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A study of the ageing and deactivation phenomena occurring during operation of an iron molybdate catalyst in formaldehyde production

机译:钼酸铁催化剂在甲醛生产过程中发生的老化和失活现象的研究

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Catalyst from a Perstorp Formox formaldehyde plant,operating with high inlet concentration of methanol(10.2 vol.%),was discharged from single tubes of a multi-tube reactor after half the expected lifetime of the catalyst and again after termination of the load.Each tube was filled with two different layers of catalyst.From the inlet of the reactor the first layer was a catalyst mixed with inert rings,which was followed by a second layer of pure catalyst extending from the middle to the outlet of the reactor.Catalyst fractions from the two layers were characterized with various techniques including BET,Fourier transform Raman(FT-Raman)spectroscopy,X-ray diffraction(XRD),elemental analysis with atomic absorption spectroscopy(AAS)and activity measurements.It was found that the surface area of the catalyst in the mixed layer increases during operation while a small decrease is noticeable for the catalyst below in the pure layer.Elemental analysis,XRD and FT-Raman show that during operation of the catalyst there is migration of Mo species from the upper part of the reactor towards the outlet.Activity measurements reveal severe deactivation of the catalyst in the mixed layer.It is concluded that the deactivation primarily is due to formation of volatile species formed by the MoO_3 surface reacting methanol,causing a decrease of the MoO_3/Fe_2(MoO_4)_3 mole ratio in the catalyst.Concerning the catalyst in the pure layer,the condensation of needle-like crystals of MoO_3 mainly occurs on the external surface of the catalyst ring.
机译:来自Perstorp Formox甲醛工厂的催化剂在高入口甲醇浓度(10.2 vol。%)的条件下运行,在催化剂预期寿命的一半后以及负载终止后再次从多管反应器的单管中排出。试管中装有两层不同的催化剂。从反应器的入口开始,第一层是混合有惰性环的催化剂,第二层是从反应器的中部延伸至出口的纯催化剂。用BET,傅立叶变换拉曼光谱(FT-Raman),X射线衍射(XRD),原子吸收光谱法(AAS)进行元素分析和活性测量等多种技术对这两个层进行了表征。混合层中催化剂的含量在运行过程中增加,而纯层以下的催化剂则有小幅下降。元素分析,XRD和FT-Raman表明,在运行过程中在催化剂的一部分中,Mo物种从反应器的上部向出口迁移。活性测量表明,混合层中的催化剂严重失活。结论是,失活主要是由于形成了挥发性物质所致。 MoO_3表面与甲醇反应,导致催化剂中MoO_3 / Fe_2(MoO_4)_3的摩尔比降低。就纯层中的催化剂而言,MoO_3的针状晶体的凝结主要发生在催化剂环的外表面。

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