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Furthermore, higher MO removal efficiency was achieved compared to MIL-101 and TiO2 when TiO2@MIL-101 TiO2@MIL-101omposite was used as adsorbent and catalyst, which only took 30 min to reacompositel efficiency of 99% under UV irradiation.
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All the pure and mixed actinobacteria cultures were able to remove CP, reaching removal percentages greater than PCP removal.
The content of glucan decreased slightly, reaching removal percentages of 16.8% and 18.3% with G. trabeum KU-41 and G. trabeum NBRC6430, respectively.
All these make anammox a cost-effective and environmentally friendly N-removal system that can reach maximal removal rates of 9 kg N m−3 day−1 (Jetten et al. 2005; Kartal et al. 2006; Op den Camp et al. 2006).
The effects of different parameters on mercury extraction were studied to reach higher removal efficiency.
The stationary phase cells potentially require 30 40% less H2O2 to reach 90% removal within 12 h of treatment as compared to the exponential phase cells.
The effect of operational parameters such as current density, initial pH of the solution, time of electrolysis, initial dye concentration, distance between the electrodes, retention time and solution conductivity were studied in an attempt to reach higher removal efficiency.
Removal of ethanethiol varied with applied current and reached 69% removal at 4 mA cm−2.
The best bioreactor, rotating drum, reached 100% removal in 7 days.
1.0 g adsorbent system showed optimum adsorption over varied amounts of adsorbent of 0.1 1.2 g using dye concentration of 3 × 10−5 M. Adsorptions of the dyes increased with increasing time and reached maximum removal at the adsorption equilibrium.
This may have to do with the presence of a minimum coagulant concentration for initiate the coagulant process (Beltrán-Heredia et al. 2010) and until it is not reached the removal of dye does not begin.
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