首页> 外文期刊>Catalysis Today >VOCs combustion catalysts based on composites of exfoliated organo-Laponite and multimetallic (Mn, Al, Zr, Ce) hydrotalcites prepared by inverse microemulsion
【24h】

VOCs combustion catalysts based on composites of exfoliated organo-Laponite and multimetallic (Mn, Al, Zr, Ce) hydrotalcites prepared by inverse microemulsion

机译:基于反相微乳液制备的基于剥落有机洛博石和多金属(Mn,Al,Zr,Ce)水滑石的基于复合材料的VOCS燃烧催化剂

获取原文
获取原文并翻译 | 示例
           

摘要

Composites of exfoliated organo-Laponite and multimetallic (Mn, Al, Zr, Ce) hydrotalcite-like nanoparticles obtained by inverse microemulsion method were used as precursors of catalysts for total oxidation of toluene. The materials were characterized with XRF, XPS, XRD, HRSEM, TEM/HRTEM, H-2 TPR, and N-2 adsorption/desorption at -196 degrees C. Features of nanocrystalline hydrotalcite-like phase could be identified in all active phase precursors obtained by inverse micellar route, of poorer order in samples doped with Ce and/or Zr. Mn-Al active phase in calcined (600 degrees C) composites formed uniform particles of ca. 30-40 nm diameter, while upon addition of Zr and/or Ce the active phase disintegrated forming very fine oxide particles, rarely exceeding 10 nm. All composites were very active in the total oxidation of toluene, those promoted with Zr and/or Ce showing performance superior to the undoped counterpart. Beneficial role of Zr and Ce promoters was attributed to the improved dispersion and amorphization of the mixed oxide phase, accompanied by its enhanced reducibility and increase of the catalysts specific surface area and pore volume. Addition of Ce resulted in an increase of the surface contribution of Mn4+ ions, advantageous for combustion activity. Best catalytic performance was obtained for the composite of Laponite with Mn-Al active phase promoted with both Zr and Ce, which showed excellent activity and stability. Catalysts obtained by the novel design performed much better than the references prepared from conventionally synthesized hydrotalcites and sodium or cetyltrimethylammonium form of Laponite.
机译:通过反逆微乳液法得到的剥蚀有机氯代岩和多金属(Mn,Al,Zr,Ce)水滑石状纳米颗粒的复合材料用作甲苯总氧化催化剂的前体。用XRF,XPS,XRD,HRSEM,TEM / HRTEM,H-2 TPR和-196℃的N-2吸附/解吸表征。在所有活性相前体中可以鉴定纳米晶体状水溶性相的特征通过逆胶束途径获得,在掺杂有CE和/或Zr的样品中的较差顺序。 Mn-Al活性相中煅烧(600℃)复合材料形成了Ca的均匀颗粒。直径30-40mm,加入Zr和/或Ce崩解的活性相,形成非常细的氧化物颗粒,很少超过10nm。所有复合材料在甲苯的总氧化中非常活跃,用Zr和/或Ce促进的那些表现出优于未掺杂的对应物的性能。 Zr和Ce启动子的有益作用归因于混合氧化物相的改善的分散体和非晶化,伴随其增强的还原性和催化剂比表面积和孔体积的增加。加入Ce导致Mn4 +离子的表面贡献增加,对燃烧活性有利的。获得最佳催化性能,用于丙酮的复合材料,其中Mn-Al活性相促进,Zr和Ce促进,表明优异的活性和稳定性。通过新型设计获得的催化剂比通过常规合成的水滑石和钠或甲基三甲基铵形式的Laponite所制备的参考值得多。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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