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The newly designed SMEBR system was based on applying an intermittent direct current (DC) field between immersed circular perforated electrodes around a membrane filtration module.
The Doppler OCT system was used to visualize the flow patterns inside a unit cell of the spacer in a modified membrane filtration module.
The antifouling performance of tubular Ti4O7/Al2O3 membrane was evaluated through a home-made cross-flow electrically-assisted membrane filtration module for the treatment of three typical feed solutions that are known to foul easily, namely, oily wastewater, humic acid (HA), and bovine serum albumin (BSA).
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After filtration, membranes were washed with PBS, disassembled from the filtration module, allowed to air-dry overnight and stored at −20 °C until staining.
The performance of a wind-powered membrane filtration system using a brackish water reverse osmosis (BW30) module and synthetic brackish (5500 mg/L NaCl) feed water was determined.
A high-throughput technique for downstream processing studies was developed by integrating 96-well filter plates with a magnetic tumble stirrer that simultaneously mixes the solution above the membrane in each well akin to the conventional stirred-cell filtration module – thus we call this technique 'stirred-well filtration' (SWF).
In this study, we designed a special tubular membrane module, which can be self-adaptive according to the dynamic membrane filtration process, to gain a sustainable stable flux and enhance the backwashing effect.
Their application in a specially designed blood filtration module enabled to almost totally inhibit blood cells interactions with membrane material, as well as to importantly reduce platelet activation in the permeate (2.5-fold reduction).
The filtrate was made cell free using 0.2 μl membrane filtration.
A circular membrane disk with a diameter of 0.049 m (49 mm) was placed at the bottom of the filtration module, the active top layer towards the feed solution.
In this article, the effects of the introduction of a membrane module and the operation conditions on the catalytic properties of glycerol hydrogenolysis as well as the membrane filtration performance were investigated.
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