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Due to larger particle size, the bulk cobalt oxide showed slower sulfidation rate having insufficient removal efficiency.
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High RhB concentration (>100 ppm) usually increases the load of the treatment system, resulting in low permeability and removal efficiency due to insufficient degradation ability.
With further increase in aeration rate it was found that removal efficiency reduced due to excessive foaming in the reactor leading to insufficient gas-liquid interfacial diffusion [ 25].
The removal efficiency was affected in the extreme pH.
The adsorption removal efficiency for BPA was also calculated.
Removal efficiency was again calculated using equation 1.
The removal efficiency of BPA by PCN-222 increased from 82.5% to 97.8% in the pH range of 2 6, while the removal efficiency remained high removal efficiency in the pH range of 6 10 with highest removal efficiency of 99.3%.
Results demonstrate that the metal removal efficiency was rather low (less than 12%), partially due to the significant Ca dissolution and strong bonding between metals and the soil as well as the insufficient EDTA dosage.
The removal efficiency then decreased.
Yao, W. Experiment on the SO2 removal efficiency of wet scrubbers.
More adsorbents or low BPA concentrations will result in high removal efficiency.
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