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Mass Flow-rate Control Through Time Periodic Electro-osmotic Flows In ...
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Duction ............................................................................................................................................ 1 1. Registering with the Bond Management System (BMS) .......................................................... 2 2. Submitting a Grant Application................................................................................................... 2 3. Funding .
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Dfg FAQ
The electroosmosis theory of phloem translocation was put forward by I~ENSOM 1 and SPANNER 2. It has the attraction of linking evidence that sugar moves in the sieve tubes in solution by mass flow s with the high physiological activity of phloem .
The osmotic water transport is the result of concentration differences between the two solutions separated by the membrane. Electroosmosis refers to the water transported in the hydration shell of the ions migrating through the membrane due to an electrical potential gradient.
In chemistry, electro-osmotic flow (EOF, hyphen optional; synonymous with electro-osmosis or electro-endosmosis) is the motion of liquid induced by an applied potential across a porous material, capillary tube, membrane, microchannel, or any other fluid conduit.
Electroosmotic Flow (EOF) Electroosmosis is a fundamental electrokinetic effect involving movement of the bulk solution against a charged solid surface under the influence of an electric field. In the case of CE, the capillary inner wall usually carries negative charges due to the deprotonation of silanol groups.
The electroosmotic hypothesis postulates that solution is moved across all sieve plates (areas at which individual sieve elements end) by an electric potential that is maintained by a circulation of cations (positively charged chemical ions), such as potassium.
1 Principle. The electro-osmotic flow (EOF) is generated when electrodes are placed in the reservoirs at each end of a microchannel by a process known as electro-osmosis (Fig. 6.3). The EOF is implemented through the surface charges dominant in the small scales.
Electro-osmosis (EO) is used in a membrane based separation processes. The electrical potential facilitates the transport of mobile ions and liquid through the pores of the membrane.
2.2. It allows removing some adsorbed water on the solid surface that cannot be released by mechanical methods (Zhou et al., 2001; Smollen and Kafaar, 1994). As particles are mainly negatively charged, the electroosmotic flow goes from the anode to the cathode.
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