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The maximum adsorption capacity of EGANaCl was found to be 16.33 mg g−1 at 27 °C and a maximum fluoride removal occurred at pH 6.55.
The maximum fluoride removal capacity of PANI is more than 20 mg/g at a positive voltage based on the electrically controlled anion-exchange mechanism.
A confirmatory experiment was performed to evaluate the accuracy of the optimization procedure and maximum fluoride removal of 88.78% was achieved under the optimized conditions.
In a batch study, maximum fluoride removal was achieved within the pH range 5.0 7.0, taking about 2 h to attain equilibrium.
Adsorption study revealed a maximum fluoride removal efficiency of 77.8% with uptake capacity 4.56 mg g−1, within 60 min of contact time from an initial 6 mg L−1 fluoride solution with adsorbent dose 6.5 g L−1 at pH 6.5 and temperature 300 K.
Maximum fluoride removal was found to be 94.2% at optimum conditions.
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At pH 3 and 9, the maximum amount of fluoride removal after equilibration was 90% and 80%, respectively.
Maximum fluoride was removed from water at pH 4.4.
Applying the method of the desirability function, optimization of adsorbent dose (29 g), initial concentration (60 mg L−1), T (40 °C) and pH (4) gave a maximum of 82.34% fluoride removal white desirability of 0.916 by Apatitic tricalcium phosphate.
Previously, bacterial species have been reported to achieve a maximum of 22.1 % fluoride removal (Xu et al. 2011).
As the adsorption capacity of AHAC for fluoride removal is maximum in neutral pH, it is suitable for field level application, since no pH adjustment is required.
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