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However, in the high Cu2+ loading sample (787 mmol/kg), there is almost no additional adsorption site in it, because the adsorption density (787 mmol/kg) is almost in the maximum adsorption capacity (796 mmol/kg) of the biogenic Mn oxide.
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In region 3, the adsorption density increases with a lower gradient, because in this region the solid surface is electrically neutralized by the adsorbed surfactant monomers and adsorption takes place due to lateral interactions only.
The adsorption isotherm is the plot of surfactant concentration against the adsorption density (mg/g).
As adsorption density increases, the zeta potential of the shale polyacrylamide complex increases and then levels off when the adsorption density approaches capacity (Menon and Wasan 1987a).
The interactions between copolymer and MWNTs are discussed based on the adsorption density results.
This indicates that the adsorption density of BPP_1 is higher and equilibrium adsorption configurations of the studied synthesized benzimidazole derivatives on Cu (111).
As demonstrated in Fig. 5, by approaching the adsorption density of 1.90 mg/g at 2750 ppm of the SDS concentration, adsorption reached equilibrium (constant value).
The polymer adsorbed on CNPs surface was derived from calculated charge density 9where Γ is the adsorption density of PAA on CNPs.
The structure of the adsorbed PAA layer in the case of PAA100 exhibited the highest adsorption density which leads to the lowest change in free energy of adsorption.
The Langmuir equation is given by 10where Γmax is the saturation adsorption density of PAA on CNPs.
PAA100-CNPs exhibited the highest adsorption density indicating preferential adsorption of this molecular weight on CNPs as compared to other MW of PAA.
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