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Lower oxidation strength and extensive leaching definitively argue against Cu-based catalysts for the CWAO process.
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Those found in nature have the +5 oxidation state, but compounds of lower oxidation states (+2 to +4) have been prepared.
Tantalum is usually in the +5 oxidation state in its compounds; lower oxidation states, especially from +2 to +4, have been prepared.
The electrochemical chlorination fails for azulenes with lower oxidation potentials.
They are usually oxidized to the +3 oxidation state, even through scandium, yttrium and lanthanum can form lower oxidation states.
Organoiridium compounds contain iridium carbon bonds where the metal is usually in lower oxidation states.
The lower oxidation states are only stable if ligands are present.
Lower oxidation states (+2, +1, 0) have also been observed in organoscandium compounds.
Lower oxidation states occur in compounds such as V CO 6, and substituted derivatives.
The oxidation effect on the PAHs will be stronger since HNO3 has greater oxidation strength than HNO2 and a large amount of O2 is present.
However, sequentially annealed HXLPE had lower oxidation indices than annealed HXLPE in all measured locations.
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