Page 91 - Gas Adsorption Equilibria
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1. Basic Concepts 77
[1.48] Bohn St.
Untersuchung der Adsorption von Helium an Aktivkohle Norit Rl Extra und dem
Molekularsieb 5 A.
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[1.49] Gumma S., Talu O.
Gibbs Dividing Surface and Helium Adsorption,
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[1.50] Staudt G., Sailer G., Tomalla M., Keller J. U.
A note on Gravimetric Measurements of Gas-Adsorption Equilibria
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[1.51] Llewellyn P. L., Rouquerol F., Sing K. S. W.
Critical appraisal of the use of nitrogen adsorption for the characterization of porous
carbons, Studies in Surface Sciences and Catalysis, Vol. 128,
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[1.52] Sircar S.
Measurements of Gibbsian Surface Excess,
AIChE Journal, 47 (2001), p. 1169-1176.
[1.53] Sircar S.
Role of Helium Void Measurement in Estimation of Gibbsian Surface Excess,
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IK International, Chiba, Japan, 2002.
[1.54] Keller J. U., Zimmermann W., Schein E.
Determination of Absolute Gas Adsorption Isotherms by Combined Calorimetric and
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[1.55] International Standardisation Organization, Geneva (ISO)
ISO 15901-2 (2004), Pore size distribution and porosity of solid materials by mercury
porosimetry and gas adsorption – Part 2: Analysis of meso-pores and macro-pores by
gas adsorption, Geneva, in preparation (2004).
[1.56] International Standardisation Organization, Geneva (ISO)
ISO 15901-3 (2004), Pore size distribution and porosity of solid materials by mercury
porosimetry and gas adsorption – Part 3: Analysis of micro-pores by gas adsorption,
Geneva, in preparation (2004).
[1.57] Brunauer S., Emmet P. H., Teller E.
J. American Chemical Society, 60 (1938), 309.
[1.58] Sweatman M. B., Quirke N.
Characterization of porous material by Gas Adsorption: Comparison of Nitrogen at
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Langmuir, 17, 5011-5020 (2001).