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The experimental animals were dosed by IP injection with an acute dose of 130 μg·kg-1 brevetoxin-3 (PbTx-3) in PBS with 4% methanol, while the controls were dosed with volumetric equivalents of methanolic vehicle.
The results indicate that the metallic state Pt0Ru0 can be formed during cathodic polarization and contribute to electrooxidation of methanol, while the formation of inactive ruthenium oxides during anodic polarization cause the negative effect on methanol electrooxidation.
Furthermore, a smaller particle size had a better forward sweep of catalytic performance in oxidation of methanol while the cube-like structure was better for backward sweep of the electrochemical catalyst.
The seeds were removed, and the skins were placed in a flask containing methanol, while the pulp was collected in a flask containing sodium metabisulphite.
In contrast, Dieselzyme 2 retained ~20% residual activity after incubation with 70% methanol while the Dieselzyme 3 and Dieselzyme 4 retain greater than 70% of their activity after incubation in 70% methanol.
Diatom cultures were exposed to benzo(a pyrene (36.45 μg/L) dissolved in methanol while the solvent was added to control cultures at a final concentration of 0.05% (v/v) [ 11], half-hour before the beginning of the light cycle.
Similar(52)
The polyamide-6 membrane was used for this purpose because of its high selectivity for methanol while also allowing sufficient permeate flux.
For the quantification of compounds 20– 24, the supernatants were diluted 10 or 100 times with 70% aqueous methanol, while for the others, the supernatants did not require dilution.
There was very little (<5%) reduction of the enzyme activity in the presence of methanol while in the presence of ethanol, n-butanol, and isoamyl alcohol, somewhat greater reduction in activity, 30 35%, was recorded.
It is shown that increasing the liquid flow rate firstly improves and then decreases the methanol concentration while the methanol yield continuously increases as the liquid flow rate increases.
In the master equation model, all CO molecules appear to be converted almost immediately to methanol, while in the rate equation model the conversion occurs much later.
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