Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology
This study had compared raw biomass and pre-treated biomass co-gasified with coal with the aim of investigating the reliability of pre-treated biomass for enhancing gasification performance. Sawdust (SD) and wood pellet (palletisation form of sawdust - WP) and blends of these two feedstocks with sub...
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my.ump.umpir.283822020-06-04T00:08:12Z http://umpir.ump.edu.my/id/eprint/28382/ Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology Fatin Zafirah, Mansur C. K. M., Faizal Monir, Minhaj Uddin Nur Asma Fazli, Abdul Samad Atnaw, Samson M. Shaharin Anwar, Sulaiman T Technology (General) This study had compared raw biomass and pre-treated biomass co-gasified with coal with the aim of investigating the reliability of pre-treated biomass for enhancing gasification performance. Sawdust (SD) and wood pellet (palletisation form of sawdust - WP) and blends of these two feedstocks with sub-bituminous coal (CL), were gasified in an air atmosphere using an external heated fixed-bed downdraft gasifier system. Response surface methodology (RSM) incorporating the central composite design (CCD) was applied to assist the comparison of all operating variables. The three independent variables were investigated within a specific range of coal blending ratios from 25% to 75%, gasification temperature from 650 °C to 850 °C and equivalence ratio from 0.20 to 0.30 against the dependent variables, namely the H2/CO ratio and higher heating value of the syngas (HHVsyngas). The results revealed the H2/CO ratio and a higher heating value of the syngas of more than 1.585 and 6.072 MJ/Nm3, respectively. Findings also showed that the H2/CO ratio in the syngas from CL/WP possessed a higher value than the CL/SD. In contrast, CL/SD possessed a higher heating value for syngas with about 1% difference compared to the CL/WP. Therefore, co-gasified coal with wood pellets could potentially be a substitute for sawdust. Elsevier 2020 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/28382/1/Co-gasification%20between%20coal.sawdust%20and%20coal1.pdf Fatin Zafirah, Mansur and C. K. M., Faizal and Monir, Minhaj Uddin and Nur Asma Fazli, Abdul Samad and Atnaw, Samson M. and Shaharin Anwar, Sulaiman (2020) Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology. International Journal of Hydrogen Energy, 45 (32). pp. 15963-15976. ISSN 0360-3199 https://doi.org/10.1016/j.ijhydene.2020.04.029 https://doi.org/10.1016/j.ijhydene.2020.04.029 |
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T Technology (General) Fatin Zafirah, Mansur C. K. M., Faizal Monir, Minhaj Uddin Nur Asma Fazli, Abdul Samad Atnaw, Samson M. Shaharin Anwar, Sulaiman Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology |
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This study had compared raw biomass and pre-treated biomass co-gasified with coal with the aim of investigating the reliability of pre-treated biomass for enhancing gasification performance. Sawdust (SD) and wood pellet (palletisation form of sawdust - WP) and blends of these two feedstocks with sub-bituminous coal (CL), were gasified in an air atmosphere using an external heated fixed-bed downdraft gasifier system. Response surface methodology (RSM) incorporating the central composite design (CCD) was applied to assist the comparison of all operating variables. The three independent variables were investigated within a specific range of coal blending ratios from 25% to 75%, gasification temperature from 650 °C to 850 °C and equivalence ratio from 0.20 to 0.30 against the dependent variables, namely the H2/CO ratio and higher heating value of the syngas (HHVsyngas). The results revealed the H2/CO ratio and a higher heating value of the syngas of more than 1.585 and 6.072 MJ/Nm3, respectively. Findings also showed that the H2/CO ratio in the syngas from CL/WP possessed a higher value than the CL/SD. In contrast, CL/SD possessed a higher heating value for syngas with about 1% difference compared to the CL/WP. Therefore, co-gasified coal with wood pellets could potentially be a substitute for sawdust. |
format |
Article |
author |
Fatin Zafirah, Mansur C. K. M., Faizal Monir, Minhaj Uddin Nur Asma Fazli, Abdul Samad Atnaw, Samson M. Shaharin Anwar, Sulaiman |
author_facet |
Fatin Zafirah, Mansur C. K. M., Faizal Monir, Minhaj Uddin Nur Asma Fazli, Abdul Samad Atnaw, Samson M. Shaharin Anwar, Sulaiman |
author_sort |
Fatin Zafirah, Mansur |
title |
Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology |
title_short |
Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology |
title_full |
Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology |
title_fullStr |
Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology |
title_full_unstemmed |
Co-gasification between coal/sawdust and coal/wood pellet: A parametric study using response surface methodology |
title_sort |
co-gasification between coal/sawdust and coal/wood pellet: a parametric study using response surface methodology |
publisher |
Elsevier |
publishDate |
2020 |
url |
http://umpir.ump.edu.my/id/eprint/28382/1/Co-gasification%20between%20coal.sawdust%20and%20coal1.pdf http://umpir.ump.edu.my/id/eprint/28382/ https://doi.org/10.1016/j.ijhydene.2020.04.029 https://doi.org/10.1016/j.ijhydene.2020.04.029 |
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1669007773649600512 |
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13.1944895 |