如何精准地测定汽车尾气催化剂的贵金属含量(铂、钯、铑),对于控制贵金属的成本、回收贵金属及控制催化剂的性能具有重要意义。试验采用电感耦合等离子体原子发射光谱法来测定尾气用净化金属载体催化剂中的铂(Pt)、钯(Pd)和铑(Rh)含量...如何精准地测定汽车尾气催化剂的贵金属含量(铂、钯、铑),对于控制贵金属的成本、回收贵金属及控制催化剂的性能具有重要意义。试验采用电感耦合等离子体原子发射光谱法来测定尾气用净化金属载体催化剂中的铂(Pt)、钯(Pd)和铑(Rh)含量。具有而言,含有尾气净化用金属载体催化剂的试样采用盐酸进行预处理,然后加入聚环氧乙烷溶液降低胶粒对过滤的影响,过滤产物在马弗炉(300℃)内进行炭化处理,并加入20 g Na_(2)O_(2),经过沉淀凝聚实现富集分离。最后,采用电感耦合等离子体原子发射光谱仪对分离的铂、钯、铑的含量进行测定。在样品测定过程中,Pt、Pd和Rh的加标回收率分布范围表现良好,分别为97.1%~109.0%、91.0%~101.8%和93.2%~102.2%。该方法具有快速定量分析、检出限较低、精密度良好、动态范围宽的特点,为贵金属检测行业的标准制定奠定了数据理论支撑。展开更多
Nano-particle Pd/?-Al2O3 monometallic and Pd-Cu/?-Al2O3 bimetall ic catalysts were prepared by solvated metal atom impregnation (SMAI) method. Th e results of XRD measurement indicated that Pd- Cu alloy was formed in ...Nano-particle Pd/?-Al2O3 monometallic and Pd-Cu/?-Al2O3 bimetall ic catalysts were prepared by solvated metal atom impregnation (SMAI) method. Th e results of XRD measurement indicated that Pd- Cu alloy was formed in the bim etallic catalysts and the crystalline particle size of the alloy increased as Cu contents increased with average diameters < 6.0nm for all the samples. XPS and Auger spectra showed that Pd was in zero- valent state, Cu existed mainly in z ero- valent state and partially in monovalent state Cu+. The Pd/?-Al2O3 and Pd-Cu/?-Al2O3 catalysts exhibited higher activity for CO oxidation at low temperature. The activity of Pd-Cu/?-Al2O3 bimetallic catalyst was hig her than that of Pd/?-Al2O3 monometallic catalyst. The Pd-Cu/?-Al2O3 c atalyst with Pd/Cu atomic ratio of 1∶1 showed the highest activity.展开更多
文摘如何精准地测定汽车尾气催化剂的贵金属含量(铂、钯、铑),对于控制贵金属的成本、回收贵金属及控制催化剂的性能具有重要意义。试验采用电感耦合等离子体原子发射光谱法来测定尾气用净化金属载体催化剂中的铂(Pt)、钯(Pd)和铑(Rh)含量。具有而言,含有尾气净化用金属载体催化剂的试样采用盐酸进行预处理,然后加入聚环氧乙烷溶液降低胶粒对过滤的影响,过滤产物在马弗炉(300℃)内进行炭化处理,并加入20 g Na_(2)O_(2),经过沉淀凝聚实现富集分离。最后,采用电感耦合等离子体原子发射光谱仪对分离的铂、钯、铑的含量进行测定。在样品测定过程中,Pt、Pd和Rh的加标回收率分布范围表现良好,分别为97.1%~109.0%、91.0%~101.8%和93.2%~102.2%。该方法具有快速定量分析、检出限较低、精密度良好、动态范围宽的特点,为贵金属检测行业的标准制定奠定了数据理论支撑。
文摘Nano-particle Pd/?-Al2O3 monometallic and Pd-Cu/?-Al2O3 bimetall ic catalysts were prepared by solvated metal atom impregnation (SMAI) method. Th e results of XRD measurement indicated that Pd- Cu alloy was formed in the bim etallic catalysts and the crystalline particle size of the alloy increased as Cu contents increased with average diameters < 6.0nm for all the samples. XPS and Auger spectra showed that Pd was in zero- valent state, Cu existed mainly in z ero- valent state and partially in monovalent state Cu+. The Pd/?-Al2O3 and Pd-Cu/?-Al2O3 catalysts exhibited higher activity for CO oxidation at low temperature. The activity of Pd-Cu/?-Al2O3 bimetallic catalyst was hig her than that of Pd/?-Al2O3 monometallic catalyst. The Pd-Cu/?-Al2O3 c atalyst with Pd/Cu atomic ratio of 1∶1 showed the highest activity.