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From the figure, as the flow rate increases, the breakthrough curve becomes steeper and the biosorbent achieves early saturation at 5 mL/min.
From Fig. 5 it is clear that as the flow rate increases the breakthrough time, sorption capacity, exhaustion time, and column efficiency decreases.
The blend of this formulations increases the breakthrough time and improves the sweep efficiency due to the generated foam by CO2 in contact with surfactant solution.
At low flow rates, the presence of connate water tends to decrease the breakthrough oil recovery for the non-surfactant system, but increases the breakthrough recovery for the surfactant-containing systems.
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They found that when inlet concentration increased, the breakthrough time decreased which is in accordance with the results obtained in this work.
The modelling results showed that the proper addition of shale helped to increase the breakthrough time of Pb, Cd, and Zn.
The breakthrough point decreased with decrease in bed height, and increase in bed height increased the breakthrough time; thus for the same influent MG concentration and fixed bed conditions, increased bed height resulted in longer distance for the mass transfer zone to reach the exit and therefore an increase in the breakthrough time.
An increase in macropore tortuosity progressively increased the breakthrough time, increased the apparent retardation coefficient (R′), decreased the depth to the center of mass of a given adsorbed tracer, and increased the anisotropy in tracer distribution profile.
When the flow rate and initial fluoride concentration were increased, the breakthrough curve became sharper, which lead to a decrease in the breakthrough time and the defluoridation capacity of the reactor.
The time-dependent increase of the breakthrough resembles that found by Asti et al. [17], Lin et al. [24] and Loktionova et al. [26] for a different type of generator.
We measured a 40% increase in the breakthrough force of membranes allowed to interact with AβpE3 42 oligomers using method 1 of sample preparation.
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