Korean Journal of Materials Research, Vol.28, No.9, 506-510, September, 2018
플렉서블한 금속-유기 골격체(MOFs)를 활용한 메탄/질소 분리
CH4/N2 Separation on Flexible Metal-Organic Frameworks(MOFs)
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Nitrogen is a serious contaminant in natural gas because it decreases the energy density. The natural gas specification in South Korea requires a N2 content of less than 1 mol%. Thus, cost-effective N2 removal technology from natural gas is necessary, but until now the only option has been energy-intensive processes, e.g., cryogenic distillation. Using porous materials for the removal process would be beneficial for an efficient separation of CH4/N2 mixtures, but this still remains one of the challenges in modern separation technology due to the very similar size of the components. Among various porous materials, metal-organic frameworks (MOFs) present a promising candidate for the potential CH4/N2 separation material due to their unique structural flexibility. A MIL-53(Al), the most well-known flexible metal-organic framework, creates dynamic changes with closed pore (cp) transitions to open pores (ops), also called the ‘breathing’ phenomenon. We demonstrate the separation performance of CH4/N2 mixtures of MIL-53(Al) and its derivative MIL-53-NH2. The CH4/N2 selectivity of MIL- 53-NH2 is higher than pristine MIL-53(Al), suggesting a stronger CH4 interaction with NH2.
- Kim TH, Jeong JC, Park JM, Woo CH, Membr. J., 20, 267 (2010)
- Zong ZW, Elsaidi SK, Thallapally PK, Carreon MA, Ind. Eng. Chem. Res., 56(14), 4113 (2017)
- Hong DH, Suh MP, Chem. Commun., 48, 9168 (2012)
- Zhang GB, Fan SS, Lang XM, Wang YH, Adv. Mater. Res., 403-408, 585 (2012)
- Ren X, Sun T, Hu J, Wang S, Microporous Mesoporous Mater., 186, 137 (2014)
- Mishra P, Uppara HP, Mandal B, Gumma S, Ind. Eng. Chem. Res., 53(51), 19747 (2014)
- Hu J, Sun T, Liu X, Guo Y, Wang S, RSC Adv., 6, 64039 (2016)