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The maximum uptake capacities of cadmium and copper were 88 and 90%%, respectively.
Maximum uptake capacities of Ni2+ and Co2+ were obtained at pH 6.0, optimum biosorption capacity of the alginate nanoparticles was found to be 90.25% for Ni2+ and 86.13% for Co2+.
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b Maximum uptake capacity of nanofibres against some activated carbons.
Using the statistical optimization, the maximum uptake capacity was found to be 205.656 mg/g.
The maximum uptake capacity by the Sips model was about 39.0 mg g−1.
Among all the metals, Pd-doped KIT-6 (KPd) showed the maximum uptake capacity (0.31 wt%) at atmospheric conditions.
The maximum uptake capacity reported for immobilized living fungal cell was 1.11 mmol g−1 of biomass for zinc ions, respectively.
The equilibrium data were best described by the Langmuir isotherm with the maximum uptake capacity being 79.9 mg/g cell at 25 °C.
The maximum uptake capacity of Eu III) ions was 290.9 mg/g D113 at 298 K, at an initial pH value of 6.50.
The maximum uptake capacity, 318.15 mg g−1, and total metal removal, 59.32%, were obtained at flow rate of 2.3 ml min−1 and bed height of 6 cm.
The maximum uptake capacity Qmax at pH 6.0 calculated from Langmuir isotherm was 540 ± 16 μmol/g for Zn2+ and 510 ± 17 μmol/g for Cd2+ ions.
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