排序方式: 共有12条查询结果,搜索用时 140 毫秒
1.
2.
A series of Pd/Co3O4 catalysts were prepared by Self-Propagating High-Temperature Synthesis (SHS) method in this study, and electric field was applied for catalytic combustion of lean methane over Pd/Co3O4 catalysts at low temperature. When electric field was applied, the catalytic combustion performance of Pd/Co3O4 catalysts was greatly improved, and the application of electric field could reduce the load of active element Pd to some extent while maintaining the same efficiency. Based on experimental tests and the analysis results of X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), H2-temperature-programmed reduction (H2-TPR) and in-situ diffuse reflectance infrared Fourier transform spectroscopy (in-situ DRIFTS), the mechanism of catalytic oxidation of CH4 over Pd/Co3O4 catalysts in electric field was proposed. The catalytic combustion of CH4 occurs only when the temperature is higher than 250 °C normally, but when electric field was applied, the whole process of CH4 oxidation was promoted significantly and the reaction temperature was reduced. Electric field could promote the reduction of the support Co3O4 to release the lattice oxygen, resulting in the increase of PdOx and the surface chemisorbed oxygen, which could provide more active sites for the low-temperature oxidation of CH4. Furthermore, electric field could accelerate the dehydroxylation of CoOOH to further enhance the activity of the catalysts. 相似文献
3.
4.
5.
CuCeZrOx and KCuCeZrOx catalysts were synthesized and coated on the blank diesel particulate filter (DPF) substrate and a particulate matter (PM) loading apparatus was used for soot loading. The catalytic performances of soot oxidation were evaluated by temperature programmed combustion (TPC) test and characterization tests were conducted to investigate the physicochemical properties of the catalysts. The reaction mechanism in the oxidation process was analyzed with diffuse reflectance infrared Fourier transform spectroscopy. The results demonstrated that CuCeZrOx catalyst exhibited high activities of soot oxidation at low temperature and the best results have been attained with Cu0.9Ce0.05Zr0.05Ox over which the maximum soot oxidation rate decreased to 410 °C. Characterization tests have shown that catalysts containing 90% Cu have uniformly distributed grains and small particle sizes, which provide excellent oxidation activity by providing more active sites and forming a good bond between the catalyst and the soot. The low-temperature oxidation activity of soot could be further optimized due to the excellent elevated NO’s conversion rate by partially substituting Cu with K. The maximum particle oxidation rate can be easily realized at such a low temperature as 347°C. 相似文献
6.
为了拓宽选择性催化还原NO_x钒基催化剂的活性温度窗口,采用溶液燃烧合成法制备了TiV_(0.1)O_x催化剂,依次加入Mn元素与Er元素形成新的催化剂,分别对它们进行了SCR活性及选择性测试,发现负载Mn元素可以提高钒基催化剂的低温活性,同时也会降低钒基催化剂的高温活性,负载适量的Er元素可以提高钒基催化剂的高温活性和N_2选择性。利用N2吸附脱附法进行BET比表面积和孔容孔径分析,发现负载Er元素增大了比表面积,进而提升了催化剂活性。利用X射线衍射(XRD)图谱进行晶体结构分析,所有催化剂样品均没有发现VO_x,MnO_x或ErO_x的衍射峰,说明溶液燃烧法制备的催化剂活性组分在TiO2颗粒上呈无定型态分布,分散度高。最终优选出最佳Mn和Er比例的TiV_(0.1)Mn_(0.1)Er_(0.01)O_x催化剂,在160~470℃之间保持80%以上的NO_x去除率。 相似文献
7.
8.
9.
10.