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Gel degradation in porous media was evaluated for single core tests and a simple scaling rule was applied to calculate productivity recovery during degradation.
PEG chains of different lengths were then attached to some of the remaining peripheral amines, and their respective ability to improve the solubility of the metallodendrimers in aqueous buffered media was evaluated.
The in vitro degradation mechanism of this matrix in different media was evaluated as well as its bioactivity in a simulated body fluid (SBF) buffered at pH 7.4 °C7 °C, 28 days).
The selective cesium capacity of this inorganic ion exchange media was evaluated with simulated sodium bearing waste (SBW) and dissolved pilot plant calcine at the Idaho Nuclear Technology and Engineering Center INTECC).
The ability of two biodegradable surfactants, polyoxyethylene (20) sorbitan monooleate (Tween® 80) and sodium dihexyl sulfosuccinate (Aerosol® MA), to recover a representative dense non-aqueous-phase liquid (DNAPL), trichloroethene (TCE), from heterogeneous porous media was evaluated through a combination of batch and aquifer cell experiments.
The fungal growth on the media was evaluated qualitatively based on observation of the diameter and density of growth around the inocula.
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Physicochemical properties of the growth media were evaluated at the beginning of the bioassays.
Anisotropy factor of the designed media is evaluated and a brief discussion of the available tradeoff is given.
CharacTheization with an AFminimum Nanoscrathicknessesnique suggests a more than two times increased resistivity against plastic deformation fullHcoverage cofpared themediatron sputtered CNx overcoats.
A technique of energy gradient carbon embedding using the filtered cathodic vacuum arc technique in the top layer of the magnetic media is evaluated for its tribological properties.
The equilibrium solubilities of these salts, in different buffered media, were evaluated and both INH−MAL and INH−MES were found to be more soluble (∼3 fold) than INH.
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