Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell

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...

Full description

Bibliographic Details
Main Authors: SAHARI, SITI KUDNIE, BUTIT, AMIR MAINA, NGAINI, ZAINAB, YANUAR ZULARDIANSYAH ARIEF, YANUAR ZULARDIANSYAH ARIEF, KURYATI KIPLI, KURYATI KIPLI, MARTIN ANYI, MARTIN ANYI, ASMAHANI AWANG, ASMAHANI AWANG, MUHAMMAD KASHIF, MUHAMMAD KASHIF, MOHAMAD RUSOP MAHMOOD, MOHAMAD RUSOP MAHMOOD, ZAIDI EMBONG, ZAIDI EMBONG, LILIK HASANAH, LILIK HASANAH, ABDUL RAHMAN KRAM, ABDUL RAHMAN KRAM, MARINI SAWAWI, MARINI SAWAWI
Format: Article
Language:English
Published: 2023
Subjects:
Online Access:http://eprints.uthm.edu.my/10764/1/J16640_cad56738c14a6b6126e49bd4340d7209.pdf
_version_ 1796870230331359232
author SAHARI, SITI KUDNIE
BUTIT, AMIR MAINA
NGAINI, ZAINAB
YANUAR ZULARDIANSYAH ARIEF, YANUAR ZULARDIANSYAH ARIEF
KURYATI KIPLI, KURYATI KIPLI
MARTIN ANYI, MARTIN ANYI
ASMAHANI AWANG, ASMAHANI AWANG
MUHAMMAD KASHIF, MUHAMMAD KASHIF
MOHAMAD RUSOP MAHMOOD, MOHAMAD RUSOP MAHMOOD
ZAIDI EMBONG, ZAIDI EMBONG
LILIK HASANAH, LILIK HASANAH
ABDUL RAHMAN KRAM, ABDUL RAHMAN KRAM
MARINI SAWAWI, MARINI SAWAWI
author_facet SAHARI, SITI KUDNIE
BUTIT, AMIR MAINA
NGAINI, ZAINAB
YANUAR ZULARDIANSYAH ARIEF, YANUAR ZULARDIANSYAH ARIEF
KURYATI KIPLI, KURYATI KIPLI
MARTIN ANYI, MARTIN ANYI
ASMAHANI AWANG, ASMAHANI AWANG
MUHAMMAD KASHIF, MUHAMMAD KASHIF
MOHAMAD RUSOP MAHMOOD, MOHAMAD RUSOP MAHMOOD
ZAIDI EMBONG, ZAIDI EMBONG
LILIK HASANAH, LILIK HASANAH
ABDUL RAHMAN KRAM, ABDUL RAHMAN KRAM
MARINI SAWAWI, MARINI SAWAWI
author_sort SAHARI, SITI KUDNIE
collection UTHM
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.
first_indexed 2024-03-05T22:06:27Z
format Article
id uthm.eprints-10764
institution Universiti Tun Hussein Onn Malaysia
language English
last_indexed 2024-03-05T22:06:27Z
publishDate 2023
record_format dspace
spelling uthm.eprints-107642024-01-17T01:52:19Z http://eprints.uthm.edu.my/10764/ Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell SAHARI, SITI KUDNIE BUTIT, AMIR MAINA NGAINI, ZAINAB YANUAR ZULARDIANSYAH ARIEF, YANUAR ZULARDIANSYAH ARIEF KURYATI KIPLI, KURYATI KIPLI MARTIN ANYI, MARTIN ANYI ASMAHANI AWANG, ASMAHANI AWANG MUHAMMAD KASHIF, MUHAMMAD KASHIF MOHAMAD RUSOP MAHMOOD, MOHAMAD RUSOP MAHMOOD ZAIDI EMBONG, ZAIDI EMBONG LILIK HASANAH, LILIK HASANAH ABDUL RAHMAN KRAM, ABDUL RAHMAN KRAM MARINI SAWAWI, MARINI SAWAWI T Technology (General) 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 Article PeerReviewed text en http://eprints.uthm.edu.my/10764/1/J16640_cad56738c14a6b6126e49bd4340d7209.pdf SAHARI, SITI KUDNIE and BUTIT, AMIR MAINA and NGAINI, ZAINAB and YANUAR ZULARDIANSYAH ARIEF, YANUAR ZULARDIANSYAH ARIEF and KURYATI KIPLI, KURYATI KIPLI and MARTIN ANYI, MARTIN ANYI and ASMAHANI AWANG, ASMAHANI AWANG and MUHAMMAD KASHIF, MUHAMMAD KASHIF and MOHAMAD RUSOP MAHMOOD, MOHAMAD RUSOP MAHMOOD and ZAIDI EMBONG, ZAIDI EMBONG and LILIK HASANAH, LILIK HASANAH and ABDUL RAHMAN KRAM, ABDUL RAHMAN KRAM and MARINI SAWAWI, MARINI SAWAWI (2023) Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell. Sains Malaysiana, 52 (6). pp. 1855-1864. http://doi.org/10.17576/jsm-2023-5206-20
spellingShingle T Technology (General)
SAHARI, SITI KUDNIE
BUTIT, AMIR MAINA
NGAINI, ZAINAB
YANUAR ZULARDIANSYAH ARIEF, YANUAR ZULARDIANSYAH ARIEF
KURYATI KIPLI, KURYATI KIPLI
MARTIN ANYI, MARTIN ANYI
ASMAHANI AWANG, ASMAHANI AWANG
MUHAMMAD KASHIF, MUHAMMAD KASHIF
MOHAMAD RUSOP MAHMOOD, MOHAMAD RUSOP MAHMOOD
ZAIDI EMBONG, ZAIDI EMBONG
LILIK HASANAH, LILIK HASANAH
ABDUL RAHMAN KRAM, ABDUL RAHMAN KRAM
MARINI SAWAWI, MARINI SAWAWI
Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell
title Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell
title_full Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell
title_fullStr Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell
title_full_unstemmed Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell
title_short Bioelectricity Generation from Bamboo Leaves Waste in a Double Chambered Microbial Fuel Cell
title_sort bioelectricity generation from bamboo leaves waste in a double chambered microbial fuel cell
topic T Technology (General)
url http://eprints.uthm.edu.my/10764/1/J16640_cad56738c14a6b6126e49bd4340d7209.pdf
work_keys_str_mv AT saharisitikudnie bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT butitamirmaina bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT ngainizainab bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT yanuarzulardiansyahariefyanuarzulardiansyaharief bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT kuryatikiplikuryatikipli bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT martinanyimartinanyi bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT asmahaniawangasmahaniawang bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT muhammadkashifmuhammadkashif bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT mohamadrusopmahmoodmohamadrusopmahmood bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT zaidiembongzaidiembong bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT lilikhasanahlilikhasanah bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT abdulrahmankramabdulrahmankram bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell
AT marinisawawimarinisawawi bioelectricitygenerationfrombambooleaveswasteinadoublechamberedmicrobialfuelcell