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A Six-Membered Ring Molecular Sieve Achieved by a Reconstruction Route.

Jiaqi ShiJunyi HuQinming WuWei ChenZhuoya DongAn Min ZhengYanhang MaXiangju MengFeng-Shou Xiao
Published in: Journal of the American Chemical Society (2023)
Zeolite molecular sieves with at least eight-membered rings are widely applied in industrial applications, while zeolite crystals with six-membered rings are normally regarded as useless products due to the occupancy of the organic templates and/or inorganic cation in the micropores that could not be removed. Herein, we showed that a novel six-membered ring molecular sieve (ZJM-9) with fully open micropores could be achieved by a reconstruction route. The mixed gas breakthrough experiments such as CH 3 OH/H 2 O, CH 4 /H 2 O, CO 2 /H 2 O, and CO/H 2 O at 25 °C showed that this molecular sieve was efficient for selective dehydration. Particularly, a lower desorption temperature (95 °C) of ZJM-9 than that (250 °C) of the commercial 3A molecular sieve might offer an opportunity for saving more energy in dehydration processes.
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