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首页> 外文期刊>Journal of Catalysis >Reversibility of structural collapse in zeolite Y:Alkane cracking and characterization
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Reversibility of structural collapse in zeolite Y:Alkane cracking and characterization

机译:Y型分子筛结构塌陷的可逆性:烷烃的裂解与表征

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摘要

The structural collapse and the reconstruction of Bronsted acid sites in zeolite Y were investigated by combining propane monomolecular| cracking with various structural characterization techniques.Destruction of Bronsted acid sites,together with a loss of catalytic activity,was found after calcination and exposure to moisture at room temperature.A loss in long-range structure was observed by XRD.Adsorption of NH_3 before exposure to air prevents the structural collapse of Bronsted acid sites and the loss of catalytic activity.The collapsed Bronsted acid sites and long-range order recover fully after thermal treatment with NH_3 at moderate temperature,as does the catalytic activity.Reheating of HY causes further structural collapse.Water molecules are involved in structural destruction,and also play a role in structural recovery with ammonia.The structure of zeolites is very sensitive to temperature and presence of moisture.Because various characterization methods are preceded by various pretreatment methods,the zeolite structure probed by these methods is not necessarily the same.
机译:通过结合丙烷单分子,研究了Y型沸石的结构塌陷和布朗斯台德酸位的重构。在室温下煅烧和暴露于湿气后,发现布朗斯台德酸位被破坏,同时催化活性下降.XRD观察到长程结构的损失。暴露前NH_3的吸附空气中空气可防止布朗斯台德酸位的结构塌陷和催化活性的损失。在中等温度下用NH_3热处理后,崩溃的布朗斯台德酸位和长程有序恢复,催化活性也完全恢复。HY的再加热导致进一步的结构水分子参与结构破坏,并在氨水的结构恢复中起作用。沸石的结构对温度和水分的存在非常敏感。由于各种表征方法先于各种预处理方法,因此对沸石结构进行了研究。通过这些方法不一定是相同的。

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