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Moreover, the regenerated chitosan microspheres could be reused for separating isoflavone aglycones from the feeding solution up to five times without compromising their function.
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Moreover, P C3N4 can be easily separated and reused for at least five times without showing significant loss of activity.
Moreover, the MF-GO catalyst can be easily separated and reused for at least five times without significant loss of activity.
The F-GO catalyst can be easily separated and reused for at least five times without significant loss of activity (TOF = 46.4 h−1).
Spent nuclear fuel contains plutonium, which can be separated out and reused for other purposes, either as a means of generating electricity or as fuel for nuclear weapons.
After MO decolorization, used waste (catalyst) was separated from solution by magnetic separation and reused for several consecutive MO decolorization processes.
The plan was to create a completely separate class that could be reused for any Serial Interface I might want to create.
Both composites could be separated after the reaction and reused for at least three cycles without loss of activity.
When one of the filtration devices does break, or see its end of life, it's separated into smaller parts, and recycled, or reused for parts that are salvageable.
What's more, the catalysts were easily separated from the reaction systems and could be reused for several times without significant loss of catalytic activity.
After completion of the reaction, the catalyst was separated by an external magnet, washed with CH2Cl2, dried, and reused for a consecutive run under the same reaction conditions.
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