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Four variables including pH, shaking time, mass of polymer and morin were selected as the factors affecting the optimization process.
Approximately 16% of the composite weight is lost, which suggests that this is exactly the mass of polymer to be found on the silica gel surface.
It is more scientific to measure the surface excess (Γs) which is the mass of polymer per unit surface area of the solid.
Thereafter, polymerization time was used as the independent variable to control the mass of polymer grafted from the membrane surfaces and, thus, the protein binding capacity.
The obtained results using the two-level fractional factorial design indicated that pH, mass of polymer and morin were statistically significant.
Using the Box Behnken design, the optimal conditions for the extraction of lead were 6.1, 29.2 mg and 2.7 mg, for pH, mass of polymer and morin, respectively.
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This paper addresses two important features of the diffusion of liquids into a molten polymer matrix: the dependence of the mutual diffusion coefficient on the liquid miscibility and molar mass of polymers.
The influence of parameters on disassembly kinetics and mechanism, such as distance between redox PFS multilayers and the electrode, effect of the top inert layer, the choice of the supporting electrolyte, the ionic strength of the solution, and the molar mass of polymers, was investigated.
The main reason for using the methods in the characterization of the molar mass of polymers and other macromolecules is that the retention time of components separated in an FFF channel depends on their diffusion coefficients and, sometimes, on other component parameters.
The 25 mass% of polymer electrolyte-DWCNT-COOH composite showed typical electronic conductivity of carbon nanotube-based composites (i.e., conductivities of 10−2 S cm−1 were obtained).
Micro-injection moulding (μIM) represents the only technology currently capable of enabling the mass production of polymer micro-components.
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