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The CoPc-Pt based catalyst should be a good alternation for oxygen electro-reduction reaction in DMFC.
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Based on this problem, for PEMFCs to have wide practical applications and become commercially viable, the challenging issue of the high catalyst cost resulting from the exclusive adoption of Pt or Pt-based catalysts should be addressed.
Even though remarkable scientific results in terms of high activity and stability have been reported from various research groups, the ultimate research direction for fuel cell catalyst should be non-Pt based catalysts, because those results above mentioned were based on the catalytic performance of platinum with high cost.
Based upon this, the theoretical carbon content of the catalyst should be 0.77 wt%.
Despite of good transesterification activity for solid base catalyst, a good candidate of basic catalyst should be able to tolerate free fatty acids and moisture content in feedstock oil.
The catalyst should be stable in its solid form.
Prepared aliquots of the catalyst should be used within 3 months.
We argue that reactors employing monolithic catalysts should be based on its optimal choice of geometry.
Similarly, nano-catalysts should be able to extract more energy from burning coal at higher temperatures.
To simulate the dynamic behavior of reactors and to develop or discriminate catalysts, mechanistically based kinetics should be more useful.
In order to fully exploit the green characteristics of solid base catalysts they should be fabricated into macrostructured rather than powder form.
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