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An experimental facility was designed and built allowing for recording reacting particle trajectories and determining oxidation kinetics.
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Therefore, FBR batch assays were designed to determine the acetate oxidation kinetics, and following kinetic parameters were obtained: Km of 63 μmol L−1 and Vmax of 0.76 μmol acetate g VSS−1 min−1.
Ammonia oxidation kinetics determine niche separation of nitrifying archaea and bacteria.
The oxidation kinetics were determined by use of thermogravimetry.
The influence of the oxidation kinetics was studied as well.
The oxidation kinetics from NADPH to NADP+ was determined by measuring absorbance changes at 340 nm in various combinations of reaction components as shown (Figure 6B).
Similar to those discussed in Si [14, 15], within the context of the anodic oxidation concepts, the anionic and cationic transport are important factors in determining the kinetics of oxidation.
Experimental work involved using a differential photoreactor for determining kinetics of oxidation and an annular flow photoreactor for overall removal investigations as well as comparison with CFD models.
Abiotic sulfide oxidation kinetics improve when reduced iron and/or manganese are oxidized by oxygen to form oxidized metals which in turn oxidize sulfide.
Millero, F. J., Sotolongo, S. & Izaguirre, M. The oxidation kinetics of Fe(II) in seawater.
Oxidation kinetics were analyzed and modelled.
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