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Open image in new window Fig. 4 Effect of time on desorption rate of MCA for a constant temperature (34 °C) and constant relative humidity (73%).
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Furthermore, in order to validate the effect of pH on desorption capacity, we designed sorption desorption cycle experiments at pH 9.0 and then pH 7.0, and found that the effect of pH on irreversible sorption and hysteresis effects were significant.
Open image in new window Fig. 3 Effect of temperature on desorption rate of MCA.
(a) effect of temperature on desorption of N2O after injection of 150 cc of 3.5 ppm N2O standard gas and (b) effect of temperature on desorption of N2O from the amendment materials without injection of N2O standard gas.
The effect of inlet temperature on desorption process for each packed bed layer was also studied at different inlet temperatures.
Thus, the selection of mixed surfactants should consider simultaneously the effects of SDS on desorption and biodegradation.
The effect of extraction time on the sorption capacity of the SPME process was studied and pointed at 10 min both for adsorption and desorption.
Also, the effect of desorption time was insignificant if sufficient time was allowed for desorption to take place.
Streaming potential tests were carried out to determine effects of time and pore size in the adsorption and desorption from aqueous suspensions of cationic polyelectrolytes on silica gel particles.
Parameters affecting the extraction efficiency such as the volume of water added to the soil, pH effect, extraction time, extraction temperature, salt effect, desorption time, and desorption temperature were investigated.
The effect of hysteresis on fixed-bed desorption was investigated, based on local equilibrium theory.
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