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Vacuum microbalance adsorption studies with

The results of studies of copper surfaces by low-temperature adsorption isotherms may be summarized as follows. True surface areas of metallic specimens as small as 10 sq. cm. can be derived with a precision of 6% from low-temperature adsorption isotherms using vacuum microbalance techniques. This method is of special value in determining the average thickness of corrosion films formed by the reaction of gases or liquids with solids. The effect of progressive oxidation of a rough polycrystalline metal surface is to decrease the surface area to a point where the roughness factor approaches unity. [Pg.92]

The adsorption isotherms are measured with a quartz beam vacuum microbalance of high sensitivity. The surfaces studied are... [Pg.108]

In this article we report i) the measurement of sorption equilibrium data of nC,-, and nCy in 5A zeolite pellets on a flow microbalance ii) The measurement of intraparticle diffusivity of nCs and nCc on 5A zeolite pellets with crystals of different size by ZLC and gravimetry and iii) The development of a mathematical model in order to predict the behavior of fixed bed and cyclic adsorption processes, iv) The prediction of breakthrough curves of propane/propylene and n/iso-paraffins mixtures in a fixed-bed adsorber based on a model including parameters independently measured, iv) Study of cyclic adsorption processes as Pressure Swing Adsorption (PSA) / Vacuum Swing Adsorption (VSA) and Temperature Swing Adsorption (TSA) for the separation of propane /propylene mixtures and n/iso-paraffins mixtures. [Pg.373]


See other pages where Vacuum microbalance adsorption studies with is mentioned: [Pg.68]    [Pg.55]    [Pg.68]    [Pg.113]    [Pg.198]    [Pg.22]    [Pg.368]    [Pg.17]    [Pg.390]    [Pg.592]   
See also in sourсe #XX -- [ Pg.6 , Pg.43 , Pg.48 , Pg.49 , Pg.50 , Pg.51 , Pg.52 , Pg.53 , Pg.54 , Pg.62 , Pg.64 , Pg.64 , Pg.66 , Pg.66 , Pg.68 ]




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Adsorption studies

Adsorption studies with microbalance

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Microballs

Studies with

Vacuum microbalance

With adsorption

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