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The greater the adsorption energy, the higher tendency for adsorption, and, therefore, more efficient adsorption.
NPs are more reactive than larger materials and offer larger sorption surface areas, thus allowing for faster and more efficient adsorption (Waychunas and Zhang 2008).
The aim of the present work was to study some aspects of the "direct synthesis" of zeolites on metal surfaces for the preparation of coated adsorbent beds for more efficient adsorption heat pumps.
For instance, the thickness of the capsule shells increases as the molecular weight of the PAH decreases because of more efficient adsorption of smaller species of PAH in the mesoporous shells of SC/MS templates (~45 nm and ~16 nm thick capsules with a diameter of ~400 nm size were obtained for PAH of 5 and 70 kDa, respectively).
Such observation can be explained as follows: Involvement of more SRMs leads to more efficient adsorption of ssDNA on them and thus increases the fluorescence quenching.
This head filament was found to mediate primary attachment of the virion to the flagellum and thus more efficient adsorption to the swarmer cell [ 18].
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These values could be further improved by favoring a more effective adsorption using combinations of efficient adsorbents for the adsorption of STX, such as clays and/or nanomaterials [9, 13] or increasing the process temperature [24].
The modeling also suggests that in partially etched TiC-CDC systems, the titanium that may be accessible to CO2 gas at the transitional interface may provide significant interaction sites for CO2 and may lead to more efficient overall gas adsorption.
Heydari-Gorji et al. [24] had reported that PEI supported on pore-expanded MCM-41 whose surface was covered with a layer of long alkyl chains was found to be more efficient for CO2 adsorption than PEI supported on the corresponding calcined silica.
N-doped carbon material with proper pore structure, owing to the promotion of the interaction between CO2 molecules and carbon surface, is considered to be more efficient for CO2 adsorption than traditional carbon such as commercial activated carbon with low capacity of 0.89 mmol g−1 and low adsorptive selectivity [17].
The more the binding sites available, the more efficient will be the adsorption process (Neeta and Jatinder 2008).
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more efficient acquisition
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