School of Materials Science and Engineering, Tianjin Key Laboratory of Metal and Molecule-Based Material Chemistry, National Institute for Advanced Materials, Nankai University, Tianjin, 300350, China.
Tianjin Key Lab for Rare Earth Materials and Applications, Nankai University, Tianjin, 300350, China.
Adv Mater. 2020 Jan;32(3):e1806445. doi: 10.1002/adma.201806445. Epub 2019 May 20.
The separation and purification of light hydrocarbons (LHs) mixtures is one of the most significantly important but energy demanding processes in the petrochemical industry. As an alternative technology to energy intensive traditional separation methods, such as distillation, absorption, extraction, etc., adsorptive separation using selective solid adsorbents could potentially not only lower energy cost but also offer higher efficiency. The need to develop solid materials for the efficiently selective adsorption of LHs molecules, under mild conditions, is therefore of paramount importance and urgency. Metal-organic frameworks (MOFs), emerging as a relatively new class of porous organic-inorganic hybrid materials, have shown promise for addressing this challenging task due to their unparalleled features. Herein, recent advances of using MOFs as separating agents for the separation and purification of LHs, including the purification of CH , and the separations of alkynes/alkenes, alkanes/alkenes, C -C -C normal/isoalkanes, and C alkylaromatics, are summarized. The relationships among the structural and compositional features of the newly synthesized MOF materials and their separation properties and mechanisms are highlighted. Finally, the existing challenges and possible research directions related to the further exploration of porous MOFs in this very active field are also discussed.
轻烃(LH)混合物的分离和纯化是石化工业中最重要但能源需求最大的过程之一。作为一种替代传统能源密集型分离方法(如蒸馏、吸收、萃取等)的技术,使用选择性固体吸附剂的吸附分离不仅有可能降低能源成本,而且还能提供更高的效率。因此,开发用于在温和条件下有效选择性吸附 LH 分子的固体材料是至关重要和紧迫的。金属-有机骨架(MOFs)作为一类新兴的多孔有机-无机杂化材料,由于其无与伦比的特性,在解决这一具有挑战性的任务方面显示出了巨大的潜力。本文总结了 MOFs 作为分离剂在 LH 分离和纯化方面的最新进展,包括 CH 的纯化以及炔烃/烯烃、烷烃/烯烃、C-C-C 正/异烷烃和 C 烷基芳烃的分离。突出了新合成的 MOF 材料的结构和组成特征与其分离性能和机制之间的关系。最后,还讨论了与在这一非常活跃的领域进一步探索多孔 MOFs 相关的现有挑战和可能的研究方向。