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For 1-naphthol with low concentrations and naphthalene, the OP700 displayed the maximal sorption capacity.
For 1-naphthol with high concentrations, the OP200 exhibited the maximal sorption capacity due to its largest partition and high adsorption among nine biochars.
The optimal adsorbent (NiFe2O4@Ca-alginate) yielded a remarkable maximal sorption capacity equal to 1243 mg/g (for MB uptake) and 845 mg/g (for Rh6G) at the room temperature (298 K).
The maximal sorption capacity of zeolite A beads for Cu II) at 20 °C was predicted as 23.3 mg g−1 based on the Langmuir model applied to the sorption isotherm.
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The Langmuir model was chosen for the estimation of maximum sorption capacity to biomass surface saturation.
The optimal hydrophobic nonwoven yielded maximal sorption capacities equal to 5.52 g/g and 10.03 g/g for dodecane and motor oil uptake, respectively.
The maximum sorption capacity of the beads was 23.55 mg/g and the sorption followed the Langmuir isotherm.
The maximum sorption capacity values calculated by Freundlich isotherm were in harmony with experimental sorption capacity in case of A. flavus HF5 and A. sp. RBSS-303.
Langmuir maximum sorption capacity of activated quick lime for fluoride was found 16.67 mg/g.
He achieved the maximum sorption capacity of 22.5 and 30 mg/g, respectively.
The maximum sorption capacity was found to be 92.59 mg L−1 at 30 °C.
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