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Capacitive deionization (CDI) which removes ionic species from solution by applying electric energy to carbon based electrodes is one of excellent convergence technologies combined with energy storage technology and environmental systems.
Sorption of Cd2+ and PO4 3− species from solution backwards onto Cd-HAP surface.
(Measurement of high dissociation constants is difficult when one is measuring the depletion of the labeled species from solution, as was done in the cited studies, because of the practical limitations in the concentrations of PII that can be used in the experiments).
Independently, the fact of no additional layer thickness or adsorbed mass detected does not yet constitute sufficient proof for preventing secondary protein adsorption: for many systems, it is well known that adsorbed proteins are displaced by different species from solution [ 32] possibly resulting in a constant adsorbed mass but a change of adsorbate composition over time.
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When immobilized the α-sheet designs preferentially bind species from solutions enriched in the toxic conformer compared with non-aggregated, nontoxic species or mature fibrils.
It is shown that this process can also be used when GO is employed as an adsorbent for removing toxic metals and organic species from aqueous solution.
This phenomenon is explained by variation of the potential barrier for electron transfer at the Pt/solution interface caused by adsorption of H+ and OH− species from the solution on the catalytic surface.
Studies on TiO2-coated RuO2 electrodes as a function of the proton concentration showed a relatively low emf variation at neutral and basic pH indicating that the TiO2 coating appears to be a suitable layer capable of effectively isolate the RuO2 surface from ionic species from the solution.
1,4-Diazabicycle[2.2.2]octane (dabco) silica prepared by grafting (GR-dabco) and sol gel (SG-dabco) methods were used for removal of Cr VI) species from aqueous solutions.
The prepared magnetic palygorskite modified with polyamide (MPGP) material was appraised for its removal of the Hg II) and CH3Hg species from aqueous solutions.
In this work, the ability of benzidine-based microporous polymer network as adsorbent for removal of copper II) species from aqueous solutions was investigated.
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