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The adsorption was highly dependent on pH providing maximum adsorption at pH 2 and equilibrium was achieved in 3 h.
The value of total pore volume V total was estimated from the maximum adsorption at relative pressure close to the saturation pressure.
where qmax is the maximum adsorption at monolayer coverage (mg/g) and b is the Langmuir adsorption equilibrium constant (ml/mg), and reflects the energy of adsorption.
The batch adsorption technique for the removal of MG and FG dyes using montmorillonite clay as adsorbent showed maximum adsorption at 3 × 10−4 and 6.3 × 10−4 M concentrations of MG and FG dyes, respectively.
The maximum adsorption at acidic pH may be due to the formation of weak hydrofluoric acid or combined effect of both chemical and electrostatic interaction between the oxide surface and fluoride ion.
Maximum adsorption at acidic pH indicates that the low pH leads to an increase in H+ ions on the resin surface which results in significantly strong electrostatic attraction between positively charged anionic PS-DVB resin surface and sulfate ions.
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While some of the sorbent reached their maximum adsorption capacity at 25 min, others were at 35 min.
The study showed that the maximum adsorption occurred at pH 6.
Maximum adsorption occurs at the Cd II) concentration of 30 mg/L.
The maximum adsorption occurs at stirring rate of 150 rpm, and thereafter, the adsorption is almost constant.
The maximum adsorption capacities at 25 °C were 3.3, 0.94 and 0.43 mmolg−1resin for Hg II), Cd II) and Cr III), respectively.
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