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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effects of acid strength and micro proe size on #epsilon#-caprolactam selectivity and catalyst deactivation in vapor phase Beckmann rearrangement over acid solid catalysts
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Effects of acid strength and micro proe size on #epsilon#-caprolactam selectivity and catalyst deactivation in vapor phase Beckmann rearrangement over acid solid catalysts

机译:酸强度和微观尺寸对酸性固体催化剂上气相贝克曼重排中ε-己内酰胺选择性和催化剂失活的影响

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摘要

The vapor phase Beckmann rearrangement of cyclohexanone oxime (CHO) over solid acid catalysts including zeolites was carried out to elucidate the effects of the acid strength and the micropore size of the catalysts on the selectivity of E-caprolactam (CL) and the catalyst deactivation rate. It was found that the catalyst deactivation rate was strongly dependent on the acid strength of the acid catalysts. The improvement of catalyst life was achieved by using MFI-type metallosilicates having weak acid sites. The CL selectivity decreased over the acid catalysts with micropores larger than those of the MFI zeolites. Furthermore, using methanol and carbon dioxide as the diluent solvent and diluent gas improved CL selectivity and catalyst life, respectively.
机译:进行了包括沸石在内的固体酸催化剂上环己酮肟(CHO)的气相贝克曼重排,以阐明酸强度和催化剂的微孔尺寸对E-己内酰胺(CL)选择性和催化剂失活速率的影响。发现催化剂的失活速率强烈地依赖于酸催化剂的酸强度。通过使用具有弱酸位的MFI型金属硅酸盐来实现催化剂寿命的改善。在具有大于MFI沸石的微孔的微孔的酸催化剂上,CL的选择性降低。此外,使用甲醇和二氧化碳作为稀释溶剂和稀释气体分别改善了CL选择性和催化剂寿命。

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