Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell
Microbial fuel cell has been considered a new emerging technology for renewable and sustainable electricity production. The energy can be extracted from organic waste materials which time independently increase in mass. In the present study, it was demonstrated that lignocellulosic material such as...
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my.utm.850032020-02-29T13:19:10Z http://eprints.utm.my/id/eprint/85003/ Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell Ghazali, Nazlee Faisal Nik Mahmood, Nik Azmi Abu Bakar, Noor Fadzilah Ibrahim, Kamarul Asri’ TP Chemical technology Microbial fuel cell has been considered a new emerging technology for renewable and sustainable electricity production. The energy can be extracted from organic waste materials which time independently increase in mass. In the present study, it was demonstrated that lignocellulosic material such as empty fruit bunch (EFB) can be used to produce electricity. Clostridium cellulolyticum and Bacilli E1 were used to activate EFB degradation and electricity generation respectively. It was also demonstrated that the present EFB based MFC was affected in terms of power produced with much higher power was obtained at 37.5 ℃ with power value of 825 ± 3.08 mW/m2 compared to 25 and 50 ℃, which produced 756 ± 1.14 mW/m2 and 345 ± 1.78 mW/m2. At elevated temperature (50 ℃) showed decrease of power density value compared to lower temperature operated MFC, which is believed to be microbial metabolism dependent. Penerbit UTM Press 2019 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/85003/1/NazleeFaisalGhazali2019_TemperatureDependenceofPowerGeneration.pdf Ghazali, Nazlee Faisal and Nik Mahmood, Nik Azmi and Abu Bakar, Noor Fadzilah and Ibrahim, Kamarul Asri’ (2019) Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell. Malaysian Journal of Fundamental and Applied Sciences, 15 (4). pp. 489-491. ISSN 2289-5981 https://mjfas.utm.my/index.php/mjfas/article/download/1214/pdf |
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Microbial fuel cell has been considered a new emerging technology for renewable and sustainable electricity production. The energy can be extracted from organic waste materials which time independently increase in mass. In the present study, it was demonstrated that lignocellulosic material such as empty fruit bunch (EFB) can be used to produce electricity. Clostridium cellulolyticum and Bacilli E1 were used to activate EFB degradation and electricity generation respectively. It was also demonstrated that the present EFB based MFC was affected in terms of power produced with much higher power was obtained at 37.5 ℃ with power value of 825 ± 3.08 mW/m2 compared to 25 and 50 ℃, which produced 756 ± 1.14 mW/m2 and 345 ± 1.78 mW/m2. At elevated temperature (50 ℃) showed decrease of power density value compared to lower temperature operated MFC, which is believed to be microbial metabolism dependent. |
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Article |
author |
Ghazali, Nazlee Faisal Nik Mahmood, Nik Azmi Abu Bakar, Noor Fadzilah Ibrahim, Kamarul Asri’ |
author_facet |
Ghazali, Nazlee Faisal Nik Mahmood, Nik Azmi Abu Bakar, Noor Fadzilah Ibrahim, Kamarul Asri’ |
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Ghazali, Nazlee Faisal |
title |
Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell |
title_short |
Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell |
title_full |
Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell |
title_fullStr |
Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell |
title_full_unstemmed |
Temperature dependence of power generation of empty fruit bunch (EFB) based microbial fuel cell |
title_sort |
temperature dependence of power generation of empty fruit bunch (efb) based microbial fuel cell |
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Penerbit UTM Press |
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2019 |
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http://eprints.utm.my/id/eprint/85003/1/NazleeFaisalGhazali2019_TemperatureDependenceofPowerGeneration.pdf http://eprints.utm.my/id/eprint/85003/ https://mjfas.utm.my/index.php/mjfas/article/download/1214/pdf |
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