sawdust
topic biomass; downdraft gasifier; equivalence ratio; sawdust; tuyere
url http://www.sdewes.org/jsdewes/pid10.0435
work_keys_str_mv AT anakagungsusastriawan effectofairsupplylocationandequivalenceratioonthermalperformanceofdowndraftgasifierfedbywoodsawdust
AT harwinsaptoadi effectofairsupplylocationandequivalenceratioonthermalperformanceofdowndraftgasifierfedbywoodsawdust