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A 3D ultramicroporous porous organic frameworks for SO2 and aromatic sulfides capture with high capacity and selectivity

  • Shuhui Chen
  • , Yue Wu
  • , Wenxiang Zhang
  • , Shanshan Wang
  • , Tong Yan
  • , Songjie He
  • , Bolun Yang
  • , Heping Ma

科研成果: 期刊稿件文章同行评审

36 引用 (Scopus)

摘要

The governance of sulfur dioxide emissions in the atmosphere is a global challenge. Herein, a three-dimensional ultramicroporous porous organic framework named TAM-POF with high surface areas, abundant accessible N sites and suitable pore size was synthesized for elimination of SO2 in flue gases and aromatic sulfides in liquid fuels. The adsorption and separation performance of TAM-POF is investigated by equilibrium gas adsorption, instant adsorption rates and column breakthrough experiments. A record-high SO2 dynamic adsorption capacity of 2.92 mmol g−1 in ternary gas mixture (0.5/10/89.5, v/v/v, SO2/CO2/N2) and SO2/CO2 (1 2 4) and 3-methylthiophene/n-octane (42) selectivities were achieved in TAM-POF. The strong interaction between adsorbents and TAM-POF, as well as appropriate pore apertures are the main reason for their excellent desulfurization performance, which are also evidenced by theory simulation.

源语言英语
文章编号132480
期刊Chemical Engineering Journal
429
DOI
出版状态已出版 - 1 2月 2022

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