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In this work, a fluidized bed filter with agglomerated carbon nanotubes (CNTs) as bed materials is employed to filtrate aerosol particles and its filtration performance is investigated.
There was little difference on depth filtration performance in terms of filtrate turbidity for tagged and untagged SmP E treated cultures (Table 3).
At laboratory scale, the characteristics of three single tube ceramic membranes on the filtration performance in terms of phage retention, protein transmission and filtrate flux were analysed.
Agitation intensity did not affect the filtration performance, but it increased the solid content of the filtrate from 0.30 wt.% to 0.35 wt.%.
In addition, the CNT membranes are found to have excellent filtration performance in nano-gold solution.
Also, the filtration performance and resistance of nanofibers webs are greater than sub-layers [97].
The membrane adsorbent effectively combines the filtration performance of the membrane.
The filtration performance was evaluated on such membranes with varied thickness.
Filtration performance parameters were obtained: permeate flux, volume concentration factor (VCF) and power usage.
Taguchi's method is applied to determine how much each parameter contributes to the overall filtration performance.
This study proposes a filtration length-based feedback control system for optimal filtration performance.
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