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The potential re-use of catalysts is an advantage achieved by recycling the ionic liquid phase.
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Stability was checked by recycling the solid catalysts several times.
MDAR maintains higher redox state of ascorbate by recycling the oxidized MDHA.
Paper usage could be reduced by recycling the waste papers.
Water management is achieved by partially recycling the anode stream from a solid-oxide fuel cell.
By recycling textiles, the punitive costs of landfill are avoided.
In principle, the concept of hydrophilic ionic liquids also holds potential for recycling the precious chiral ruthenium species, as the ionic liquid bound catalyst is immobilized in the bulk aqueous layer.
With the employment of chiral ionic liquids, there is also the possibility of recycling the catalyst.
Recycling the surfactant solution reduced the required surfactant mass (and thus cost, and waste) by 90%.
Finally, the viability of the catalyst was tested by recycling it up to four times.
"Most people want to do the right thing by recycling and it's important that people get behind these new services and support high-quality recycling".
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