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Fluids ultra-high-temperature

Ultra-High-Temperature (UHT) Sterile Milk. Rapid increases in the production and sales of sterile, fluid milk in Europe and its entry into new markets around the world merit its consideration in this chapter. Although the gross composition of UHT sterile, aseptically packaged milk is essentially the same as that of its pasteurized counterpart, differences in its properties and minor constituents should be mentioned. [Pg.43]

Hansen, A.P., Swartzel, K.R. 1980. Taste panel testing of ultra high temperature fluid dairy... [Pg.541]

The solar-thermal process is feasible there are no technical show stoppers and there are no materials concerns. The fluid-wall reactor design allows continuous operation without inside wall deposition of carbon black. Reaction rates at the demonstrated ultra-high temperatures are enormous. [Pg.81]

Considerable research has been conducted to identify water soluble polymers which can efficiently control the flow properties of displacement fluids for enhanced oil recovery.Two main types of polymeric viscosifiers have emerged from this research which rely mainly on ultra high molecular weight for thickening efficiency natural biopolymers such as Xanthan or Scleroglucain and synthetic acrylamide based polymers. Although these polymers possess many useful characteristics, the reservoir conditions in which they can provide adequate mobility control are limited. For example, the biopolymers provide excellent mechanical stability and salt tolerance, however, further improvement in high temperature stability would be desirable. [Pg.147]

Cooper Schrieffer) fluids is now routine . In addition to these new states of matter that have been formed, cooling atoms to micro-Kelvin temperatures, and below, has enabled both ultra-high resolution spectroscopy studies ° ... [Pg.393]

Plasma treatment refers to the surface modification processes of materials using non-equilibrium gas plasmas. Non-equilibrium plasmas with a low degree of ionization, so-called cold plasmas or low-temperature plasmas, are mainly conposed of electrons, ions, free radicals, and electronically excited atomic and molecular species. These highly reactive plasma species interact non-thermally with material surfaces, and can react with and bond to various substrate surfaces, or combine together to form an ultra thin layer of plasma coating, and consequently alter the surface chemistry and surface properties. The plasma treated nanoparticles with desired surface functionalities can strongly interact with liquid molecules and thus better disperse into the base fluid to form stable suspension. [Pg.1691]


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See also in sourсe #XX -- [ Pg.1219 ]




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