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The ignition and extinction behaviors of the reactor on different catalysts were also investigated showing that the ignition temperature depends significantly on the composition of the supports.
The catalytic activity and the ignition-extinction temperatures were investigated in relation to chemical composition of the supports, the types of active metal used (Pt, Pd), and the surface concentration of the metal.
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The catalytic activity of Pt is strongly dependent on the composition of the support.
The influence of the composition of the supporting electrolyte, citrate concentration and pH was evaluated.
Thermal stability of APMS was found not to depend on the chemical composition of the support.
The morphology, structure, and composition of the support material significantly affect the catalytic activity of the fuel cell catalyst.
In fact, the sensitivity of the adsorptive stripping procedure for a particular analyte is usually significantly influenced by the composition of the supporting buffer and pH value.
The chemical composition of the support is also important as virtually the number of polymeric platforms is unlimited, ranging from natural to synthetic ones.
Influence of the phase composition of the support on vanadium speciation as well as on surface architecture of the oxovanadium entities was discussed.
The composition of the supported liquid membrane (SLM) and carrier was optimized in order to achieve reasonable extraction performance of all the five alkaloids.
The experimental variables (composition of the supporting electrolyte, pre-concentration potential and time, potential of the RBiABE activation, and DP parameters), as well as possible interferences, were investigated.
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