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CE, OE and Co performance conditions considered in step 1 were investigated.
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The H2 combustion treatment of the Au/Co3O4 catalyst on the micro device prevented the degradation of the CO oxidation performance.
Among the catalysts, it was found that Pd/Ce0.58Zr0.42O2 demonstrates superior CO oxidation performance after sulfur aging and regeneration treatment.
Because of the electron trapping of the metal core, metal Cu2O nanocrystals exhibited enhanced CO sensing performance in comparison with pure Cu2O.
A tensile lattice strain in the 0.6 2.4% range of the cubic CexSm1-xO2 lattice was found to be strongly correlated with the CO oxidation performance.
The CO oxidation performance of the Au/Co3O4 catalyst on the micro gas sensor device with different treatment conditions has been investigated.
Both include Cr and Co and performance in these schemes is consistently within the acceptable ranges quoted.
Monitoring and evaluation systems are weak in most countries and there is not an established practice of concise and focused lessons learned workshops or after-action-reviews. Overall, there are relatively few evaluations of CO level performance.
The relative co-benefit performance would then be translated into a co-benefit factor.
To analyse co-expression performance during cancer progression, understanding that at each mutation step the co-expression of a gene pair may change randomly is critical.
The sequential differentiation of tranches according to co-benefit performance would only provide meaningful incentives, if large amounts of REDD units with high co-benefit provision would exist.
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