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Kinetics data were fitted with a pseudo-second-order model.
The experimental data were fitted with a first order model and the kinetic constant determined.
The two-stage sorption data were fitted with a linear model coupling diffusion and viscoelasticity.
The kinetics and isotherms adsorption data were fitted with the pseudo-second order model and Langmuir equation, respectively.
In the optimal conditions, adsorption kinetics was studied and the experimental data were fitted with three kinetic models.
In the best conditions, biosorption kinetics was analyzed and the experimental data were fitted with four kinetic models.
Moreover, the experimental data were fitted with a double exponential function obtained from solving the Solomon equations.
Obtained kinetic data were fitted with a single exponential equation, and the rate constant (s−1) that is directly proportional to the water flux through the polymeric membrane was determined using Origin software (OriginLab Corporation, USA).
The experimental data were fitted with a model in which the rate coefficients for radical entry and exit were the adjustable parameters.
Experimentally measured LII data were fitted with theoretically simulated LII data to determine the count median particle diameter and the geometric width of the particle size distribution.
This data were fitted with a second-order polynomial equation.
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