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The knowledge gained from the batch experiments was used to develop a conceptual model for describing arsenic reactive transport at a column scale.
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Batch experiments were used to measure the adsorption isotherms of the lactic acid on Silicalite.
The distribution coefficient (Kd) values of Sr2+ derived from batch experiments were used to evaluate the migration behavior of Sr2+.
For this purpose, static batch experiments are used in contrast to the protocols based on different experimental steps, which use a chromatographic column.
Enzyme kinetics was described with the double substrate Michaelis Menten equation, where kinetic parameters from previously performed batch experiments were used.
Finally, we recommend that batch experiments be used to obtain aggregation rate data because of the difficulty of interpreting unambiguously the data from continuous flow vessels where the state of mixing is not well defined.
Batch experiments were used to assess the simultaneous uptake of Cd2+ and Pb2+ from a synthetic binary solution.
Batch experiments were used to examine fluoride adsorption kinetics at various adsorbent dosages, adsorption isotherms, the effect of pH and adsorbent stability as well as the effect of co-existing anions.
The kinetic parameters determined from the batch experiments were used to simulate different feeding policies.
The kinetic parameters determined from the batch experiments were used to simulate the hydrolysis profile during the fed-batch enzymatic hydrolysis.
Batch experiments were used to follow the crystallization of U VI -adsorbed ferrihydrite in a synthetic cement leachate (0.015 g L–1 Ca(OH)2; pH 10.5) system.
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