Browse Publications Technical Papers 2003-01-0802
2003-03-03

Leaching of Ions from Fuel Cell Vehicle Cooling System and Their Removal to Maintain Low Conductivity 2003-01-0802

The deionized water/ethylene glycol coolant used in the Ford Focus Fuel Cell Vehicle (FCV) requires very low conductivity (< 5 μS/cm) to avoid current leakage and short circuiting, presenting a unique water chemistry issue. The coolant's initially low conductivity increases as: 1) ions are released from system materials through leaching, degradation and/or corrosion, and 2) organic acids are produced by ethylene glycol degradation. Estimating the leaching potential of these ions is necessary for design and operation of fuel cell vehicles. An on-board mixed-bed, ion exchange resin filter is used to maintain low conductivity by removing leached or produced ions.
Various candidate materials were evaluated for leaching potential by exposing them to coolant at the design operating temperature for several months and periodically analyzing the coolant for ions. There was a wide range of leaching potential among the materials evaluated, which led to careful selection of materials for the cooling system. Ethylene glycol was also found to slowly degrade to organic acids, which are dissociated to organic ions, and significantly affect the conductivity of the coolant.
The ion exchange capacity of several anion and cation exchange resins were also assessed under typical system operating conditions to determine their ion exchange capacity.
Recommendations were made for cooling system manufacture, including a system wash prior to installation of the ion exchange resin. In addition, the size and frequency of replacement of the on-board ion exchange resin filter was determined. A conservative estimate of the expected useful life of the on-board ion exchange resin filter is 60 days. The expected life can be extended to as much as 180 days by an initial rinse of the system.

SAE MOBILUS

Subscribers can view annotate, and download all of SAE's content. Learn More »

Access SAE MOBILUS »

Members save up to 16% off list price.
Login to see discount.
Special Offer: Download multiple Technical Papers each year? TechSelect is a cost-effective subscription option to select and download 12-100 full-text Technical Papers per year. Find more information here.
We also recommend:
TECHNICAL PAPER

Performance of Candidate Materials and Coatings for Thermal Management Systems for Proton Exchange Membrane Fuel Cells

2006-01-0219

View Details

TECHNICAL PAPER

Failure Analysis of Polymer Electrolyte Fuel Cells

2008-01-0634

View Details

TECHNICAL PAPER

Development of Fuel Cell Stack for New FCV

2016-01-0529

View Details

X