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Polymeric particles were completely covered with ZnS if the loaded amount of inorganic material was higher then 40 wt%.
However, SECM approach curve data showed that the electrochemical activity of the thermal sprayed material was higher than that of the bulk alloy.
Additionally, the ring-current of the 4% CeO2/C_PPM_P material was higher than that of Vulcan XC 72R and Printex L6, the reference materials for H2O2 production, indicating the highest electrocatalytic activity for the 4% CeO2/C_PPM_P material.
The result indicated that, in comparison with previous studies using the classical hydrothermal carbonization process, this approach reduced the processing time greatly from hours to 45 min, while the increase in higher heating value of the hydrochar when compared to that of the starting material was higher in this study than some value previously reported.
The proportion of patients with prosthetic material was higher in the routine IDC group compared to the pre-IDC group (55% vs. 44%, p 0.02).
Also, the loss of material was higher due to the thickness of the diamond band and thus, not all sections could be evaluated.
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Consumer WTP for packaging material was highest for plastic packaging, followed by glass, carton and aluminum.
The viscosity for that material was high (∼69 cP) compared with the electrolyte containing no SiO2 (∼10 cP).
This indicates that the quality of the starting material was high.
The viability of thawed cell material was high and in 95%% of cases above 70%%.
Still, the enantiomeric excess (ee) of the re-isolated starting material was high enough to deduce the stereochemical course of the reaction.
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