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Titlebook: Applications of Ion Exchange Materials in Chemical and Food Industries; Inamuddin,Tauseef Ahmad Rangreez,Abdullah M.‘Asiri Book 2019 Sprin

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Use of Ion-Exchange Resins in Dehydration Reactions,es is dealt with, and mainly to ethers, since these latter processes require a lower reaction temperature. Moreover, the large variety of ethers (linear, branched, cyclic), which can be synthesized in the presence of ion-exchange resins, has attracted the interest of many research groups, and import
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The Application of Ion-Exchange Resins in Hydrogenation Reactions,driving force behind the use of ion-exchange resins and more specifically, heterogeneous ion-exchange resins over homogeneous catalysts. For hydrogenation reactions, ion-exchange resins have mainly been employed as a catalyst support. The synthesis entails implanting/impregnating metallic ions into
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Synthesis and Control of Silver Aggregates in Ion-Exchanged Silicate Glass by Thermal Annealing and minutes to one hour, in a molten mixture of AgNO. and NaNO. with a molar ratio of 1:99, 5:95 and 10:90. The ion exchange process was followed by different treatments: thermal annealing, gamma irradiation and their combined role in order to initiate the synthesis and control of silver aggregates in
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Chromatographic Reactive Separations,t is possible to synthesize tailor-made IERs for the reactive processes at hand. Use of IERs can fetch a number of advantages compared to those of homogeneous catalysts and other solid catalysts. Reactive separation (RS) is a relatively new process technology that has the potential to offer several
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Ion-Exchange Chromatography in Separation and Purification of Beverages,, ions, additives, colourants or harmful substances from drinks. The ion-exchange materials employed are nonreactive and physiochemically stable, and therefore, are a suitable choice for beverage treatment. The most widespread use of ion-exchange process is in the water treatment industry; seawater
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