Experimental determination of NiFe2O4-water nanofluid thermophysical properties and evaluation of its potential as a coolant in polymer electrolyte membrane fuel cells

Author:

Sahin FevziORCID,Acar Mahmut CanerORCID,Genc Omer

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference58 articles.

1. Thermal and electrical experimental characterisation of a 1 kW PEM fuel cell stack;Neto;Int J Hydrogen Energy,2013

2. Synthesis and optimization of future hydrogen energy infrastructure planning in Peninsular Malaysia;Kamarudin;Int J Hydrogen Energy,2009

3. Study on heat and mass transfer of a planar membrane humidifier for PEM fuel cell;Yan;Int J Heat Mass Tran,2020

4. Polymer electrolyte fuel cell stack research and development (Reprinted from Int J Hydrogen Energy, vol 33, pg 1941-96, 2008);Squadrito;Int J Hydrogen Energy,2009

5. Numerical study on heat and mass transfer performance of the planar membrane-based humidifier for PEMFC;Yan;Int J Heat Mass Tran,2020

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