Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu

The use of electricity in Indonesia with energy sources from fossils still dominates compared to other energy sources. Of the total power plant capacity in the country today, coal-fired steam power plants (PLTU) still dominate, namely 24,883 MW or 48% of the total domestic generating capacity of 52,...

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Main Authors: Indah Sulistiyawati, Nur Laila Rahayu, Fitria Septiana Purwitaningrum
Format: Article
Language:English
Published: Universitas Jenderal Soedirman 2020-05-01
Series:Majalah Ilmiah Biologi Biosfera: A Scientific Journal
Subjects:
Online Access:https://journal.bio.unsoed.ac.id/index.php/biosfera/article/view/1147
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spelling doaj-580d51d01b5e46ea82a3a73fcaf8025a2021-04-27T05:07:33ZengUniversitas Jenderal SoedirmanMajalah Ilmiah Biologi Biosfera: A Scientific Journal0853-16252528-20502020-05-0137211211710.20884/1.mib.2020.37.2.1147524Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan TahuIndah Sulistiyawati0Nur Laila Rahayu1Fitria Septiana Purwitaningrum2Program Studi Biologi, Fakultas Sains dan Teknologi, Universitas Nahdlatul Ulama PurwokertoProgram Studi Biologi, Fakultas Sains dan Teknologi, Universitas Nahdlatul Ulama PurwokertoProgram Studi Biologi, Fakultas Sains dan Teknologi, Universitas Nahdlatul Ulama PurwokertoThe use of electricity in Indonesia with energy sources from fossils still dominates compared to other energy sources. Of the total power plant capacity in the country today, coal-fired steam power plants (PLTU) still dominate, namely 24,883 MW or 48% of the total domestic generating capacity of 52,231 MW. Fossil as a non-renewable fuel is produced continuously and will certainly run out. Development of renewable alternative energy is needed and the amount is not limited to being a renewable energy source. An alternative renewable energy source that has been developed to produce alternative electrical energy, one of which is a microbial fuel cell (MFC). This study aims to utilize Lactobacillus bulgaricus  bacteria to metabolize waste water tofu and tempeh as a substrate in the MFC system to produce electrical energy. Research using tofu waste substrate has been carried out, but the use of tempe waste substrate has never been done, and the use of a mixture of waste substrate is not yet known. Microbial Fuel Cell (MFC) using L. bulgaricus in tofu waste produced a potential voltage with the highest yield of 282 mV and the number of bacterial cells reached 12.4 x 106 CFU / mL at the 5th hour incubation, whereas the mixture of tempeh and tofu waste produces a bioelectric potential of 274 mV at the 3rd hour incubationhttps://journal.bio.unsoed.ac.id/index.php/biosfera/article/view/1147microbial fuel cell, lactobacillus bulgaricus, tempe and tofu waste
collection DOAJ
language English
format Article
sources DOAJ
author Indah Sulistiyawati
Nur Laila Rahayu
Fitria Septiana Purwitaningrum
spellingShingle Indah Sulistiyawati
Nur Laila Rahayu
Fitria Septiana Purwitaningrum
Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu
Majalah Ilmiah Biologi Biosfera: A Scientific Journal
microbial fuel cell, lactobacillus bulgaricus, tempe and tofu waste
author_facet Indah Sulistiyawati
Nur Laila Rahayu
Fitria Septiana Purwitaningrum
author_sort Indah Sulistiyawati
title Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu
title_short Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu
title_full Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu
title_fullStr Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu
title_full_unstemmed Produksi Biolistrik menggunakan Microbial Fuel Cell (MFC) Lactobacillus bulgaricus dengan Substrat Limbah Tempe dan Tahu
title_sort produksi biolistrik menggunakan microbial fuel cell (mfc) lactobacillus bulgaricus dengan substrat limbah tempe dan tahu
publisher Universitas Jenderal Soedirman
series Majalah Ilmiah Biologi Biosfera: A Scientific Journal
issn 0853-1625
2528-2050
publishDate 2020-05-01
description The use of electricity in Indonesia with energy sources from fossils still dominates compared to other energy sources. Of the total power plant capacity in the country today, coal-fired steam power plants (PLTU) still dominate, namely 24,883 MW or 48% of the total domestic generating capacity of 52,231 MW. Fossil as a non-renewable fuel is produced continuously and will certainly run out. Development of renewable alternative energy is needed and the amount is not limited to being a renewable energy source. An alternative renewable energy source that has been developed to produce alternative electrical energy, one of which is a microbial fuel cell (MFC). This study aims to utilize Lactobacillus bulgaricus  bacteria to metabolize waste water tofu and tempeh as a substrate in the MFC system to produce electrical energy. Research using tofu waste substrate has been carried out, but the use of tempe waste substrate has never been done, and the use of a mixture of waste substrate is not yet known. Microbial Fuel Cell (MFC) using L. bulgaricus in tofu waste produced a potential voltage with the highest yield of 282 mV and the number of bacterial cells reached 12.4 x 106 CFU / mL at the 5th hour incubation, whereas the mixture of tempeh and tofu waste produces a bioelectric potential of 274 mV at the 3rd hour incubation
topic microbial fuel cell, lactobacillus bulgaricus, tempe and tofu waste
url https://journal.bio.unsoed.ac.id/index.php/biosfera/article/view/1147
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