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首页> 外文期刊>RSC Advances >Performance and coke species of HZSM-5 in the isomerization of styrene oxide to phenylacetaldehyde
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Performance and coke species of HZSM-5 in the isomerization of styrene oxide to phenylacetaldehyde

机译:HZSM-5在环氧乙烷异构化为苯乙醛中的性能和焦炭种类

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The performance and coke species of HZSM-5 in the isomerization of styrene oxide to phenylacetaldehyde was investigated under gas phase, free of solvents. The reaction showed higher catalytic stability and phenylacetaldehyde selectivity at around 300 °C, lower feed rate (e.g., WHSV = 1.2–3 h?1) and higher flow rate of carrier gas (e.g., 120 mL min?1). Based on FT-IR spectra, the dimer formed via aldol condensation of phenylacetaldehyde was one of the precursors of coke species. TG results showed that there were two types of coke species. The soft coke, which can be removed via desorption between 200–400 °C, had less influence on the catalytic stability. The hard coke, which had a certain degree of crystallization (i.e., pregraphite-like carbon presenting in XRD patterns) and must be completely removed via burning with oxygen, causes major catalyst deactivation.
机译:在没有溶剂的情况下,研究了HZSM-5在氧化苯乙烯异构化为苯乙醛中的性能和焦炭种类。反应在300°C左右具有较高的催化稳定性和苯乙醛选择性,较低的进料速率(例如,WHSV = 1.2–3 h ?1 )和更高的载气流速(例如,120 mL min ?1 )。基于FT-IR光谱,苯乙醛的通过醛醇缩合形成的二聚体是焦炭物种的前体之一。 TG结果表明,有两种类型的焦炭。软焦炭可以在200–400°C之间通过解吸 去除,对催化稳定性的影响较小。具有一定结晶度的硬焦炭(X射线衍射图中存在的类似石墨的碳),必须通过与氧气燃烧完全除去。停用。

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