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Dive into the research topics where Nicholas R. Mann is active.

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Featured researches published by Nicholas R. Mann.


Journal of Radioanalytical and Nuclear Chemistry | 2002

Cesium sorption from concentrated acidic tank wastes using ammonium molybdophosphate-polyacrylonitrile composite sorbents

Terry A. Todd; Nicholas R. Mann; Troy J. Tranter; F. Šebesta; Jan John; A. Motl

Ammonium molybdophosphate-polyacrylonitrile (AMP-PAN) composite sorbents have been evaluated for the removal of cesium from Idaho National Engineering and Environmental Laboratory (INEEL) concentrated acidic tank waste. Batch contacts were performed to qualitatively evaluate the effects of increased nitric acid, sodium and potassium. An equilibrium isotherm was generated with simulated concentrated tank waste solutions and fit to the Langmuir equation. Additional batch contact experiments were performed to determine if mercury, plutonium and americium would sorb onto AMP-PAN. Dynamic sorption was evaluated in column tests employing 1.5 cm3 columns operating at 5, 10 and 20 bed volumes of flow per hour. Results indicate, as expected, that dynamic cesium sorption capacity is reduced as the flowrate is increased. Calculated dynamic capacities for cesium were 22.5, 19.8 and 19.6 mg Cs/g sorbent, for 5, 10 and 20 bed volume per hour flows, respectively. The thermal stability of loaded AMP-PAN was evaluated by performing thermogrovimetric analysis (TGA) on samples of AMP, PAN (polymer), and AMP-PAN. Results indicate that AMP-PAN is stable to 400 °C, with less than a 10% loss of weight, which is at least partially due to loss of water of hydration. The evaluation of AMP-PAN indicates that it will effectively remove cesium from concentrated acidic tank waste solutions.


Separation Science and Technology | 2005

Removal of Cesium from Acidic Radioactive Tank Waste by Using Ionsiv IE‐911

Nicholas R. Mann; Terry A. Todd

Abstract IONSIV IE‐911, or the engineered form of crystalline silicotitanate (CST), manufactured by UOP Molecular Sieves, has been evaluated for the removal of cesium from Idaho National Engineering and Environmental Laboratory (INEEL) acidic radioactive tank waste. A series of batch contacts and column tests were performed by using three separate batches of CST. Batch contacts were performed to evaluate the concentration effects of nitric acid, sodium, and potassium ions on cesium sorption. Additional batch tests were performed to determine if americium, mercury, and plutonium would sorb onto IONSIV IE‐911. An equilibrium isotherm was generated by using a concentrated tank waste simulant. Column tests using a 1.5 cm3 column and flow rates of 3, 5, 10, 20, and 30 bed volumes (BV)/hr were performed to elucidate dynamic cesium sorption capacities and sorption kinetics. Additional experiments investigated the effect of CST batch and pretreatment on cesium sorption. The thermal stability of IONSIV IE‐911 was evaluated by performing thermal gravimetric analysis/differential thermal analysis. Overall, IONSIV IE‐911 was shown to be effective for cesium sorption from complex, highly acidic solutions; however, sorbent stability in these solutions may have a deleterious effect on cesium sorption.


Archive | 2003

High capacity adsorption media and method of producing

Troy J. Tranter; Nicholas R. Mann; Terry A. Todd; Ronald Scott Herbst


Archive | 2006

High capacity adsorption media for separating or removing constituents, associated apparatus, and methods of producing and using the adsorption media

Troy J. Tranter; Nicholas R. Mann; Terry A. Todd; Ronald Scott Herbst


Archive | 2008

RADIONUCLIDE DETECTION DEVICES AND ASSOCIATED METHODS

Nicholas R. Mann; Troy J. Tranter


Archive | 2007

Methods of using adsorption media for separating or removing constituents

Troy J. Tranter; R. Scott Herbst; Nicholas R. Mann; Terry A. Todd


Archive | 2004

Filter and method of forming a filter

Nicholas R. Mann; Ronald Scott Herbst; Vadim Kochergin; Tammy Trowbridge


Archive | 2010

Methods of producing metal oxides, a method of producing adsorption media including the same, and a precursor of an active component including the metal oxide

Nicholas R. Mann; Troy J. Tranter


Archive | 2008

Radioisotope Detection Device and Methods of Radioisotope Collection

Troy J. Tranter; Christopher P. Oertel; John R. Giles; Nicholas R. Mann; Michael E. McIlwain


Archive | 2003

Composite media for ion processing and a method for making the composite media

Terry A. Todd; Nicholas R. Mann; Troy J. Tranter; F. Šebesta

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Troy J. Tranter

Battelle Memorial Institute

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Terry A. Todd

Battelle Memorial Institute

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F. Šebesta

Czech Technical University in Prague

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John R. Giles

Battelle Memorial Institute

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Matthew G. Watrous

Battelle Memorial Institute

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R. Scott Herbst

Battelle Memorial Institute

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