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首页> 外文期刊>Journal of the Australasian ceramic society >Characterization of LaFe0.6Co0.4O3 washcoat layer on a monolithic substrate
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Characterization of LaFe0.6Co0.4O3 washcoat layer on a monolithic substrate

机译:表征LaFe0.6Co0.4O3 washcoat层在一个单片衬底

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Development of automotive three-way catalysts (TWC) is a critical research topic owing to the increasingly stringent emission regulations together with the price and scarcity of precious metals. Among different materials classes, perovskite-type oxides are known to be valuable alternatives because of their high catalytic activities and thermal stability. The interest in doped lanthanum ferrite perovskite as a catalyst is the concept of regeneration of catalyst nanoparticles, which makes it be used efficiently in automobile exhaust for longer duration in comparison to the conventional TWCs. B-site cation regeneration prevents particle growth and sulfur poisoning; hence, the consumption of precious metals will be reduced without lowering the catalytic performance. The aim of this study is to optimize the characteristics of a LaFe0.6Co0.4O3 (LFC) washcoat layer on a cordierite (2MgO.2Al(2)O(3).5SiO(2)) monolithic substrate through dip coating of the slurry of amorphous and calcined nano-sized LFC particles. Experiments have been conducted to find the optimum amount of viscosity of the slurry, number of dipping repetitions, and suspension time in order to get the highest specific surface area and adherence to the substrate. Also, differences between a slurry with amorphous and calcined powder, precipitation agent and calcination temperature are investigated. It was found that a slurry with 8% w/w of LFC powder, 2% w/w of PVA, 1% w/w of HNO3, and 7.8% w/w of glycerol in water yields suitable slurry characteristics for the dip-coating purpose. SEM pictures were acquired to find out the morphology of the washcoat layer. By repeating the dip-coating process for two times with the calcined powder, a uniform and porous layer is formed on the monolithic substrate with particle size of around 200 nm after sintering at 900 degrees C.
机译:汽车三方催化剂的发展(TWC)由于是一个重要的研究话题日益严格的排放法规的价格和稀缺宝贵的金属。perovskite-type氧化物被认为是有价值的选择,因为他们的高催化活动和热稳定性。掺杂镧铁氧体钙钛矿催化剂再生催化剂的概念吗纳米粒子,这使得它被有效利用在长期的汽车尾气相比传统的催化剂。阳离子再生粒子生长和阻止硫中毒;没有降低贵金属将减少催化性能。是优化的特征LaFe0.6Co0.4O3(利物浦)washcoat层上堇青石(2 mgo.2al (2) O (3) .5SiO(2)铁板一块通过浸渍涂料浆的衬底非晶和煅烧利物浦纳米级粒子。实验进行查找最佳的泥浆的粘度,号码浸渍的重复,暂停时间为了获得最高的比表面积和坚持衬底。泥浆之间的非晶态和煅烧粉,沉淀剂和煅烧研究了温度。利物浦俱乐部浆8% w / w粉、2% w / w的PVA,1% w / w的硝酸溶液,7.8% w / w的甘油水收益率合适的泥浆的特点浸涂的目的。找出washcoat层的形态。通过重复的浸涂过程两个次煅烧粉,一个统一的和多孔层上形成整体基质粒径约200海里烧结后900摄氏度。

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