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The removal performance was calculated using three approaches: effluent concentrations, areal removed loads and mass removal.
Subsequently, stable nitrogen removal performance was observed for >1 year.
Nitrogen removal performance was not affected considerably by ammonia stress.
However, the pathogen removal performance of biofiltration systems remains unknown.
Developing more efficient electrode materials is the key to improving salt removal performance.
In particular, the influence of hybrid ESP/BAG operating conditions on dust removal performance was explored.
Adding peroxydisulfate to the solution increased the removal performance more than 75%%.
On the contrary, the removal performance for COD and NH3 N was not significant, respectively.
But none of the above adsorbents showed excellent removal performance along with high adsorption capacity.
A natural characteristics of filter medium are important in the pollutant removal performance.
Results also suggest that the E. coli removal performance is reduced after a significant dry period, while the overall removal performance improves over time as systems mature.
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