Micro-electro-mechanical systems phosphoric acid fuel cell
View Patent ↗A phosphoric acid fuel cell system comprising a porous electrolyte support, a phosphoric acid electrolyte in the porous electrolyte support, a cathode electrode contacting the phosphoric acid electrolyte, and an anode electrode contacting the phosphoric acid electrolyte.
1. A fuel cell apparatus, comprising:
a porous electrolyte support, said porous electrolyte support having a microelectromechanical systems body with micropore channels,
a phosphoric acid electrolyte reservoir,
a phosphoric acid electrolyte in said phosphoric acid electrolyte reservoir and in said micropore channels of said porous electrolyte support,
a cathode electrode contacting said microelectromechanical systems body with micropore channels and said phosphoric acid electrolyte,
a cathode flow field formed by said micropore channels of said porous electrolyte support connecting said cathode electrode and said phosphoric acid electrolyte reservoir,
an anode electrode contacting said microelectromechanical systems body with micropore channels and said phosphoric acid electrolyte, and
an anode flow field formed by said micropore channels of said porous electrolyte support connecting said anode electrode and said phosphoric acid electrolyte reservoir.
2. The fuel cell apparatus of claim 1 wherein said porous electrolyte support comprises an aerogel.
3. The fuel cell apparatus of claim 1 wherein said porous electrolyte support is serpentine to increase overall surface area of the electrode and wherein said micropore channels have a width within the range of 10-1000 μm.
4. A fuel cell apparatus, comprising:
porous electrolyte support means for containing an electrolyte, said porous electrolyte support means having a microelectromechanical systems body with micropore channels,
a phosphoric acid electrolyte reservoir,
a phosphoric acid electrolyte in said phosphoric acid electrolyte reservoir and in said micropore channels of said porous electrolyte support means,
a cathode electrode contacting said microelectromechanical systems body with micropore channels and said phosphoric acid electrolyte,
a cathode flow field formed by said micropore channels of said porous electrolyte support means connecting said cathode electrode and said phosphoric acid electrolyte reservoir,
an anode electrode contacting said microelectromechanical systems body with micropore channels and said phosphoric acid electrolyte, and
an anode flow field formed by said micropore channels of said porous electrolyte support means connecting said anode electrode and said phosphoric acid electrolyte reservoir.
5. The fuel cell apparatus of claim 4 wherein said porous electrolyte support means comprises an aerogel.