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Sulfurization method is one of the promising techniques for the separation and recovery of rare metals.
A variety of techniques have been developed for the separation and recovery of proteins.
This study provides potential method for the separation and recovery of V(IV) from acid aqueous solutions by solvent impregnated resins.
A novel arsenic-ion imprinted polymer (As-IIP) was firstly synthesized for the separation and recovery of trace elemental As from environmental water samples.
The continuous and highly efficacious removal of highly toxic Cr VI) (>99%), and low energy consumption make the EDI process attractive for the separation and recovery of Cr VI) and Cr III).
Hydrometallurgy is a well-established process for the separation and recovery of metal from industrial wastes.
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It facilitates the separation and recovery of the catalyst from the reaction products, and allows for multiple use of the biocatalysts.
This stepwise process could provide an alternative way for the effective separation and recovery of metal values from spent Li-ion battery cathodes in industry.
Here we report, for the first time, the continuous separation and recovery of Cr III) and Cr VI) using electrodeionization (EDI) as an advanced and efficient approach.
Fabricating adsorptive materials for fast and high efficient adsorption of enzymes is critical to match the great demands for separation and recovery of enzymes used as biocatalysts.
It was suggested that WPs have potential for application in separation and recovery of metal ions from industrial effluents and environmental waterways [31, 32].
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