TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM

Microbial Fuel Cell is a renewable technology using microbes as energy source. Microbes often used in MFC system is Shewanella oneidensis MR-1 because of its ability to transfers electrons on solid metal dan flexibility on anaerobic environment. One known method that can help this electron transfer...

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Main Author: Widata (NIM 10612009), Jimmy
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/22699
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:22699
spelling id-itb.:226992017-09-27T10:13:35ZTRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM Widata (NIM 10612009), Jimmy Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/22699 Microbial Fuel Cell is a renewable technology using microbes as energy source. Microbes often used in MFC system is Shewanella oneidensis MR-1 because of its ability to transfers electrons on solid metal dan flexibility on anaerobic environment. One known method that can help this electron transfer is by using electron shuttle mechanism in form of flavins and MtrCAB complex. Secretion of flavins is done by multidrug and toxin efflux transporter then later named as bfe (bacterial flavinadenine dinucleotide [FAD] exporter) (Acc: NC_004347.2). This research purpose is to determine electric potential of Escherichia coli that is transformed by bfe gene. bfe gene used is syntetic gene inserted to pET-23a(+) vector by GenScript Company. E.coli made competent transformed by bfe gene then SDS-PAGE method is used to confirm the expression after IPTG induction. Transformed and non-transformed E.coli then tested on MFC system. MFC used is dual chamber MFC. Electric parameter is measured by Arduino Uno as multimeter and data is collected by PLX-DAQ and Arduino software. Highest OCV for non-transformed E.coli is 0,51V with average 0,482V and highest OCV for transformed E.coli is 0,55V with average 0,516V. Peak power density for non-transformed E.coli is 201,38 mW/m2 when peak current density is 958,54 mA/m2 and resistance is about 300Ω, Peak power density for transformed E.coli is 240,75 mW/m2 when peak current density is 1046,76mA/m2 and resistance is about 400Ω text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Microbial Fuel Cell is a renewable technology using microbes as energy source. Microbes often used in MFC system is Shewanella oneidensis MR-1 because of its ability to transfers electrons on solid metal dan flexibility on anaerobic environment. One known method that can help this electron transfer is by using electron shuttle mechanism in form of flavins and MtrCAB complex. Secretion of flavins is done by multidrug and toxin efflux transporter then later named as bfe (bacterial flavinadenine dinucleotide [FAD] exporter) (Acc: NC_004347.2). This research purpose is to determine electric potential of Escherichia coli that is transformed by bfe gene. bfe gene used is syntetic gene inserted to pET-23a(+) vector by GenScript Company. E.coli made competent transformed by bfe gene then SDS-PAGE method is used to confirm the expression after IPTG induction. Transformed and non-transformed E.coli then tested on MFC system. MFC used is dual chamber MFC. Electric parameter is measured by Arduino Uno as multimeter and data is collected by PLX-DAQ and Arduino software. Highest OCV for non-transformed E.coli is 0,51V with average 0,482V and highest OCV for transformed E.coli is 0,55V with average 0,516V. Peak power density for non-transformed E.coli is 201,38 mW/m2 when peak current density is 958,54 mA/m2 and resistance is about 300Ω, Peak power density for transformed E.coli is 240,75 mW/m2 when peak current density is 1046,76mA/m2 and resistance is about 400Ω
format Final Project
author Widata (NIM 10612009), Jimmy
spellingShingle Widata (NIM 10612009), Jimmy
TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM
author_facet Widata (NIM 10612009), Jimmy
author_sort Widata (NIM 10612009), Jimmy
title TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM
title_short TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM
title_full TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM
title_fullStr TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM
title_full_unstemmed TRANSFORMATION OF BFE (BACTERIAL FAD EXPORTER) GENE ON Escherichia coli BL21 AS ELECTROGENS IN MICROBIAL FUEL CELL (MFC) SYSTEM
title_sort transformation of bfe (bacterial fad exporter) gene on escherichia coli bl21 as electrogens in microbial fuel cell (mfc) system
url https://digilib.itb.ac.id/gdl/view/22699
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