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Large-scale growth of hierarchical transition-metal vanadate nanosheets on metal meshes as monolith catalysts for De-NOx reaction

机译:大规模的发展层次过渡金属钒酸nanosheets金属网格作为De-NOx庞然大物催化剂的反应

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A facile method is developed for the large-scale growth of hierarchical transition-metal (Cu, Fe, and Ni) vanadate nanosheets on corresponding metal mesh as supports. The hierarchical transition-metal vanadate nanosheets were in situ grown on the metal meshes through an orientational etching process and simultaneous nucleation and growth process. Interestingly, the morphologies of the vanadate nanosheets are governed by the balance between dissolution rate and nucleation rate. Thus, the sizes and the thicknesses of the nanosheets could be facilely controlled by the reaction duration, the acidity of the solution and the concentration of vanadate precursor. Furthermore, the hierarchical transition-metal vanadate nanosheets supported on metal meshes are used as monolith catalysts for the selective catalytic reduction (SCR) of NO with NH3. The iron mesh based monolith catalyst shows excellent de-NOx performance with high efficiency and stability in the presence of SO2 and H2O, which provide a promising monolith de-NOx catalyst for stationary source at medium temperatures.
机译:一个简单的方法是为大规模开发发展层次过渡金属(铜、铁、钒酸和Ni) nanosheets对应金属网的支持。过渡金属钒酸nanosheets原位通过一个生长在金属网格在蚀刻过程和同步成核和生长过程。形态的钒酸nanosheets由溶解速度之间的平衡和成核率。厚度的nanosheets可以轻易地控制反应时间,酸度的解决方案和钒酸盐的浓度前体。过渡金属钒酸nanosheets支持金属网格用作庞然大物的催化剂选择性催化还原(SCR)与氨。显示优秀de-NOx性能高效率和稳定二氧化硫的存在和水,这提供了一个有前途的庞然大物de-NOx催化剂固定在介质来源温度。

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