Sub-micrometer ultra fine CeO2-ZrO2 mixed oxides have been prepared by milling solid cerium carbonate and zirconium oxy-chloride with ammonia and followed by filtering, drying and calcining procedures. The effects of ...Sub-micrometer ultra fine CeO2-ZrO2 mixed oxides have been prepared by milling solid cerium carbonate and zirconium oxy-chloride with ammonia and followed by filtering, drying and calcining procedures. The effects of Ce/Zr molar ratio, milling time and calcining temperature on the phase composition, particle size and morphology, surface charge, as well as the polishing property were investigated. The results show that the mixed oxide calcined at 1 000 ℃ is composed of cubic ceria doped with zirconium and tetragonal zirconia doped with cerium, and the phase composition varies with calcination temperature and the Ce/Zr molar ratio. The monoclinic zirconia is observed when decreasing calcination temperature and shortening milling time, demonstrating that milling and calcining can force the phase transformation from monoclinic zirconia to cerium stabilized tetragonal zirconia and zirconium doped cubic ceria solid solutions. The removal rate for the optical glass polishing varies with Ce/Zr molar ratio. A synergetic polishing effect is found when Ce/Zr molar ratio below 4, and the optimal Ce/Zr molar ratio is 1∶1. At the same time, the cubic ceria content, density, particle size and surface charge all increase when calcination temperature increasing from 800 ℃ to 1 100 ℃. However, the particle morphology changes from disperse quasi-sphere to irregular aggregation and the maximal removal rate for optical glass polishing lies at 1 000 ℃.These facts show that the polishing property of the synthesized ceria-zirconia mixed oxide is affected by the particle physical characteristics comprehensively.展开更多
用柠檬酸络合法制备了多个系列的类钙钛石(A2BO4)结构的复合氧化物催化剂,系统地研究探讨了该类催化剂的晶体与光谱结构、缺陷结构、对NO和CO等小分子的吸附性能、对氧的吸脱性能及氧化还原性能和稳定性,同时考察了上述多个系列催化剂...用柠檬酸络合法制备了多个系列的类钙钛石(A2BO4)结构的复合氧化物催化剂,系统地研究探讨了该类催化剂的晶体与光谱结构、缺陷结构、对NO和CO等小分子的吸附性能、对氧的吸脱性能及氧化还原性能和稳定性,同时考察了上述多个系列催化剂对NO直接分解和CO还原NO反应的催化性能。发现Ni系A2BO4复合氧化物是NO直接分解的高活性催化体系,特别是LaSrNiO4-λ催化剂具有很高NO的分解活性,其活性高于文献报道Y Ba CuO/MgO的和Co系ABO3催化剂。同时发现LaSrCuO4-λ具有较高的CO还原NO催化性能。提出了在类钙钛石复合氧化物催化剂上NO分解和还原反应统一的氧化还原反应机制,并比较了两个反应的异同点,确认了氧空位在上述反应中的作用。并较深入的探讨了取代效应、过渡元素、稀土元素和结构效应对NO分解和CO还原NO反应的影响机制。本文分析总结了作者在类钙钛石(K2NiF4)结构复合氧化物的固态物化性质及对NOx消除反应的催化性能方面的基础性研究结果。展开更多
文摘Sub-micrometer ultra fine CeO2-ZrO2 mixed oxides have been prepared by milling solid cerium carbonate and zirconium oxy-chloride with ammonia and followed by filtering, drying and calcining procedures. The effects of Ce/Zr molar ratio, milling time and calcining temperature on the phase composition, particle size and morphology, surface charge, as well as the polishing property were investigated. The results show that the mixed oxide calcined at 1 000 ℃ is composed of cubic ceria doped with zirconium and tetragonal zirconia doped with cerium, and the phase composition varies with calcination temperature and the Ce/Zr molar ratio. The monoclinic zirconia is observed when decreasing calcination temperature and shortening milling time, demonstrating that milling and calcining can force the phase transformation from monoclinic zirconia to cerium stabilized tetragonal zirconia and zirconium doped cubic ceria solid solutions. The removal rate for the optical glass polishing varies with Ce/Zr molar ratio. A synergetic polishing effect is found when Ce/Zr molar ratio below 4, and the optimal Ce/Zr molar ratio is 1∶1. At the same time, the cubic ceria content, density, particle size and surface charge all increase when calcination temperature increasing from 800 ℃ to 1 100 ℃. However, the particle morphology changes from disperse quasi-sphere to irregular aggregation and the maximal removal rate for optical glass polishing lies at 1 000 ℃.These facts show that the polishing property of the synthesized ceria-zirconia mixed oxide is affected by the particle physical characteristics comprehensively.
文摘用柠檬酸络合法制备了多个系列的类钙钛石(A2BO4)结构的复合氧化物催化剂,系统地研究探讨了该类催化剂的晶体与光谱结构、缺陷结构、对NO和CO等小分子的吸附性能、对氧的吸脱性能及氧化还原性能和稳定性,同时考察了上述多个系列催化剂对NO直接分解和CO还原NO反应的催化性能。发现Ni系A2BO4复合氧化物是NO直接分解的高活性催化体系,特别是LaSrNiO4-λ催化剂具有很高NO的分解活性,其活性高于文献报道Y Ba CuO/MgO的和Co系ABO3催化剂。同时发现LaSrCuO4-λ具有较高的CO还原NO催化性能。提出了在类钙钛石复合氧化物催化剂上NO分解和还原反应统一的氧化还原反应机制,并比较了两个反应的异同点,确认了氧空位在上述反应中的作用。并较深入的探讨了取代效应、过渡元素、稀土元素和结构效应对NO分解和CO还原NO反应的影响机制。本文分析总结了作者在类钙钛石(K2NiF4)结构复合氧化物的固态物化性质及对NOx消除反应的催化性能方面的基础性研究结果。