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Creator | Title | Description | Subject | Date |
1 |
 | Miller, Jan D.; Yost, Garold S.; Veranth, John M. | Novel method to detect unlabeled inorganic nanoparticles and submicron particles in tissue by sedimentation field-flow fractionation | A novel methodology to detect unlabeled inorganic nanoparticles was experimentally demonstrated using a mixture of nano-sized (70 nm) and submicron (250 nm) silicon dioxide particles added to mammalian tissue. The size and concentration of environmentally relevant inorganic particles in a tissue sa... | Sedimentation field-flow fractionation; transmission electron microscopy; tissue digestion | 2008 |
2 |
 | Miller, Jan D.; Deo, Milind; Lin, Chen-Luh | Distribution of multiphase fluids in porous media: comparison between lattice Boltzmann modeling and micro-x-ray tomography | A parallel implementation of the three-dimensional Shan-and-Chen multicomponent, multiphase lattice Boltzmann method (LBM) was used to simulate the equilibrium distributions of two immiscible fluids in porous media. The simulations were successfully validated against cone-beam x-ray microtomographi... | Multiphase fluid flow; porous media; X-ray microtomography | 2008-02 |
3 |
 | Miller, Jan D. | Chemical utilization of sequestered carbon dioxide as a booster of hydrogen economy | For many, hydrogen in a pure hydrogen economy would be like natural gas in today's energy economy. Unfortunately, hydrogen's physical properties are unsuited to the energy market's requirements in terms of packaging, storage, transfer, and delivery. In this paper, a hybrid energy economy that packag... | dimethyl ether; liquid fuels; carbon sequestration | 2008-01-01 |