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    • 5. 发明申请
    • CATALYTICALLY ACTIVE COATING AND METHOD OF DEPOSITING ON A SUBSTRATE
    • 催化活性涂料和沉积在基材上的方法
    • WO2005120685A3
    • 2007-01-18
    • PCT/US2005015196
    • 2005-05-03
    • SIEMENS POWER GENERATION INCBURNS ANDREW JEREMIAHSUBRAMANIAN RAMESHSRINIVASAN VASUDEVAN
    • BURNS ANDREW JEREMIAHSUBRAMANIAN RAMESHSRINIVASAN VASUDEVAN
    • B01J23/00B01D53/34B01J20/00B01J21/04B01J23/02B01J23/10B01J23/40B01J23/42B01J23/44B01J23/56B01J37/02F23C13/00
    • F23C13/00B01J23/40B01J37/0225B01J37/0244F23C13/08
    • A method of depositing a catalytically reactive coating to a substrate including selecting a target light off temperature for a predetermined catalytic combustion environment, selecting a thermal barrier coating composition, selecting a catalytic material and codepositing the thermal barrier coating composition and the catalytic material onto the substrate in proportions selected to produce the target light off temperature when exposed to the combustion environment. The method may include controlling the codepositing step to cause the thermal barrier coating composition to interact with the catalytic material to produce a phase having a light off temperature different from the respective light off temperatures of the thermal barrier coating composition and the catalytic material. A catalyst element may include a substrate and a first layer comprising a thermal barrier coating composition and a catalytic material throughout its depth disposed over a first portion of the substrate. Other portions of the catalyst element may have a second layer consisting of a catalytic material and a third layer consisting of a thermal barrier coating composition depending on a stage of combustion with a combustion environment
    • 一种将催化反应性涂层沉积到基底上的方法,包括为预定的催化燃烧环境选择目标光离开温度,选择热障涂层组合物,选择催化材料并将热障涂层组合物和催化材料共沉积到衬底上 以暴露于燃烧环境中时产生目标熄灯温度的比例。 该方法可以包括控制共沉积步骤以使热障涂层组合物与催化材料相互作用以产生具有与隔热涂层组合物和催化材料的各自的熄灭温度不同的光照温度的相。 催化剂元件可以包括基材和包含热障涂层组合物和催化材料的第一层,整个其深度设置在基材的第一部分上。 催化剂元件的其它部分可以具有由催化材料组成的第二层和由根据燃烧阶段的燃烧环境的热障涂层组合物组成的第三层