首页> 外国专利> The catalytic converter base material which uses the cellulose fiber, the production manner, the support catalytic converter and its production manner where the nano metal catalytic converter supports on the surface of the carbon nano tube and the carbon nano tube which grew directly on the surface of the catalytic converter base material

The catalytic converter base material which uses the cellulose fiber, the production manner, the support catalytic converter and its production manner where the nano metal catalytic converter supports on the surface of the carbon nano tube and the carbon nano tube which grew directly on the surface of the catalytic converter base material

机译:使用纤维素纤维的催化转化器基材,其生产方式,载体催化转化器及其生产方式,其中纳米金属催化转化器支撑在碳纳米管的表面和直接生长在碳纳米管表面的碳纳米管。催化转化器基础材料

摘要

Disclosed are a porous catalyst support for maximizing an increase in catalytic reaction activity and a method of preparing a nano-metal-supported catalyst using the same. The method includes splitting cellulose fibers, thus preparing a catalyst support, growing carbon nanotubes son the prepared catalyst support, and supporting a nano-metal catalyst on the catalyst support having the carbon nanotubes grown thereon. A nano-metal-supported catalyst including the cellulose catalyst support and the use of cellulose fibers as the catalyst support for supporting the nano-metal catalyst are also provided. When porous cellulose fibers having a plurality of micropores are used as material for the catalyst support for supporting a nano-metal catalyst, the preparation cost of the catalyst is reduced and the increase in catalytic reaction activity is maximized even with the use of a small amount thereof in various catalytic reactions. A technique for directly growing carbon nanotubes is applied, thereby controlling the electrical conductivity of the catalyst and increasing the surface area, and further, an expensive nano-metal catalyst component can be easily collected after the reaction, resulting in eco-friendly properties.
机译:公开了用于最大化催化反应活性的增加的多孔催化剂载体以及使用该多孔催化剂载体制备纳米金属负载的催化剂的方法。该方法包括分裂纤维素纤维,从而制备催化剂载体,在制备的催化剂载体上生长碳纳米管,以及在其上生长有碳纳米管的催化剂载体上负载纳米金属催化剂。还提供了包括纤维素催化剂载体的纳米金属负载的催化剂,以及使用纤维素纤维作为负载该纳米金属催化剂的催化剂载体。当具有多个微孔的多孔纤维素纤维用作用于支撑纳米金属催化剂的催化剂载体的材料时,即使使用少量,催化剂的制备成本降低并且催化反应活性的增加最大化。在各种催化反应中。应用直接生长碳纳米管的技术,从而控制催化剂的电导率并增加表面积,此外,反应后可以容易地收集昂贵的纳米金属催化剂组分,从而产生生态友好的性质。

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