화학공학소재연구정보센터
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)
E-mail:
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.
  1. Kim TH, Jeong JC, Park JM, Woo CH, Membr. J., 20, 267 (2010)
  2. Zong ZW, Elsaidi SK, Thallapally PK, Carreon MA, Ind. Eng. Chem. Res., 56(14), 4113 (2017)
  3. Hong DH, Suh MP, Chem. Commun., 48, 9168 (2012)
  4. Zhang GB, Fan SS, Lang XM, Wang YH, Adv. Mater. Res., 403-408, 585 (2012)
  5. Ren X, Sun T, Hu J, Wang S, Microporous Mesoporous Mater., 186, 137 (2014)
  6. Mishra P, Uppara HP, Mandal B, Gumma S, Ind. Eng. Chem. Res., 53(51), 19747 (2014)
  7. Hu J, Sun T, Liu X, Guo Y, Wang S, RSC Adv., 6, 64039 (2016)