Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]

This study investigated the utilization of bamboo leaf waste and two varieties of bacterial sources, chicken manure and effective microorganism, in a microbial fuel cell (MFC) at three substrate concentrations (40 g/liter, 80 g/liter, and 160 g/liter). The primary objective was to investigate the ki...

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Published in:Sains Malaysiana
Main Author: Sahari S.K.; Butit A.M.; Ngaini Z.; Arief Y.Z.; Kipli K.; Anyi M.; Awang A.; Kashif M.; Mahmood M.R.; Embong Z.; Hasanah L.; Kram A.R.; Sawawi M.
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85170410592&doi=10.17576%2fjsm-2023-5206-20&partnerID=40&md5=1e4c2d527ffe29ab865bb9f0db71ce0a
id 2-s2.0-85170410592
spelling 2-s2.0-85170410592
Sahari S.K.; Butit A.M.; Ngaini Z.; Arief Y.Z.; Kipli K.; Anyi M.; Awang A.; Kashif M.; Mahmood M.R.; Embong Z.; Hasanah L.; Kram A.R.; Sawawi M.
Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
2023
Sains Malaysiana
52
6
10.17576/jsm-2023-5206-20
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85170410592&doi=10.17576%2fjsm-2023-5206-20&partnerID=40&md5=1e4c2d527ffe29ab865bb9f0db71ce0a
This study investigated the utilization of bamboo leaf waste and two varieties of bacterial sources, chicken manure and effective microorganism, in a microbial fuel cell (MFC) at three substrate concentrations (40 g/liter, 80 g/liter, and 160 g/liter). The primary objective was to investigate the kinetics of bacterial growth at various substrate concentrations in the MFC, as well as the effect of light conditions and pH on MFC power generation. The MFC had dual chambers with graphite electrodes serving as the cathode and anode. Within 72 h, the highest power density of 90.05 mV was attained using the highest substrate concentration of bamboo leaf waste and chicken manure during the logarithmic growth phase, albeit with a shorter duration. The longest sustained phase of bacterial activity was observed during the stationary phase, at the highest substrate concentration of 160 g/liter, followed by 80 g/liter and 40 g/liter. These results indicate that the logarithmic phase is the optimal time for bacterial activity in the MFC. However, attaining long-term stability in power generation in the logarithmic phase requires careful parameter optimization. © 2023 Penerbit Universiti Kebangsaan Malaysia. All rights reserved.
Penerbit Universiti Kebangsaan Malaysia
01266039
English
Article
All Open Access; Gold Open Access
author Sahari S.K.; Butit A.M.; Ngaini Z.; Arief Y.Z.; Kipli K.; Anyi M.; Awang A.; Kashif M.; Mahmood M.R.; Embong Z.; Hasanah L.; Kram A.R.; Sawawi M.
spellingShingle Sahari S.K.; Butit A.M.; Ngaini Z.; Arief Y.Z.; Kipli K.; Anyi M.; Awang A.; Kashif M.; Mahmood M.R.; Embong Z.; Hasanah L.; Kram A.R.; Sawawi M.
Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
author_facet Sahari S.K.; Butit A.M.; Ngaini Z.; Arief Y.Z.; Kipli K.; Anyi M.; Awang A.; Kashif M.; Mahmood M.R.; Embong Z.; Hasanah L.; Kram A.R.; Sawawi M.
author_sort Sahari S.K.; Butit A.M.; Ngaini Z.; Arief Y.Z.; Kipli K.; Anyi M.; Awang A.; Kashif M.; Mahmood M.R.; Embong Z.; Hasanah L.; Kram A.R.; Sawawi M.
title Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
title_short Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
title_full Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
title_fullStr Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
title_full_unstemmed Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
title_sort Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell; [Penjanaan Bioelektrik daripada Sisa Daun Buluh dalam Sel Bahan Api Mikrob Dua Kebuk]
publishDate 2023
container_title Sains Malaysiana
container_volume 52
container_issue 6
doi_str_mv 10.17576/jsm-2023-5206-20
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85170410592&doi=10.17576%2fjsm-2023-5206-20&partnerID=40&md5=1e4c2d527ffe29ab865bb9f0db71ce0a
description This study investigated the utilization of bamboo leaf waste and two varieties of bacterial sources, chicken manure and effective microorganism, in a microbial fuel cell (MFC) at three substrate concentrations (40 g/liter, 80 g/liter, and 160 g/liter). The primary objective was to investigate the kinetics of bacterial growth at various substrate concentrations in the MFC, as well as the effect of light conditions and pH on MFC power generation. The MFC had dual chambers with graphite electrodes serving as the cathode and anode. Within 72 h, the highest power density of 90.05 mV was attained using the highest substrate concentration of bamboo leaf waste and chicken manure during the logarithmic growth phase, albeit with a shorter duration. The longest sustained phase of bacterial activity was observed during the stationary phase, at the highest substrate concentration of 160 g/liter, followed by 80 g/liter and 40 g/liter. These results indicate that the logarithmic phase is the optimal time for bacterial activity in the MFC. However, attaining long-term stability in power generation in the logarithmic phase requires careful parameter optimization. © 2023 Penerbit Universiti Kebangsaan Malaysia. All rights reserved.
publisher Penerbit Universiti Kebangsaan Malaysia
issn 01266039
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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