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通过具有最佳氧位点分布的长度匹配金属有机框架从二甲苯中高效分离中间尺寸的间二甲苯。

Highly Efficient Separation of Intermediate-Size m-Xylene from Xylenes via a Length-Matched Metal-Organic Framework with Optimal Oxygen Sites Distribution.

作者信息

Wang Qingju, Li Yijian, Qiu Zhensong, Zhou Dengzhuo, Yang Lifeng, Suo Xian, Cui Xili, Xing Huabin

机构信息

Engineering Research Center of Functional Materials Intelligent Manufacturing of Zhejiang Province, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, 310058, China.

ZJU-Hangzhou Global Scientific and Technological Innovation Center, Hangzhou, 311200, China.

出版信息

Angew Chem Int Ed Engl. 2024 Nov 11;63(46):e202408817. doi: 10.1002/anie.202408817. Epub 2024 Oct 8.

DOI:10.1002/anie.202408817
PMID:39113149
Abstract

Xylene separation is crucial but challenging, especially for the preferential separation of the intermediate-size m-xylene from xylene mixtures. Herein, exploiting the differences in molecular length and alkyl distribution among xylenes, we present a length-matched metal-organic framework, formulated as Al(OH)[OC-CHO-CO], featuring an effective pore size corresponding to m-xylene molecular length combined with multiple negative O hydrogen bond donors distribution, can serve as a molecular trap for efficient preferential separation of the intermediate-size m-xylene. Benchmark separation performance was achieved for separating m-xylene from a ternary mixture of m-xylene/o-xylene/p-xylene, with simultaneous record-high m-xylene uptake (1.3 mmol g) and m-xylene/p-xylene selectivity (5.3) in the liquid-phase competitive adsorption. Both vapor- and liquid-phase fixed-bed tests confirmed its practical separation capability with benchmark dynamic m-xylene/p-xylene and m-xylene/o-xylene selectivities, as well as excellent regenerability. The selective and strong m-xylene binding affinity among xylene molecules was further elucidated by simulations, validating the effectiveness of such a pore environment for the separation of intermediate-size molecules.

摘要

二甲苯的分离至关重要但具有挑战性,尤其是从二甲苯混合物中优先分离中等尺寸的间二甲苯。在此,利用二甲苯分子长度和烷基分布的差异,我们提出了一种长度匹配的金属有机框架,化学式为Al(OH)[OC-CHO-CO],其有效孔径与间二甲苯分子长度相对应,同时具有多个负O氢键供体分布,可作为分子陷阱用于高效优先分离中等尺寸的间二甲苯。在从间二甲苯/邻二甲苯/对二甲苯的三元混合物中分离间二甲苯时,实现了基准分离性能,在液相竞争吸附中同时创下了间二甲苯吸附量(1.3 mmol g)和间二甲苯/对二甲苯选择性(5.3)的记录。气相和液相固定床测试均证实了其具有基准动态间二甲苯/对二甲苯和间二甲苯/邻二甲苯选择性的实际分离能力,以及出色的可再生性。通过模拟进一步阐明了二甲苯分子之间选择性且强的间二甲苯结合亲和力,验证了这种孔环境对分离中等尺寸分子的有效性。

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