Sentence examples for methyl orange which from inspiring English sources

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In summary, we have prepared the SrTiO3/TiO2 (rutile) composite nanofibers via a simple route of electrospinning and displayed its excellent ability to degrade methyl orange, which could be mainly ascribed to the remarkable heterojuction and the high crystallinity.

This demonstration of a thin film coating, doped with a rare earth element, novel photoreactor design produces a photocatalytic degradation of a model pollutant (methyl orange) which displayed a comparable degradation achieved with P25 TiO2.

Compared with Ag@Ag3PO4, Ag3PO4 and Ag3PO4/GO, Ag@Ag3PO4/RGO hetero-photocatalyst exhibited greatly enhanced photocatalytic activity under visible-light irradiation for the photodegradation of not only cationic dye (rhodamine B) but also anionic dye (methyl orange), which is usually difficult to be degraded over other catalysts.

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Methylene blue and methyl orange dyes, which were used as model organic pollutants, were effectively oxidized by the photocatalytic activity of the ZnS/chitosan nanostructured systems under UV irradiation.

The composite containing 2 wt% MoS2 shows the highest efficiency of about 96.5% for the methyl orange degradation, which is about 3.5 times and 8 times compared to those of the positively charged ultrathin g-C3N4 and bulk g-C3N4, respectively.

Moreover, hollow α-Fe2O3 fiber assembles exhibited magnetic responsive performance, as well as efficient adsorption for methyl orange in water which follows Lagergren pseudo-second-order kinetics.

Compared with neat-TiO2 nanoparticles without any surface modification, moreover, the PANI/SAM-TiO2 nanocomposites showed better photocatalytic activity in photodegradation of methyl orange under sunlight, which was partly attributed to the sensitizing effect of PANI.

Within one period of partial reflux, the average degradation rate of the methyl orange solution is 10%, which is higher than that obtained in a cylindrical reactor.

The visible-light photocatalytic activity of Meso-TiO2/C beads prepared at different carbonization temperature and impregnation process was evaluated, in which methyl orange was chosen as a degradation substrate for the adsorption and photocatalysis experiments.

Especially, the biomorphic Au/TiO2 at the nominal content of gold to titanium of 8 wt% shows the highest photocatalytic activity and can completely decompose methyl orange within 80 min, which is obviously higher than that of commercial Degussa P25 powders.

The optimized Cu2O-rGO-2 showed the best methyl orange (MO) photocatalytic degradation performance, which was highly consistent with the trend of the obtained ket results.

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