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It can be seen that none of the economic optimum loads are restricted by the temperature limit, while all of the optimum emission loads exceed this constraint.
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In contrast, the photocatalytic performance of Pt-CuS/ZnIn2S4 depends strongly on the amount of CuS-loading, and the optimum loading amount of CuS is approximately1.0 wt.%.
Significantly, the optimum loading of the ionomer showed a nondependence relationship with Pt loadings in catalyst layers.
The optimum loading of this photocatalyst was 1 g/dm3.
The optimum loading of TiO2 nanoparticles was identified at 10%.
In addition, 12% loading was found as an optimum loading of EBR30 in composite sample.
Herrmann (1999) found that the optimum loading of photocatalyst was dependent on the initial solute concentration.
From these results, 3VCA was selected as optimum loading chosen for on stream studies.
The initial rate of photodecolorization increased with increase in catalyst dose upto an optimum loading.
Similarly, the optimum loading amount of V2 series samples is 15%%.
According to [11], there is an optimum load impedance that maximizes efficiency for each frequency.
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