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- Membraneless_Fuel_Cells abstract "Membraneless Fuel Cells convert stored chemical energy into electrical energy without the use of a conducting membrane as with other types of fuel cells. In Laminar Flow Fuel Cells (LFFC) this is achieved by exploiting the phenomenon of non-mixing laminar flows where the interface between the two flows works as a proton/ion conductor. The interface allows for high diffusivity and eliminates the need for costly membranes. The operating principles of these cells mean that they can only be built to millimeter-scale sizes. The lack of a membrane means they are cheaper but the size limits their use to portable applications which require small amounts of power.The efficiency of these cells is generally much higher than modern electricity producing sources. For example, a fossil fuel power plant system can achieve a 40% electrical conversion efficiency while a nuclear power plant is slightly lower at 32%. Fuel cell systems are capable of reaching efficiencies in the range of 55%–70%. However, as with any process, fuel cells also experience inherent losses due to their design and manufacturing processes.".
- Membraneless_Fuel_Cells thumbnail PEM_fuel_cell.svg?width=300.
- Membraneless_Fuel_Cells wikiPageID "29102401".
- Membraneless_Fuel_Cells wikiPageRevisionID "603957374".
- Membraneless_Fuel_Cells hasPhotoCollection Membraneless_Fuel_Cells.
- Membraneless_Fuel_Cells subject Category:Fuel_cells.
- Membraneless_Fuel_Cells type Artifact100021939.
- Membraneless_Fuel_Cells type Cell102991048.
- Membraneless_Fuel_Cells type Device103183080.
- Membraneless_Fuel_Cells type ElectricalDevice103269401.
- Membraneless_Fuel_Cells type FuelCell103400798.
- Membraneless_Fuel_Cells type FuelCells.
- Membraneless_Fuel_Cells type Instrumentality103575240.
- Membraneless_Fuel_Cells type Object100002684.
- Membraneless_Fuel_Cells type PhysicalEntity100001930.
- Membraneless_Fuel_Cells type Whole100003553.
- Membraneless_Fuel_Cells comment "Membraneless Fuel Cells convert stored chemical energy into electrical energy without the use of a conducting membrane as with other types of fuel cells. In Laminar Flow Fuel Cells (LFFC) this is achieved by exploiting the phenomenon of non-mixing laminar flows where the interface between the two flows works as a proton/ion conductor. The interface allows for high diffusivity and eliminates the need for costly membranes.".
- Membraneless_Fuel_Cells label "Membraneless Fuel Cells".
- Membraneless_Fuel_Cells sameAs m.0fqp8dt.
- Membraneless_Fuel_Cells sameAs Q17103568.
- Membraneless_Fuel_Cells sameAs Q17103568.
- Membraneless_Fuel_Cells sameAs Membraneless_Fuel_Cells.
- Membraneless_Fuel_Cells wasDerivedFrom Membraneless_Fuel_Cells?oldid=603957374.
- Membraneless_Fuel_Cells depiction PEM_fuel_cell.svg.
- Membraneless_Fuel_Cells isPrimaryTopicOf Membraneless_Fuel_Cells.