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T. Klassen

Publications and source records attributed to T. Klassen.

2 recordsLinked to original sources

Modeling the kinetic behavior of the Li-RHC system for energy-hydrogen storage : ( I ) absorption

The Lithium-Boron Reactive Hydride Composite System (Li-RHC) (2 LiH + MgB$_{2}$ / 2 LiBH$_{4}$ + MgH$_{2}$) is a high-temperature hydrogen storage material suitable for energy storage applications. Herein, a comprehensive gas-solid kinetic model for hydrogenation is developed. Based on thermodynamic measurements under absorption conditions, the system's enthalpy $Δ$H and entropy $Δ$S are determined to amount to -34 $\pm$ 2 kJ $\cdot$ mol H$_{2}^{-1}$ and -70 $\pm$ 3 J $\cdot$ K$^{-1}$ $\cdot$ mol H$_{2}^{-1}$, respectively. Based on the thermodynamic behavior assessment, the kinetic measurements' conditions are set in the range between 325 °C and 412 °C, as well as between 15 bar and 50 bar. The kinetic analysis shows that the hydrogenation rate-limiting-step is related to a one-dimensional interface-controlled reaction with a driving-force-corrected apparent activation energy of 146 $\pm$ 3 kJ $\cdot$ mol H$_{2}^{-1}$. Applying the kinetic model, the dependence of the reaction rate constant as a function of pressure and temperature is calculated, allowing the design of optimized hydrogen/energy storage vessels via finite element method (FEM) simulations.

cond-mat.mtrl-sci

The D234 action for light quarks

We investigate a new light fermion action (the ``D234'' action), which is accurate up to $Ø(a^3)$ and tadpole-improved $Ø(a α_s)$ errors. Using D234 with Symanzik- and tadpole-improved glue we find evidence that continuum results for the quenched hadron spectrum (pion, rho and nucleon) can be obtained on coarse lattices.

hep-lat