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The liquid-liquid phase separation of Al55Bi36Cu9 immiscible alloy melt was investigated by resistivity test.
In particular, the prediction of the effects of solvents on reaction kinetics and liquid-liquid phase equilibrium are discussed.
Liquid-liquid phase separation was observed in all blend systems but one.
A loop of liquid-liquid phase separation was found at low linear-polyethylene content.
The results showed that the liquid-liquid phase separation occurred in the solidification of Al55Bi36Cu9 monotectic melt from 917 °C to 653 °C.
Liquid-liquid phase segregation during the spray pyrolysis process is a key requirement for generating multiroom-structured metal oxide-carbon hybrid microspheres.
Liquid-liquid phase equilibrium (LLE) for the system of biodiesel, glycerol, methanol or ethanol is fundamental for modeling, simulation, design and economic evaluation of biodiesel production.
A hierarchical porous carbon membrane was designed and prepared through a method combining liquid-liquid phase separation and then pyrolysis process using polyacrylonitrile (PAN) as precursor.
The liquid-liquid phase separated regions were in the form of closed loops, asymmetrically placed at low linear polyethylene content.
Liquid-liquid phase separation phenomena have been investigated for a ternary system containing two polymers and a solvent.
The cocrystallization of this system is complicated by both the crystalline phase segregation and the liquid-liquid phase segregation.
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