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Resorcinol - formaldehyde adsorption of cesium from Hanford waste solutions
Authors:N M Hassan  K Adu-Wusu  J C Marra
Institution:(1) Savannah River Technology Center, Westinghouse Savannah River Company, 29808 Aiken, South Carolina, USA
Abstract:Batch equilibrium measurements were conducted at 25±2 °C with a granular resorcinol-formaldehyde (RF) resin to determine the distribution coefficients (K d ) for cesium. In the tests, Hanford Site actual waste sample containing radioactive cesium (137Cs) and a pretreated waste sample that was spiked with non-radioactive 133Cs were used. Initial concentrations of non-radioactive cesium in the waste sample were varied to generate an equilibrium isotherm for cesium. Majority of the tests were conducted at 25±2 °C using a liquid to solid phase ratio of sim100 ml/g and at a contact time of 72 hours. Two additional tests were conducted at a liquid to solid phase ratio of 10 and at contact time of 120 hours. The measured distribution coefficient (K d ) for radioactive cesium (137Cs) was 948 ml/g, the K d for non-radioactive cesium (133Cs) was 1039 ml/g. The K d for nonradioactive cesium decreased from 1039 to 691 ml/g with increased initial cesium concentration from sim8 to 64 mgrg/ml. Very little change of the K d was observed at initial cesium concentration above 64 mgrg/ml. The maximum sorption capacity for cesium on granular RF resin was 1.17 mmole/g dry resin. This value was calculated from the fit of the equilibrium isotherm data to the Dubinin-Radushkevich equation. Previously, a total capacity of 2.84 mmole/g was calculated by Bibler and Wallace for air-dried RF resin.This work was conducted at the Savannah River Technology Center in Aiken, SC, which is operated for the U. S. Department of Energy (DOE) by Westinghouse Savannah River Company under Contract DE-AC09-96SR18500. The Hanford River Protection Project-Waste Treatment Plant (RPP-WTP) funded this work. The authors are very grateful to Karen Palmer, Betty Mealer, and Yvonne Simpkins for their assistance in the experimental work.
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