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Connecticut and New York are upgrading their treatment facilities to include removal of nitrogen.
The removal of nitrogen and phosphorous from wastewater is considered.
The catabolic fate of amino acids involves (1) removal of nitrogen, (2) disposal of nitrogen, and (3) oxidation of the remaining carbon skeleton.
Another upgrade likely to be required upstream of the refinery is the removal of nitrogen, which is known to foul refining catalysts.
The zeolite was found to offer additional removal of nitrogen, total phosphorus and organic matter.
Alternative, more economical technologies for the removal of nitrogen compounds from wastewater are required.
Bed depth and hydraulic loading rates were major factors controlling this aerobic/anaerobic removal of nitrogen.
In addition, the hydrodenitrogenation activity was also enhanced by the removal of nitrogen compounds.
By unlocking the secrets of how these nanocompartments work, anammox bacterial metabolic processes could potentially be leveraged for the removal of nitrogen from wastewater.
Regarding removal mechanisms, the removal of nitrogen and phosphorus by all three aquatic plants primarily depended on plant adsorption.
This method combines the activities of nitrifying and denitrifying bacteria in one compartment to achieve near complete removal of nitrogen.
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