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Nucleation and growth of manganese oxides on metallic surfaces as a tool to prepare metallic monoliths

机译:锰氧化物在金属表面的形核和生长,作为制备金属整体料的工具

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The use of austenitic stainless steel(AISI 304)as metallic substrate for catalytic devices is explored in this work as well as an alternative procedure to the washcoating of the active phase.Catalyst deposition on austenitic stainless steel takes advantage of the manganese concentration of this alloy by direct growing of the new catalytic phase on the monolith surface during the synthesis.Manganese oxide(OMS)is chosen as active phase and VOC abatement by total oxidation as catalytic test.It is possible to coat metallic monoliths by growing the catalytic phase,manganese oxide(OMS),in situ during the reflux synthesis of cryptomelane.This preparation strategy needs a proper metal surface modification but is possible to deposit a large amount of catalyst in a very adherent form.The metallic coating shows similar adherences to those found using Fecralloy substrates even thought,in the case of the monolith prepared by repeated washcoating on AISI 304,new phases seem to be produced showing quite higher activity in total oxidation of ethyl acetate.
机译:本工作探索了使用奥氏体不锈钢(AISI 304)作为催化装置的金属基质以及活性相修补涂层的替代方法。在奥氏体不锈钢上沉积催化剂利用了该合金的锰浓度通过在合成过程中直接在整体材料表面上直接生长新的催化相。选择氧化锰(OMS)作为活性相,并通过全氧化减少VOC作为催化测试。可以通过生长催化相来涂覆金属整体材料,锰氧化物(OMS),在隐密胺的回流合成过程中原位。此制备策略需要适当的金属表面改性,但可能以非常粘附的形式沉积大量催化剂。金属涂层显示出与使用Fecralloy发现的相似的粘附甚至认为是基材,在AISI 304上通过反复修补涂层制备的整体材料,似乎会产生新的相在乙酸乙酯的完全氧化中具有较高的活性。

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