The focus of this project is the demonstration and advancement of membrane-based separation and destruction technologies. The authors are exploring development of membrane systems for gas separations, selective metal ion recovery, and for separation or destruction of hazardous organics. They evaluated existing polymers and polymer formulations for recovery of toxic oxyanionic metals such as chromate and arsenate from selected waste streams and developed second-generation water-soluble polymeric systems for highly selective oxyanion removal and recovery. They optimized the simultaneous removal of radioactive strontium and cesium from aqueous solutions using the new nonhazardous separations agents, and developed recyclable, redox-active extra...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February ...
The objective of this research program was to develop, characterize, and evaluate the potential of p...
Energy production by nuclear power produce radioactive waste water. In order to meet the demands fro...
textNuclear power waste contains radioactive isotopes with long half lives and the problem lies in t...
The growing demand for platinum-group metals (PGM) within the DOE complex and in industry, the need ...
The U.S. Department of Energy is actively pursuing new and improved separation techniques to concent...
The Idaho National Engineering Laboratory (INEL), under sponsorship by the Bureau of Mines, evaluate...
The use of membranes for separating gaseous and liquid mixtures has grown dramatically in the past ...
This body of work addresses the ways in which water interacts with materials on a molecular scale an...
'The first objective of this research is to develop rapid discovery and optimization approaches to n...
The general aim of this project is to design and prepare new electroactive ion-exchange (EaIX) mater...
This article gives a comprehensive review on hollow fibre supported liquid membrane based methods fo...
The purpose of this project was to develop, optimize, and evaluate new separation methods for remova...
© 2012 Dr. Alexander Michael St JohnPolymer Inclusion Membranes (PIMs) are a relatively new branch o...
The goal of this program is to develop an efficient, reliable, and radiation-resistant modified liqu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February ...
The objective of this research program was to develop, characterize, and evaluate the potential of p...
Energy production by nuclear power produce radioactive waste water. In order to meet the demands fro...
textNuclear power waste contains radioactive isotopes with long half lives and the problem lies in t...
The growing demand for platinum-group metals (PGM) within the DOE complex and in industry, the need ...
The U.S. Department of Energy is actively pursuing new and improved separation techniques to concent...
The Idaho National Engineering Laboratory (INEL), under sponsorship by the Bureau of Mines, evaluate...
The use of membranes for separating gaseous and liquid mixtures has grown dramatically in the past ...
This body of work addresses the ways in which water interacts with materials on a molecular scale an...
'The first objective of this research is to develop rapid discovery and optimization approaches to n...
The general aim of this project is to design and prepare new electroactive ion-exchange (EaIX) mater...
This article gives a comprehensive review on hollow fibre supported liquid membrane based methods fo...
The purpose of this project was to develop, optimize, and evaluate new separation methods for remova...
© 2012 Dr. Alexander Michael St JohnPolymer Inclusion Membranes (PIMs) are a relatively new branch o...
The goal of this program is to develop an efficient, reliable, and radiation-resistant modified liqu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February ...
The objective of this research program was to develop, characterize, and evaluate the potential of p...
Energy production by nuclear power produce radioactive waste water. In order to meet the demands fro...