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Rock porosity determination by combination of X-ray computerized tomography with mercury porosimetry
P. Klobes H. Riesemeier K. Meyer J. Goebbels K.-H. Hellmuth 《Fresenius' Journal of Analytical Chemistry》1997,357(5):543-547
First results are described of coupling of mercury porosimetry with X-ray computerized tomography (CT) as a new combination
technique for rock porosity studies. This technique is suitable for rock samples with a pronounced mercury intrusion-extrusion
hysteresis and includes CT measurements before and after mercury intrusion. The entrapped portion of mercury, when the pressure
after the intrusion into the rock sample is reduced to 0.1 MPa, serves as a contrast agent in the porous network to localize
spatial distribution of rock porosity by CT. The results obtained show that the mercury intrusion and therefore the porosity
were quite different for the separate mineral phases. Therefore the combination of mercury porosimetry and computer tomography
can give 3-D data on mineral-specific porosity distributions with additional pore size information. In contrast to mercury
porosimetry as a single method, results of the combination technique with CT represent a direct visualization of porosity
variation and do not depend on any special pore network model.
Received: 2 July 1996 / Revised: 20 November 1996 / Accepted: 22 November 1996 相似文献
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Eine spektroskopische Methode zur Untersuchung des Anfangsstadiums der Metallschichtbildung auf Glas
A simple detection of light metallic deposits (e. g. nickel) on oxidic surfaces can be achieved by means of the spectroscopical measurement of the concentration of hydrogen atoms in the positive column of a glow discharge. – The kinetics analysis of the experimental results shows that the velocity of forming as well as the heterogeneous recombination of hydrogen atoms depend on the amount of nickel being deposited on the surface area. The kinetic data allow conclusions to be drawn concerning the process and velocity of metallic deposits on glass surfaces. The initial phase of film forming, hitherto experimentally difficult to follow, can thus be studied. Measurements of the electrical resistance show the island structure of the thin nickel films. Due to the surface diffusion of hydrogen atoms such a discontinuous film exhibits the same catalytic activity for the recombination of hydrogen atoms as a continuous film. 相似文献
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A solid state metathesis (SSM) reaction was investigated with respect to the formation of rare‐earth carbodiimides, the role of the co‐produced salt (LiCl), and the eutectic flux medium (LiCl/KCl). A SSM reaction is characterized by an exothermic reaction in which a salt (often LiCl) is coproduced. When the salt melts, it can serve as a useful medium for the crystallization of a desired product. An improved crystal growth can be observed by using an eutectic flux. However, the composition of an eutectic LiCl/KCl flux is altered when LiCl is produced during the reaction. The thermal effects concerning the endothermic melting of the flux and the exothermic ingnition of the SSM reaction may compensate each other, which is not necessarily a drawback for the reaction to proceed. 相似文献
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S. A. Gottlieb J. Kuti D. Toussaint A. D. Kennedy S. Meyer B. J. Pendleton R. L. Sugar 《Journal of statistical physics》1986,43(5-6):1105-1115
We present a large-scale Monte Carlo calculation of the deconfining phase transition temperature in lattice quantum chromodynamics
without fermions. Using the Wilson action, the transition temperature as a function of the lattice couplingg is consistent with scaling behavior dictated by the perturbativeα function for 6/g2>6.15.
Speaker at the conference; on leave from CRIP, Budapest. 相似文献
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