Purification of gas mixtures based on the removal of small impurities from a counterflow membrane module: engineering calculation method

Alexandr Yu. Okunev

Refrigeration Technology ›› 2021, Vol. 110 ›› Issue (3) : 129 -136.

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Refrigeration Technology ›› 2021, Vol. 110 ›› Issue (3) : 129 -136. DOI: 10.17816/RF106899
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Purification of gas mixtures based on the removal of small impurities from a counterflow membrane module: engineering calculation method

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Abstract

One of the tasks of the membrane gas separation process is the extraction of low-content highly penetrating impurities from gas mixtures.

The gas separation process is efficiently organized using hollow fiber-type membrane modules.

In this study, an attempt was made to develop an engineering method for calculating the purification of gas mixtures based on the removal of small impurities from a countercurrent membrane module, which would enable the calculations related to the separation mode using analytical dependencies, without the use of numerical integration procedures and iterations.

A mathematical model representing the gas separation process from binary mixtures having low content of a highly penetrating component was analyzed to address the challenges related to cleaning, purifying, and drying gas mixtures. Parametric studies related to the process were carried out and an engineering calculation method that enabled calculating separation in the module without using complex, resource-intensive algorithms having analytical formulas was developed herein. During the parametric study, the separation of a binary gas mixture was considered a limiting case. The proposed method was tested with respect to the example of air drying in a module comprising a (polyvinyltrimethylsilane) PVTMS membrane, which was an approximation of a binary mixture. The numerical and analytical results of the calculation are consistent with each other, and the calculation herein based on the developed method requires several orders of magnitude fewer calculations, that can even be performed manually.

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gas separation process model / engineering method of calculation / purification of gas mixtures / air drying

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Alexandr Yu. Okunev. Purification of gas mixtures based on the removal of small impurities from a counterflow membrane module: engineering calculation method. Refrigeration Technology, 2021, 110(3): 129-136 DOI:10.17816/RF106899

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References

[1]

Hmel'nik MG, Vadzhinskij DN, Zhihareva NV. Sovremennye tehnologii osushenija vozduha. Holodil'na tehnіka ta tehnologіja. 2014(149):15–21. (In Russ.).

[2]

Хмельник М.Г., Ваджинский Д.Н., Жихарева Н.В. Современные технологии осушения воздуха // Холодильна техніка та технологія. 2014. № 3(149). С. 15–21.

[3]

Solov'ev SA, Poljakov AM. Perspektivy primenenija processov membrannogo gazorazdelenija dlja podgotovki i pererabotki prirodnogo i poputnogo gazov. Chast' 2. Membrany. 2006;32:3–18. (In Russ.).

[4]

Соловьев С.А., Поляков А.М. Перспективы применения процессов мембранного газоразделения для подготовки и переработки природного и попутного газов. Ч. 2 // Мембраны. 2006. № 4(32). С. 3–18.

[5]

Mulder M. Vvedenie v membrannuju tehnologiju. Moscow: Mir; 1999. (In Russ.).

[6]

Мулдер М. Введение в мембранную технологию: переулок с англ. М.: Мир, 1999.

[7]

Hvang S-T, Kammermejer K. Membrannye processy razdelenija. Moscow: Himija; 1981. (In Russ.).

[8]

Хванг С.-Т., Каммермейер К. Мембранные процессы разделения: переулок с англ. М.: Химия, 1981.

[9]

Faizan A, Lau KK, Shariff AM. Ghulam Murshid. Process simulation and optimal design of membrane separation system for CO2 capture from natural gas. Computers and Chemical Engineering. 2012;36:119–128.

[10]

Faizan A., Lau K.K., Shariff A.M. Ghulam Murshid. Process simulation and optimal design of membrane separation system for CO2 capture from natural gas // Computers and Chemical Engineering. 2012. N 36. P. 119–128.

[11]

Amosova OL, Malyh OV, Tepljakov VV. Membranno-adsorbcionnye metody vydelenija vodoroda iz mnogokomponentnyh gazovyh smesej biotehnologii i neftehimii. Membrany. 2008;38:26–39. (In Russ.).

[12]

Амосова О.Л., Малых О.В., Тепляков В.В. Мембранно-адсорбционные методы выделения водорода из многокомпонентных газовых смесей биотехнологии и нефтехимии // Мембраны. 2008. № 2(38). С. 26–39.

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