2019Industrial & Engineering Chemistry ResearchRequires access

CO2 Separation via a DDR Membrane: Mutual Influence of Mixed Gas Permeation

Pasquale Francesco Zito, Adele Brunetti, Enrico Drioli, Giuseppe Barbieri

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Abstract

The permeation properties of DDR zeolite membranes in the separation of mixed gases are strongly affected by the gas species present in the mixture, their concentrations, and the operating conditions used. In this work, we investigated the mass transport properties of a DDR membrane for CO 2 separation in the temperature range 25–75 °C up to 700 kPa. The influence of CO 2 on the permeation of the other mixed gases as well as how the latter affects CO 2 permeation were systematically investigated. The low temperature significantly emphasized the difference between single and mixed gas permeation, reflected in higher CO 2 selectivity. In particular, the highest selectivity values were 28 and 17 when CO 2 was mixed with N 2 and H 2, respectively, whereas the CO 2 permeance exceeded 1.5 times the single gas value (i.e., 18 nmol m –2 Pa –1 s –1 ) for a 40:60 CO 2 /H 2 mixture, being about 29 nmol m –2 Pa –1 s –1 . The CO 2 concentration in mixed gas significantly affected both permeance and selectivity, which was up to 5 times more in the presence of H 2 with respect to that with a single gas.

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The permeation properties of DDR zeolite membranes in the separation of mixed gases are strongly affected by the gas species present in the mixture, their concentrations, and the operating conditions used. In this work, we investigated the mass transport properties of a DDR membrane for CO 2 separation in the temperature range 25–75 °C up to 700 kPa. The influence of CO 2 on the permeation of the other mixed gases as well as how the latter affects CO 2 permeation were systematically investigated. The low temperature significantly emphasized the difference between single and mixed gas permeation, reflected in higher CO 2 selectivity. In particular, the highest selectivity values were 28 and 17 when CO 2 was mixed with N 2 and H 2, respectively, whereas the CO 2 permeance exceeded 1.5 times the single gas value (i.e., 18 nmol m –2 Pa –1 s –1 ) for a 40:60 CO 2 /H 2 mixture, being about 29 nmol m –2 Pa –1 s –1 . The CO 2 concentration in mixed gas significantly affected both permeance and selectivity, which was up to 5 times more in the presence of H 2 with respect to that with a single gas.

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Available abstract

The permeation properties of DDR zeolite membranes in the separation of mixed gases are strongly affected by the gas species present in the mixture, their concentrations, and the operating conditions used. In this work, we investigated the mass transport properties of a DDR membrane for CO 2 separation in the temperature range 25–75 °C up to 700 kPa. The influence of CO 2 on the permeation of the other mixed gases as well as how the latter affects CO 2 permeation were systematically investigated. The low temperature significantly emphasized the difference between single and mixed gas permeation, reflected in higher CO 2 selectivity. In particular, the highest selectivity values were 28 and 17 when CO 2 was mixed with N 2 and H 2, respectively, whereas the CO 2 permeance exceeded 1.5 times the single gas value (i.e., 18 nmol m –2 Pa –1 s –1 ) for a 40:60 CO 2 /H 2 mixture, being about 29 nmol m –2 Pa –1 s –1 . The CO 2 concentration in mixed gas significantly affected both permeance and selectivity, which was up to 5 times more in the presence of H 2 with respect to that with a single gas.

Key concepts: Permeance, Permeation, Selectivity, Membrane, Chemistry, Gas separation, Analytical Chemistry (journal), Chromatography

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