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Direct synthesis method of nanostructured catalyst particles on various supports and catalyst structure produced by the same

机译:各种载体上的纳米结构催化剂颗粒的直接合成方法及由其制备的催化剂结构

摘要

Disclosed is a direct synthesis method of nanostructured catalyst particles on surfaces of various supports. In the disclosed synthesis method of a catalyst structure having a plurality of nanostructured catalyst particles dispersed in a support by a one-step process using a high-temperature high-pressure closed reactor, the one-step process includes supplying the support and a catalyst source into the high-temperature high-pressure closed reactor; supplying an atmosphere forming gas of the reactor into the reactor; perfectly sealing the high-temperature high-pressure closed reactor and heating the reactor to produce the catalyst structure in the reactor under self-generated pressure and synthesis temperature conditions, the catalyst structure including the plurality of nanostructured catalyst particles dispersed in the support; removing internal gases of the reactor to allow the reactor to be in a high-temperature, atmospheric pressure state and supplying an inert gas into the reactor to remove unreacted materials and byproducts remaining in the reactor; and cooling the reactor to room temperature while supplying the inert gas to synthesize the catalyst structure.
机译:公开了在各种载体表面上的纳米结构催化剂颗粒的直接合成方法。在所公开的催化剂结构的合成方法中,该催化剂结构具有通过使用高温高压封闭反应器的一步法分散在载体中的多个纳米结构催化剂颗粒,该一步法包括供应载体和催化剂源。进入高温高压密闭反应器中;将反应器的气氛形成气体供应到反应器中;在自生压力和合成温度条件下,完全密封高温高压密闭反应器并加热反应器以在反应器中产生催化剂结构,该催化剂结构包括分散在载体中的多个纳米结构催化剂颗粒;除去反应器的内部气体以使反应器处于高温,大气压状态,并向反应器中供应惰性气体以除去残留在反应器中的未反应的材料和副产物;在供应惰性气体以合成催化剂结构的同时将反应器冷却至室温。

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