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The initial activity for H2 evolution over 0.75 wt% PdS-loaded sample is up to 780 μmol h−1.
When the concentration of MB increases to 200 mg/L, the adsorption quantity of the sample is up to 170.9 mg/g.
The doped sample is up to 2.5 times more active than the undoped sample at 200 °C, depending on the methanol concentration at the inlet, while CO selectivity is less than 0.8% in all cases.
For the Ge-OH sample, the dominated hydroxyl groups reach 40.0% of the oxygenic groups; carbonyl groups on the GO = O sample is up to 22.8%; the GO-OOH sample owns 37.3% carboxyl functional groups on the graphene surface, which is consistent with the FT-IR spectra shown in Figure 2.
This sample was prepared in a buffer solution at pH = 5.0 (the maximal QY of this sample is up to 83%).
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By looking for these subtle changes in the coil's electrical properties, we can deduce what the electrons in the sample are up to.
When the OGC in the mixture gases was high, the obtained oxygen content inside the sample was up to 50%.
The TOC of these samples is up to 2.09%, and the HI can reach up to 569 mg/g.
Annual radial growth estimated from calibrated dates based on the post-bomb C content of samples is up to 2.4 mm, but varies both spatially and temporally.
After 5 h autolysis, protein recovery from the UV-heat treated samples was up to 92.1%.
CWEC concentrations for dry samples were up to 2 times greater than for corresponding field moist samples and had significantly (p < 0.001) higher phenolic content.
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