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nn decrease » _ decrease (Expand Search)
g decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
100 g » 100 mg (Expand Search), 100 ng (Expand Search), 100 _ (Expand Search)
meer » meter (Expand Search), meet (Expand Search), peer (Expand Search)
nn decrease » _ decrease (Expand Search)
g decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
100 g » 100 mg (Expand Search), 100 ng (Expand Search), 100 _ (Expand Search)
meer » meter (Expand Search), meet (Expand Search), peer (Expand Search)
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Bioremediation and nutrient removal from wastewater by Chlorella vulgaris
Published 2018“…Over a 13-day period the highest biomass concentration Xmax of 1.6 g L−1 was attained for PWW with corresponding values of 1.2 d−1, 80% and 100% for μ, and TN and TP RE respectively. μ decreased to 0.75 d−1 for a 75%:25% blend of PWW with MLA and to 0.54 d−1 on further decreasing the blend ratio to 25:75 PWW: MLA, with corresponding TN removal efficiencies of 85% and 76% respectively; 100% removal of TP was obtained throughout. …”
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Novel electroless deposited corrosion — resistant and anti-bacterial NiP–TiNi nanocomposite coatings
Published 2019“…From acidic NiP electroless bath, the co-deposition of TiNi nanoparticles in the NiP matrix to form novel NiP-TiNi nanocomposite coatings (NCCs) on top of API X100 carbon steel using several concentrations of TiNi nanoparticles (0.2, 0.4 and 0.8 g L−1 in the bath) is successfully achieved. …”
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Novel Electroless Deposited Corrosion - Resistant and Anti-Bacterial NiP-TiNi Nanocomposite Coatings
Published 2020“…From acidic NiP electroless bath, the co-deposition of TiNi nanoparticles in the NiP matrix to form novel NiP-TiNi nanocomposite coatings (NCCs) on top of API X100 carbon steel using several concentrations of TiNi nanoparticles (0.2, 0.4 and 0.8 g L-1 in the bath) is successfully achieved. …”
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Impact of clays on CO2 adsorption and enhanced gas recovery in sandstone reservoirs
Published 2021“…Moreover, raising the temperature to 75 °C decreased the CO2 uptake on sandstones. However, the alteration of clays crystallinity at a temperature of 100 °C improves the CO2 adsorption. …”
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