is
the rate controlling step. When the plot does not pass through
the origin, this is indicative of some degree of boundary layer control
and this further shows that the intra-particle diffusion is not
the only rate limiting step, but also other kinetic models may control
the rate of adsorption, all of which may be operating simultaneously
(Demiral and Gündüzog˘lu, 2010; Senthil Kumar et al.,
2010). As can be seen from Fig. 2c, the linear plots at each temperature
did not pass through the origin, which indicates that the intra-
particle diffusion was not only a rate controlling step.
isthe rate controlling step. When the plot does not pass throughthe origin, this is indicative of some degree of boundary layer controland this further shows that the intra-particle diffusion is notthe only rate limiting step, but also other kinetic models may controlthe rate of adsorption, all of which may be operating simultaneously(Demiral and Gündüzog˘lu, 2010; Senthil Kumar et al.,2010). As can be seen from Fig. 2c, the linear plots at each temperaturedid not pass through the origin, which indicates that the intra-particle diffusion was not only a rate controlling step.
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is
the rate controlling step. When the plot does not pass through
the origin, this is indicative of some degree of boundary layer control
and this further shows that the intra-particle diffusion is not
the only rate limiting step, but also other kinetic models may control
the rate of adsorption, all of which may be operating simultaneously
(Demiral and Gündüzog˘lu, 2010; Senthil Kumar et al.,
2010). As can be seen from Fig. 2c, the linear plots at each temperature
did not pass through the origin, which indicates that the intra-
particle diffusion was not only a rate controlling step.
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