Measuring adsorption isotherms with a flowmeter and a pressure gauge

Author:

Vallejos-Burgos FernandoORCID,Kaneko Katsumi

Publisher

Springer Science and Business Media LLC

Subject

Surfaces and Interfaces,General Chemical Engineering,General Chemistry

Reference30 articles.

1. Ajot, H., Joly, J.F., Raatz, F., Russmann, C.: A new apparatus for continuous adsorption. Application to the characterization of microporous solids. In: Rodriguez-Reinoso, F., Rouquerol, J., Sing, K.S.W., Unger, K.K. (eds.) Studies in Surface Science and Catalysis, Characterization of Porous Solids II, vol. 62, pp. 161–167. Elsevier, Amsterdam (1991). https://doi.org/10.1016/S0167-2991(08)61320-8

2. Ajot, H., Joly, J.F., Garnier, D.A., Marny, F., Raatz, F., Russmann, C.: Method of and an apparatus for measuring the adsorption and the desorption of a gas adsorbed by a solid sample and the use thereof. US Patent No. 5,239,482 (1993)

3. Azarfar, S., Mirian, S., Anisi, H., Soleymani, R., Sadighi, S.: Characterization of 3A molecular sieve using micromeritics tristar device. In: The first conference on the new laboratory techniques in oil, gas and petrochemical industries, Tehran, Iran (2015)

4. Broom, D.: Techniques for the measurement of gas adsorption by carbon nanostructures. In: Terranova, M.L., Orlanducci, S., Rossi, M. (eds.) Carbon Nanomaterials for Gas Adsorption, pp. 1–38. Pan Stanford Publishing, Singapore (2012)

5. NATO ASI Series;CW Conner,1997

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