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The characteristic removal parameters such as retention capacity, removal percent and unused bed length were experimentally determined at different operating conditions.
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Two activated carbons, Nuchar SA and Nuchar SN, gave similar high metal removal capacities (removals approached l00%, depending on the solution pH).
The Fe3O4@SiO2-Rho NPs also showed a high capacity for removal of Zn2+ at room temperature.
The capacity of removal obtained at optimum conditions was 19.06 mg of metal/g biosorbent.
Finally, this material can be produced with nanoscale dimensions, which enhance both its capacity and removal.
The adsorption capacity and removal efficiency achieved 312.06 mg/g and 86.02%, respectively.
In these Figures, experimental and ANN-predicted values are compared for both uptake capacity and removal of As III), respectively.
After 180 min, the adsorption capacity and removal efficiency of Pd II) IIPs remains unchanged and reaches an equilibrium state.
Figure 5a demonstrates that the Pb2+ adsorption capacity and removal proficiency increases with the pH value from 1.0 to 6.0.
Activated carbon with a high adsorption capacity for removal of copper ions from aqueous solution is produced from pecan shells.
The present study has demonstrated that HA has the adsorption capacity for removal of Cu and Zn from an aqueous solution.
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