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Quantum and thermal effects in H2 dissociative adsorption: Evaluation of free energy barriers in multidimensional quantum systems.
The adsorption evaluation indicated that the present mesoporous SrCO3 microspheres exhibited excellent adsorption performance for deionized (DI) water containing methylene blue, or heavy metal ions such as Fe3+ and Pb2+, revealing the as-synthesized uniform hierarchical mesoporous SrCO3 microspheres as potential adsorbents with wide applications in environmental protection.
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The method is potentially promising, and we expect that it can be used for adsorption evaluations after further improvements.
The kinetic data of adsorption and the evaluation of equilibrium parameters were described by the pseudo-second-order equations.
The adsorption studies for evaluation of the C-PAN adsorbent for the removal of the Blue Basic 41 dye from aqueous solutions were carried out in triplicate using the batch contact adsorption method.
Central composite design (CCD) was used for the evaluation of adsorption parameters effect such as pH, adsorption dose, initial dye concentration, and contact time on the percentage removal of MB dye from aqueous solution.
Analysis of two-step adsorption-reaction processes is particularly interesting since dynamic data offer the possibility of separate evaluation of adsorption and surface reaction rate constants, which is not possible from steady-state measurements.
Three types of NHs were prepared by partial oxidation for opening the NH gates for subsequent evaluation of adsorption phenomena inside the nanopores.
Evaluation of adsorption capacity and analyses of the isosteric heat and radial distribution functions confirmed that edge-functionalization can evidently enhance the single-component adsorption of CO2/N2.
The experimental equilibrium data fitting to Langmuir, Freundlich, Tempkin and Dubinin Radushkevich models indicate that the Langmuir model is a best model for evaluation of adsorption behavior.
Evaluation of adsorption site energy distributions (generated using the model coefficients) suggested that the negatively charged ceria surface had a very broad site energy distribution and that its surface heterogeneity controls the adsorption process.
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