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Ammonia enhanced electrokinetic not only increased electric current, but also changed the pH values of catholyte, anolyte and soil which made different fluorine speciation exist in soil such as anions F−, HF2− and cations (AlF 2+, AlF2+.
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The experimental results showed that the reduced contact modulus decreased with increasing electric current density.
For an electric current density less than 4087.89 A cm−2 the decrease in the reduced contact modulus with increasing electric current density was mainly controlled by Joule heating due to an electrothermal interaction.
The reduction speed increased with increasing the cell voltage, but the speed gain was counterbalanced by decreased current efficiency and increased electric energy consumption.
Increasing the electric current increases the transformation rates; however, the process is more efficient under lower volumetric current density (for example 1.5 mA L−1 in this study).
Results showed that current density, chlorine concentration, and electrolyte temperature increased with electric current, while electric efficiency decreased with electric current and electrode gap.
The separating rate of the magnetic beads increased as the electric current increased and flow velocity decreased.
Increasing the electric current led to an increase in the particle velocity as well as in the particle surface temperature.
The long-term test (over 120 days) showed that the removal fluxes of bromate and nitrate could be improved by increasing the electric current and decreasing the hydraulic retention time (HRT).
We then tested the effects of aminophylline and ascorbic acid on Cl− flux, because we showed previously that both drugs significantly increased wound electric currents and wound healing [6].
The increase of electric current flowing through unilluminated SbSI gel and array of a few SbSI single nanowires with increase of humidity can be explained as follows.
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