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Ultrasound-Assisted Deposition of Co–CeO2 onto Ceramic Microfibers to Conform Catalytic Papers: Their Application in Engine Exhaust Treatment

机译:超声辅助在陶瓷微纤维上沉积Co-CeO2以形成催化纸:它们在发动机废气处理中的应用

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The combination of the selective catalytic reduction technology with catalytic filters constitutes one of the most efficient ways for diesel engine exhaust treatment. In this paper, the development of catalytic ceramic papers as structured systems for the abatement of diesel soot particles is addressed. Ceramic papers were prepared by the dual-polyelectrolyte papermaking method, which is based on the conventional papermaking technique used for cellulosic papers, in which a portion of cellulosic fibers is replaced by ceramic ones. The deposition of Co and Ce as catalytic materials by the wet spray method on ceramic papers was studied for the development of structured catalysts using an ultrasonic nebulizer and different solvents. The use of alcohol–water solutions for the impregnation of cobalt generated smaller particles and a high dispersion of them on the ceramic fibers, greater than that obtained when pure water was employed. Temperature programmed oxidation (TPO) assays showed that the best catalytic performance was acquired with the catalysts generated with alcohol solvents, showing a maximum rate for soot combustion at a temperature close to 400 °C. The adequate soot combustion performance and the high thermal and catalytic stability make catalytic ceramic papers impregnated by the wet spray method, promising systems for their application as diesel particulate filters.
机译:选择性催化还原技术与催化过滤器的结合构成了柴油发动机废气处理的最有效方法之一。在本文中,解决了催化陶瓷纸作为减少柴油机烟尘颗粒的结构化系统的发展。通过双聚电解质造纸法制备陶瓷纸,该方法基于用于纤维素纸的常规造纸技术,其中一部分纤维素纤维被陶瓷纤维代替。研究了通过湿喷法在陶瓷纸上沉积Co和Ce作为催化材料,以开发使用超声雾化器和不同溶剂的结构化催化剂。使用酒精水溶液浸渍钴会产生较小的颗粒,并且颗粒在陶瓷纤维上的分散度很高,这比使用纯水时要大。程序升温氧化(TPO)分析表明,用醇类溶剂生成的催化剂可获得最佳的催化性能,在接近400°C的温度下显示出最大的烟ot燃烧速率。足够的烟ot燃烧性能以及高的热稳定性和催化稳定性使湿法浸渍的催化陶瓷纸成为一种有望用作柴油机微粒过滤器的系统。

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