...
首页> 外文期刊>Catalysis science & technology >Bridging the gap between tight and loose contacts for soot oxidation by vanadium doping of cryptomelane nanorods catalyst using NO2 as an oxygen carrier
【24h】

Bridging the gap between tight and loose contacts for soot oxidation by vanadium doping of cryptomelane nanorods catalyst using NO2 as an oxygen carrier

机译:之间的鸿沟方面紧密和松散联系对烟尘氧化钒掺杂的锰钾矿使用NO2作为纳米催化剂氧载体

获取原文
获取原文并翻译 | 示例
           

摘要

The effect of the vanadium doping of cryptomelane KxMn8O16 nanorods (200 x 10 nm) on bridging the tight-loose contact temperature gap in NO-assisted catalytic soot oxidation was investigated. Catalysts with 0-20% vanadium content were synthesized and characterized in terms of chemical composition, structure, and morphology by means of XRF, XRD, XPS, RS, and TEM/EDX/SAED. Based on three catalyst surface-soot particles contact modes of catalytic measurements (tight contact, loose contact, and contactless), it was found that the incorporation of vanadium into the cryptomelane framework substantially increases the deSoot activity by promoting beneficial NO oxidation into NO2, with the strongest effect observed for 2.5% vanadium doping. The mechanistic role of NO in the kinetic coupling between ignition, catalytic combustion, and thermal afterburning is revealed, and the role of NO2 acting as an oxygen carrier from the catalyst to soot particles allows for the rationalization of the observed catalyst performance (lowering the temperature of 50% conversion in loose contacts by approximate to 100 degrees C). The results are discussed in terms of the catalyst-soot interface model, where a gradual loss of contact points during the combustion process (passing from tight to loose contacts) is substantially compensated by the in situ generation of NO2 controlled by the vanadium doping of the cryptomelane nanorods.
机译:钒掺杂的锰钾矿的影响KxMn8O16纳米棒在桥接(200 x 10海里)tight-loose接触温度差距NO-assisted催化氧化烟尘调查。内容被合成和表征的化学成分、结构和形态通过光谱仪、XRD、XPS、RS,TEM / EDX / SAED。surface-soot颗粒接触催化模式测量(紧密接触,接触不良非接触式),发现加入的钒锰钾矿的框架大大增加了deSoot活动促进有益没有氧化为NO2,最强的效果观察钒2.5%兴奋剂。催化燃烧点火之间的耦合,热二次燃烧透露,二氧化氮作为氧载体的作用允许的烟尘催化剂颗粒合理化的催化剂性能(降低50%的温度转换松散联系的近似100摄氏度),讨论的结果catalyst-soot界面模型的条件,接触点在逐渐丧失燃烧过程(从紧松了联系人)大大补偿了原位生成二氧化氮钒控制的纳米掺杂锰钾矿的作用。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号