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Dimitrios A. Tsaoulidis - Studies of Intensified Small-Scale Processes for Liquid-Liquid Separations in Spent Nuclear Fuel Reprocessing - 9783319225869 - V9783319225869
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Studies of Intensified Small-Scale Processes for Liquid-Liquid Separations in Spent Nuclear Fuel Reprocessing

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Description for Studies of Intensified Small-Scale Processes for Liquid-Liquid Separations in Spent Nuclear Fuel Reprocessing Hardback. Series: Springer Theses. Num Pages: 191 pages, 68 black & white illustrations, 38 colour illustrations, biography. BIC Classification: PNRL; TDC; THK. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 13. Weight in Grams: 456.

The present work focuses on the development of intensified small-scale extraction units for spent nuclear fuel reprocessing using advanced process engineering with combined experimental and modelling methodologies. It discusses a number of novel elements, such as the intensification of spent fuel reprocessing and the use of ionic liquids as green alternatives to organic solvents. The use of ionic liquids in two-phase liquid-liquid separation is new to the Multiphase Flow community, and has proved to be challenging, especially in small channels, because of the surface and interfacial properties involved, which are very different to those of common organic solvents. Numerical studies ... Read more

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Product Details

Format
Hardback
Publication date
2015
Publisher
Springer International Publishing AG Switzerland
Number of pages
191
Condition
New
Series
Springer Theses
Number of Pages
170
Place of Publication
Cham, Switzerland
ISBN
9783319225869
SKU
V9783319225869
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

About Dimitrios A. Tsaoulidis
Dimitrios Tsaoulidis is a chemical engineer with expertise on intensified two-phase processes particularly relevant to spent nuclear fuel reprocessing. The main aim of his research, which combines sophisticated experimental and modelling methodologies, is to provide insight into the fundamentals of two-phase flows, study the interaction with mass transfer, as well as develop models for accurate prediction of the process' performance. ... Read more

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