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The PLCD was found to be an efficient adsorbent for capturing heavy metal ion in water.
Activated carbon (Norit® CA1) intended for water purification was found to be an efficient adsorbent for silver nanoparticles.
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The adsorbent materials adopted were found to be an efficient media for the removal of heavy metals in continuous mode using fixed bed column.
It was found to be a very efficient adsorbent and a promising alternative for dye removal from aqueous solutions.
As compared to GO and CB, C60 was found to be an inefficient adsorbent of AChE.
Thus, it is rational to expect GA to be an efficient adsorbent for solid-phase extraction (SPE).
Siral 30 was found to be more efficient adsorbent than Pural.
Chitin and OSP were found to be efficient adsorbents with a high capacity to remove STX from aqueous solutions within the concentration limits evaluated (> 50% over 18 h).
The PREP was indeed found to be more efficient.
The organic adsorbent was found to be much more efficient in removing asphaltenes due, perhaps, to the similar chemical nature of the adsorbing species and adsorbent.
The Type 3 column – a cylindrical column with particle stratification packing, is found to be the most efficient choice, as the extent of column service time and adsorbent bed saturation are the largest.
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