Zhang Zhaoqiang, Ding Qi, Cui Jiyu, Cui Xili, Xing Huabin
Key Laboratory of Biomass Chemical Engineering of College of Ministry of Education, Department of Chemical and Biological Engineering, Zhejiang University, Hangzhou, 310027, China.
Small. 2020 Dec;16(49):e2005360. doi: 10.1002/smll.202005360. Epub 2020 Nov 17.
Removing trace amounts of alkynes from alkenes is one of the most critical and challenging steps to produce high-purity alkenes, the fundamental raw materials in petrochemical industry. Selective hydrogenation using noble metal catalysts under harsh conditions can convert trace alkynes to alkenes, but suffers from limited selectivity, over-hydrogenation, and energy-intensive consumption. Herein, the simultaneously adsorptive removal of trace propyne (C H ) and acetylene (C H ) from quaternary C H /C H /C H /C H mixture is reported for the first time using an anion-pillared hybrid ultramicroporous material ZU-16-Co (or TIFSIX-3-Co) by finely tuning the pore dimensions and introducing different binding sites to match the shape of alkynes. ZU-16-Co with contracted aperture size and judiciously extended cell dimension simultaneously exhibits superior trapping capacity for propyne under low concentration (2.45 mmol g at 5000 ppm) and surprisingly high C H uptake (4.18 and 1.4 mmol g at 1.0 and 0.01 bar, respectively) through synergistic host-guest and guest-guest interactions. Importantly, the ability of ZU-16-Co to capture trace alkynes (C H and C H ) in one step is confirmed by breakthrough experiments for quaternary C H /C H /C H /C H mixtures, presenting ZU-16-Co as a promising material for alkyne trapping.
从烯烃中去除痕量炔烃是生产高纯度烯烃(石化工业的基本原料)最关键且最具挑战性的步骤之一。在苛刻条件下使用贵金属催化剂进行选择性加氢可将痕量炔烃转化为烯烃,但存在选择性有限、过度加氢和能源消耗大等问题。在此,首次报道了使用阴离子柱撑杂化超微孔材料ZU - 16 - Co(或TIFSIX - 3 - Co),通过精细调节孔径尺寸并引入不同的结合位点以匹配炔烃的形状,从C₄H₈/C₄H₆/C₃H₆/C₂H₄四元混合物中同时吸附去除痕量丙炔(C₃H₄)和乙炔(C₂H₂)。孔径尺寸收缩且晶胞尺寸合理扩展的ZU - 16 - Co,通过协同的主客体和客体 - 客体相互作用,在低浓度(5000 ppm时为2.45 mmol g⁻¹)下对丙炔同时表现出优异的捕获能力,并且对C₂H₂具有惊人的高吸附量(在1.0和0.01 bar下分别为4.18和1.4 mmol g⁻¹)。重要的是,通过对C₄H₈/C₄H₆/C₃H₆/C₂H₄四元混合物的突破实验,证实了ZU - 16 - Co一步捕获痕量炔烃(C₂H₂和C₃H₄)的能力,表明ZU - 16 - Co是一种有前景的炔烃捕获材料。