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In addition, it decreases with decreasing draw solution concentration and increasing feed solution concentration.
The polymer solution concentration directly affects spinnability and fiber diameter.
The influence of the draw solution concentration is also studied.
While the mesh shadow factors were found to be independent of solution concentration, the membrane resistances were found to decrease with an increase in solution concentration.
Also, the bubble diameter initially increases as the solution concentration increases up to 0.075 kg kg−1 and then starts decreasing as the solution concentration increases further.
Core solution concentration, solvent and feed rate were utilized to control core diameter with higher solution concentration and feed rate positively correlating with increased fiber diameter and stiffness.
Pressure distributions, solution concentration and velocity of CO2 gas and solution are derived from the simulations.
The supposedly linear performance with increasing draw solution concentration mentioned by some is incorrect.
Whether downflow-feeding or upflow-feeding mode is adopted, breakthrough time decreases when solution concentration increases.
The effects of solution concentration, temperature, pressure and oxidant concentration on gasification were studied.
Effects of solution concentration and needle electrode position and size are also examined.
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