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The maximum nitrate removal (34.78 %) is obtained from 6 and 6%% + Al2O3 composites.
Results showed that the maximum nitrate removal efficiency was 100% at the optimum current density of 200 matm2, at which low nitrite production and high ATP aggregate level were obtained.
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Nitrate and total N (NO3− + NO2− + NH4+) removal of the treated effluent water ranged from 73 99% and 60 95% during the periods, respectively, corresponding to an overall maximum RAS nitrate removal of approximately 75%.
It is also observed that maximum nitrate uptake and nitrate removal obtained were 21.87 mg/g and 85.29 % at 2.4 and 1.6 ml/min, respectively (Table 5).
In other studies, denitrification with biocathode in cathode chamber using an bioanode as the electron donor source was carried out and could achieve a maximum of 22 % nitrate removal in 7 days (168 h) operation with a removal rate of (0.0436 mg NO3/cm2) (Dima et al. 2005; Park et al. 2005).
NA loading rate of 157.8 mg L−1 h−1 at which maximum anoxic NA and nitrate removal rates (105.3 mg L−1 h−1 and 144.5 mg L−1 h−1, respectively) occurred was much higher than those reported for the aerobic alternative (NA loading and removal rates: 14.2 and 9.6 mg L−1 h−1, respectively).
The results showed that with nitrate removal a maximum power density of 502.5 mW/m2 and voltage outputs ranging from 500 to 700 mV were observed (Zhang et al. 2014).
A maximum of ca. 93% nitrate removal at Cu Pd catalyst was achieved within ca. 60 min.
The highest nitrate removal rate coincided with maximum removal rate of NA and was 3164.7 mg L−1 h−1.
Their findings showed that the maximum sorption capacity of nano alumina for nitrate removal was found to be 4.0 mg g−1 at 25 ± 2 °C [21].
The cetyltrimethylammonium bromide modification gave a significant nitrate removal on both rice husk and its biochar with maximum adsorption of 278 and 213 mgN/g, respectively, which is higher than a commercial adsorbent.
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