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Table 2 Physical properties and photocatalytic abilities for the destruction of nitrogen monoxide under visible light irradiation TiO2 samples Visible light region (λ > 510 nm) Aa DeNOx QEa TAL 36.2 20.106.106 TAS 17.9 5.6 0.060 TOS 39.4 28.6 0.138 TOL 30.0 8.9 0.057 P25 15.5 5.8 0.072 aThe average light absorption degrees of the samples.
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The grafting degree of the samples may be controlled by the following variables: concentration BPO, time, temperature, and pressure.
The sharp and well-defined reflection peaks suggest a high crystallization degree of the samples, and no impurities were observed.
Besides the common operational parameter differences between work in continuous and discontinuous systems, it shows great differences in the reconstruction degree of the samples.
The crystallinity degree of the samples, as well as their thermal, mechanical and rheological properties was also studied in order to infer the effect of the presence of the PDMS based additives in the mixtures.
The latter one was only observed for samples with low surface oxygen concentration, and its contribution to the irreversible capacity was small due to the low graphitization degree of the samples.
The FTIR spectroscopy is used to obtain the composition of the synthesized materials, while the SEM micrograph and XRD pattern indicates polymerization quality and the crystallization degree of the samples.
The acidity degree of the samples ranged between 17 63.6 degrees (1.6-5.7 g/100 g LA).
The humification degree of the samples from O horizons and different particle-size fractions of the O/A horizon showed no gradient change with change in topography.
Despite the oxidation degree of the sample decreased, the hydroxyl content of the sample increases with the annealing time.
Variables were the filling degree of the sample containers, the container type and size and the shaking intensity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com