Honors College Thesis

 

Design of a Green Microbial Fuel Cell for Soft Robotics Public Deposited

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https://ir.library.oregonstate.edu/concern/honors_college_theses/j9602265c

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  • This work introduces the design and fabrication of a green-sourced and mostly biodegradable microbial fuel cell for use in soft robotic applications from environmental sensing to wastewater remediation. Theorized from other biodegradable fuel cells, this prototype achieved maximum power densities of 4.0 x 10−4 W/m2 in the single-chambered design and 5.6 x 10−7 W/m2 using the double-chambered design. Additional modifications to the current design were proposed to optimize fabrication and performance, and can be implemented in later studies. Key Words: Microbial Fuel Cell, soft robotics, green, biodegradable
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  • description.provenance : Submitted by Tessa Van Volkenburg (vanvolkt@oregonstate.edu) on 2017-06-08T04:24:22ZNo. of bitstreams: 2license_rdf: 1527 bytes, checksum: d4743a92da3ca4b8c256fdf0d7f7680f (MD5)VanVolkenburgTessaB2017.pdf: 9722536 bytes, checksum: 0137c1f2deaa8effa8cb8d11a559c452 (MD5)
  • description.provenance : Approved for entry into archive by Steven Van Tuyl(steve.vantuyl@oregonstate.edu) on 2017-06-12T17:04:05Z (GMT) No. of bitstreams: 2license_rdf: 1527 bytes, checksum: d4743a92da3ca4b8c256fdf0d7f7680f (MD5)VanVolkenburgTessaB2017.pdf: 9722536 bytes, checksum: 0137c1f2deaa8effa8cb8d11a559c452 (MD5)
  • description.provenance : Made available in DSpace on 2017-06-12T17:04:05Z (GMT). No. of bitstreams: 2license_rdf: 1527 bytes, checksum: d4743a92da3ca4b8c256fdf0d7f7680f (MD5)VanVolkenburgTessaB2017.pdf: 9722536 bytes, checksum: 0137c1f2deaa8effa8cb8d11a559c452 (MD5)

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