4.8 Article

Maximizing sinusoidal channels of HZSM-5 for high shape-selectivity to p-xylene

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-12285-4

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资金

  1. National Institute of Clean-and-low-carbon Energy [NICE-CAT-2017-29]
  2. National Key R&D Program of China [2017YFB0602200]
  3. Natural Science Foundation of China [21725301, 91645115, 21932002, 21821004]
  4. National Key Scientific Instrument and Equipment Development Project [21527803]
  5. National Natural Science Foundation of China [2187100]

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The shape-selective catalysis enabled by zeolite micropore's molecular-sized sieving is an efficient way to reduce the cost of chemical separation in the chemical industry. Although well studied since its discovery, HZSM-5's shape-selective capability has never been fully exploited due to the co-existence of its different-sized straight channels and sinusoidal channels, which makes the shape-selective p-xylene production from toluene alkylation with the least m-xylene and o-xylene continue to be one of the few industrial challenges in the chemical industry. Rather than modifications which promote zeolite shape-selectivity at the cost of stability and reactivity loss, here inverse Al zoned HZSM-5 with sinusoidal channels predominantly opened to their external surfaces is constructed to maximize the shape-selectivity of HZSM-5 sinusoidal channels and reach > 99 % p-xylene selectivity, while keeping a very high activity and good stability (> 220 h) in toluene methylation reactions. The strategy shows good prospects for shape-selective control of molecules with tiny differences in size.

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