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      Review: Waste-Pretreatment Technologies for Remediation of Legacy Defense Nuclear Wastes

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          The mechanism responsible for extraordinary Cs ion selectivity in crystalline silicotitanate.

          Combining information from time-resolved X-ray and neutron scattering with theoretical calculations has revealed the elegant mechanism whereby hydrogen crystalline silicotitanate (H-CST; H2Ti2SiO7 x 1.5 H2O) achieves its remarkable ion-exchange selectivity for cesium. Rather than a simple ion-for-ion displacement reaction into favorable sites, which has been suggested by static structural studies of ion-exchanged variants of CST, Cs(+) exchange proceeds via a two-step process mediated by conformational changes in the framework. Similar to the case of ion channels in proteins, occupancy of the most favorable site does not occur until the first lever, cooperative repulsive interactions between water and the initial Cs-exchange site, repels a hydrogen lever on the silicotitanate framework. Here we show that these interactions induce a subtle conformational rearrangement in CST that unlocks the preferred Cs site and increases the overall capacity and selectivity for ion exchange.
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            Solvent Extraction Recovery of Byproduct137Cs and90Sr from HNO3Solutions—A Technology Review and Assessment

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              Technetium Removal from Hanford and Savannah River Site Actual Tank Waste Supernates with Superlig®639 Resin

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                Author and article information

                Journal
                Solvent Extraction and Ion Exchange
                Solvent Extraction and Ion Exchange
                Informa UK Limited
                0736-6299
                1532-2262
                February 06 2011
                January 31 2011
                February 06 2011
                January 31 2011
                : 29
                : 1
                : 1-48
                Article
                10.1080/07366299.2011.539134
                99d05ac5-6f02-4730-b850-a21c88fc07d6
                © 2011
                History

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