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Showing 1 to 6 of 6 for “"Multicomponent transport"”.

  1. Physics-informed Deep Learning and Differentiable Mechanistic Models for Multicomponent Transport Phenomena

    … of new differentiable mechanistic models for multicomponent membrane transport; (2) the development and validation of physics-informed deep learning surrogate models for transmembrane transport phenomena. In the former, we relax many of the assumptions present in traditional models, while …

    mit Repository record for Physics-informed Deep Learning and Differentiable Mechanistic Models for Multicomponent Transport Phenomena (opens in a new tab)

  2. Characterization of the Genes Involved in Biosynthesis and Transport of Schizokinen, a Siderophore Produced by <em>Rhizobium leguminosarum</em> IARI 917.

    … ferric ions, bind with high affinity, and transport it into the cell via multicomponent transport systems. <em>Rhizobia</em> are soil dwelling organisms that form symbiotic relationships with host plants and fix atmospheric nitrogen, while the bacteria receive nutrients. <em>R. …

    etsu Repository record for Characterization of the Genes Involved in Biosynthesis and Transport of Schizokinen, a Siderophore Produced by <em>Rhizobium leguminosarum</em> IARI 917. (opens in a new tab)

  3. A hydrogeochemical investigation of metalliferous coal pile runoff and its interaction with soil and groundwater

    … to identify important reactions governing metal transport within subsurface environments subject to infiltration of coal pile runoff, samples of uncontaminated subsoil and aquifer materials adjacent to the D-Area coal stockpile runoff containment basin at the Department of Energy's Savannah River …

    vt Repository record for A hydrogeochemical investigation of metalliferous coal pile runoff and its interaction with soil and groundwater (opens in a new tab)

  4. Nonequilibrium Phenomena in Multiphase Flow, Transport, and Phase Change in Porous Media: Pore-Level Physics, Network Modeling, and Upscaling

    Multiphase fluid flow, multicomponent transport, and thermodynamic phase change in porous media are important for many subsurface environmental and energy applications, including vadose zone contaminant transport and shale oil and gas production. Understanding these complex physical processes …

    arizona-thes Repository record for Nonequilibrium Phenomena in Multiphase Flow, Transport, and Phase Change in Porous Media: Pore-Level Physics, Network Modeling, and Upscaling (opens in a new tab)

  5. Computational Modeling of Osmotically Assisted Membrane Separations with Multicomponent Solution-diffusion Theory

    … of the solute-coupling effects for transmembrane transport is integral to the development, and subsequent optimization, of OAMP unit operations. Theoretically, in binary mixtures, species separation is achieved due to the solution-diffusion mechanism, which results from the combination of …

    mit Repository record for Computational Modeling of Osmotically Assisted Membrane Separations with Multicomponent Solution-diffusion Theory (opens in a new tab)

  6. Design and Modeling of Nanostructured Palladium-Based Hydrogen-Selective Membranes

    … to emerging applications such as energy storage, transportation fuel, and nuclear fusion. The emerging applications are projected to grow exponentially, making the separation of hydrogen from other gases a critical step in meeting some of these growing needs. This thesis focuses on the separation …

    mit Repository record for Design and Modeling of Nanostructured Palladium-Based Hydrogen-Selective Membranes (opens in a new tab)