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The solubility of five gases in the PEEKK membrane increases with decreasing temperature.
The solubility of five gases in the EC membrane increases with decreasing temperature.
Under reaction conditions, the oxygen permeation flux through the dense membrane increases with increasing temperature and ammonia flow rate.
A stronger polarity effect can make the hydrogen bonds more easily to be formed between polar groups and water molecules, and this is why the hydrophilicity of membrane increases with the addition of PVP.
The water selectivity of PS membrane increases with increasing the content of hydrophilic groups on membrane surface, which was prepared by adding end-functionalized polystyrene with small molecular weight to PS-H.
The results showed that the hydrogen yield decreases (3.5 3.2 mol/molEtOH) with the net heat of reaction Q decreases from 0 to −257 J/molEtOH because the oxygen permeation flux for the membrane increases with temperature.
Similar(49)
Burst strength of the composite membrane increased with increasing polymerization period of pyrrole.
The ν(OH) intensity in the electrolyte membrane increased with increasing current density, relative humidity, and gas utilization.
Hydrogen fluxes of ESC asymmetrical membrane increase with the rising of temperature and hydrogen partial pressure gradient across both sides of membrane.
The proton conductivities of the 6F-SPTES-50 copolymer membrane increased with temperatures, reaching values above 120 mS/cm at 85 °C and 85% relative humidity.
It was found that the back-diffusion of water produced at the cathode to the anode, humidifying the membrane, was clearly detectable, and also the rate of water transport in the membrane increased with increasing cell temperature.
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