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Complexation-elution process

Ceramicrete stabilization of Tc, partitioned from high-level tank wastes, was demonstrated by Singh et al. [11]. The waste stream was a product of a complexation-elution process that separates Tc from HLW, such as supernatant from salt waste tanks at Hanford and Savannah River. A typical waste solution generated during the complexation-elution process contains 1 M NaOH, 1 M ethylenediamine, and 0.005 M Sn +. [Pg.231]

Displacement chromatography is commonly used for preparative-scale separations, but, because of its focusing or concentrating effect, it also shows potential on the analytical scale, for example, for the concentration of minor components in complex mixtures.24,25 Operationally, displacement chromatography is similar to the step elution process, except that in the displacement process the mobile phase has a greater affinity for the stationary phase than for the sample components, and therefore the components are eluted ahead of the displacer front. The focusing effect of displacement chromatography is due to the fact that the concentration of the displacer determines the concentration of the product bands.26... [Pg.7]

Y2H screening is probably more sensitive for detecting transient interactions whereas TAP-TAG is more efficient at detecting connections between proteins in stable complexes although the washing step during the elution process may fail to identify complexes which components are linked by weak interactions. On one hand Y2H gives comprehensive data on binary interactions, on the other hand TAP-TAG... [Pg.149]

The best eluant found for the strong base resin A-500 was a mixture of thiourea and sulphuric acid. This eluant reacts chemically with the anionic gold complex on the resin (AuBr4+) and converts it to a cationic gold thiourea complex (AuTLH4). Since the cationic gold thiourea complex has absolutely no affinity for an anionic resin, gold elution is very fast and efficient ( 98%). This elution process has... [Pg.11]

A special feature of the elution process (reaction [II]) is that it permits the superimposition of a complexing reaction with ligands L on the ion-exchange reactions [la] and [Ib] ... [Pg.2322]

Equation 11 can be used for the determination of capacity factors in ion-exchange systems, but only if the eluent is unreactive to the metal eluite cations. This requisite mandates that no strong metal-ligand complexes be formed within the column, and that each metal exist predominately as the free ion M" throughout the elution process. [Pg.154]

The tert-huty hydroperoxide is then mixed with a catalyst solution to react with propylene. Some TBHP decomposes to TBA during this process step. The catalyst is typically an organometaHic that is soluble in the reaction mixture. The metal can be tungsten, vanadium, or molybdenum. Molybdenum complexes with naphthenates or carboxylates provide the best combination of selectivity and reactivity. Catalyst concentrations of 200—500 ppm in a solution of 55% TBHP and 45% TBA are typically used when water content is less than 0.5 wt %. The homogeneous metal catalyst must be removed from solution for disposal or recycle (137,157). Although heterogeneous catalysts can be employed, elution of some of the metal, particularly molybdenum, from the support surface occurs (158). References 159 and 160 discuss possible mechanisms for the catalytic epoxidation of olefins by hydroperoxides. [Pg.138]

Ion Excha.nge, The recovery of uranium from leach solutions using ion exchange is a very important process (42). The uranium(VI) is selectively adsorbed to an anion-exchange resin as either the anionic sulfato or carbonato complexes. In carbonate solutions, the uranyl species is thought to be the tris carbonato complex, U02(C03) 3 [24646-13-7] and from sulfate solutions the anion is likely to be U02(S0 , where nis ) [56959-61-6] or 2 [27190-85-8], The uranium is eluted from the resin with a salt or acid solution of 1 AfMCl or MNO (M = H", Na", The sulfate solution is... [Pg.317]

The elution of compounds on GC columns is a complex process related to the volatility of the compound, which results from its boiling point, and the chemical interactions between the compound and the stationary phase. These interactions are typically those which arise from polar-polar interactions, dispersion forces, dipole-dipole interactions, and so forth. Collectively, they are described by the term the chemical potential, Ap.°, which derives from the potential for the compound to... [Pg.95]

Flowever, information concerning the characteristics of these systems under the conditions of a continuous process is still very limited. From a practical point of view, the concept of ionic liquid multiphasic catalysis can be applicable only if the resultant catalytic lifetimes and the elution losses of catalytic components into the organic or extractant layer containing products are within commercially acceptable ranges. To illustrate these points, two examples of applications mn on continuous pilot operation are described (i) biphasic dimerization of olefins catalyzed by nickel complexes in chloroaluminates, and (ii) biphasic alkylation of aromatic hydrocarbons with olefins and light olefin alkylation with isobutane, catalyzed by acidic chloroaluminates. [Pg.271]

Chromatography is essentially a method of separation based on two phases, one stationary and one mobile. If the composition of the mobile phase is not changed during the separation, the term isocratic elution is used. For separation of complex mixtures with wide ranges of polarities, the composition of the mobile phase can be changed during separation, a process known as gradient elution. [Pg.453]


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