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Results demonstrate that positive Mb colloids at pH 4.5, having more% of entrained water stabilize the collagen fibrils (pH 7.5) around them.
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Therefore, stabilized aqueous solutions consisting of nanoparticle in water stabilized with sodium dodecyl sulfate (SDS) are more stable.
X-ray data and water vapor adsorption isotherms indicated that the strongly bound water stabilizes the carbonizate structure.
The spraying was performed by atmospheric plasma spray (water stabilized torch) and vacuum plasma spray (RF inductively coupled torch).
In contrast, hydrate formation and dissociation from O/W emulsions (⩾71vol% water) stabilized the O/W emulsion.
Manganese release into the pore water stabilized after 15 days, in agreement with the mass loss measurements.
Open image in new window Fig. 4 Measured viscosity versus shear rate of invert emulsions containing 30 vol% water stabilized by OTMOS-modified silica NPs Open image in new window Fig. 5 Measured viscosity versus shear stress of invert emulsions containing 30 vol% water stabilized by OTMOS-modified silica NPs.
Open image in new window Fig. 9 Shear stress versus shear rate of invert emulsions containing 30 vol% water stabilized by 1 wt% OTMOS-modified silica NPs (θ = 92°) (a) and 2 wt% OTMOS-modified silica NPs (θ = 92°) (b).
Open image in new window Fig. 11 Effect of barite on the flow behavior of invert emulsions containing 30 vol% water stabilized by OTMOS-modified silica NPs (θ = 92°).
Microemulsions are thermodynamically stable, homogeneous dispersions of two immiscible fluids, generally, hydrocarbons and water stabilized with surfactant molecules, either alone or mixed with a co-surfactant (Schwuger et al. 1995).
Open image in new window Fig. 13 Flow behavior of invert emulsions containing 30 vol% water stabilized by OTMOS-modified silica NPs (θ = 92°) before and after aging at 120 °C. a Viscosity versus shear stress.
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