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The decolorization efficiencies of RhB for the three manganese oxides all increase with decrease solution pH.
The results showed that the decolorization efficiencies of RhB for the three manganese oxides all increase with decrease solution pH.
In PC, anionic phosphate groups replaced positively charged amino groups with which may neutralize each other to certain extent resulting in the observed decrease solution conductivity.
In our experiments, the decolorization efficiencies of RhB for the three manganese oxides all increased with decrease solution pH, which could be attributed to the increase of the redox potential, electron transfer, and the surface charge density of MnO2 at lower pH values.
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The largest decreases were seen in the 0.5 μM (13.9% decrease) and 128 μM (31.3% decrease) solutions.
Decreasing solution pH enhanced pressure inactivation of HAV.
The minimum [Cl−] required for pit initiation increases with decreasing solution temperature, ie with decreasing solution aggressiveness.
It was found that the degradation efficiency increased with increasing temperature, treatment time and pressure, and decreasing solution concentration.
Extractable P increased with decreasing solution pH in all soils until the acid soluble P was depleted.
The reduction rate of Cr VI) increased with increasing total chromate concentration, [Cr VI ], and equivalent concentration of organic compounds, [OCs], and decreasing solution pH.
For the conditions simulated here, the net effect of a decreased solution layer thickness is to increase the protection ability of the system.
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