EvoBot: Towards a Robot-Chemostat for Culturing and Maintaining Microbial Fuel Cells (MFCs)
- Pavlina Theodosiou,
- ,
- Farzad Nejatimoharrami,
- ,
- John Greenman,
- Chris Melhuish
- University of the West of England,
- ,
- ,
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewHost publication Subtitle
Lecture Notes in Computer ScienceOriginal language
EnglishPages from-to (Number of pages)
Pages 453-464Publication milestones
- Published - 25/07/2017
Publication status
Published - 25/07/2017
Volume
10384Publisher
Springer, United States, GermanyBook series
- Book series name: Lecture Notes in Computer Science
Volume: 10384
ISSN: 0302-9743
ISBN (Print)
978-3-319-63536-1ISBN (Electronic)
978-3-319-63537-8Publication IDs
- Scopus: 85145778573
Host publication title
Proceedings of the 6th International Conference Living Machines 2017Abstract
In this paper we present EvoBot, a RepRap open-source 3D-printer modified to operate like a robot for culturing and maintaining Microbial Fuel Cells (MFCs). EvoBot is a modular liquid handling robot that has been adapted to host MFCs in its experimental layer, gather data from the MFCs and react on the set thresholds based on a feedback loop. This type of robot-MFC interaction, based on the feedback loop mechanism, will enable us to study further the adaptability and stability of these systems. To date, EvoBot has automated the nurturing process of MFCs with the aim of controlling liquid delivery, which is akin to a chemostat. The chemostat is a well-known microbiology method for culturing bacterial cells under controlled conditions with continuous nutrient supply. EvoBot is perhaps the first pioneering attempt at functionalizing the 3D printing technology by combining it with the chemostat methods. In this paper, we will explore the experiments that EvoBot has carried out so far and how the platform has been optimised over the past two years.
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Access to documents
Accepted author manuscript, 483.18 KB
Related Event
Title
6th International Conference on Biomimetic and Biohybrid Systems: Living Machines 2017
Event type
ConferenceDegree of recognition
International eventDate
25/07/2017 - 28/07/2017Location
Stanford, CAUnited States
