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A substantial increase in mixer efficiency is achieved using elements with less twist than the standard 180° Kenics configuration.
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The flow rate is 1.4 ± 0.4 nL/s, which is 2 orders of magnitude lower than the flow rates of common mixers in which high mixing efficiency is achieved on the order of tens of microseconds.
Further, it may be deduced from Fig. 2 that the effect of pulsation intensity on mass transfer efficiency is more pronounced in the mixer-settler region compared to the effect for the region beyond the mixer-settler region (dispersion region).
The H-C mixer shows an almost flat mixing characteristic over the whole range of Reynolds numbers examined and mixing efficiency is higher than 90%.
"Efficiency is money".
Assay efficiency is 93.2%.
Efficiency is extremely important.
It was found that the highest efficiency was for the dynamic mixer, next the static mixer and the lower for the shaping extruder's head.
The magnitude of the rate-of-strain tensor, which represents an upper bound for mixing efficiency, was computed and profiled within the mixer.
In work by Hsieh et al., the mixing efficiency was enhanced by increasing the mixing angle of the Y-type mixer [ 17].
Assay efficiency was 96.3%.
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