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Whereas narrow micropores (pores below 0.6 nm) govern the sorption behavior at 0.1 MPa, large micropores/small mesopores (pores below 2.0 3.0 nm) govern the sorption behavior at high pressure (4.5 MPa).
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The present work investigated the permeation behavior at high-pressure of four commercial-grade media used for natural gas filtration.
Most classical viscosity modeling methods are unable to predict the behavior at high-pressure, high-temperature conditions, neither to capture the change in the slope of the zero-shear viscosity with the molecular weight.
The results uniquely illustrated the occurrence of two-step ignition behavior at higher pressures, with two distinct regions of heat release and pressure rise.
Adverse rock mass behavior and/or sudden large water inflow at high pressure can be challenging to handle with open-face TBMs.
Usually, the anharmonic effects are noticeable at high pressure as reflected from elastic constants behavior.
We comment that pressure-dependent C ijk behavior can have a direct means to describe the interatomic forces at high pressure.
In this work, a CFD model was used to investigate the transient behavior of a perovskite-based monolith during catalytic combustion of methane at high pressure.
The critical endpoint, representing the type of the phase behavior, was employed to fit the interaction parameter of mixtures in critical state at high pressure.
In this work, the transient behavior of a perovskite-based monolith was investigated during catalytic combustion of methane at high pressure.
The diamond coated WC Co substrates were processed at high pressure (7.7 GPa) and high temperature (1000 °C) and their mechanical behavior was investigated by hardness instrumented testing before and after the high-pressure/high-temperature (HPHT) processing.
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