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首页> 外文期刊>Catalysis science & technology >Advanced photocatalytic performance of PVP-modified BiOBr materials for the removal of 2,4-DCP and mechanism insight
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Advanced photocatalytic performance of PVP-modified BiOBr materials for the removal of 2,4-DCP and mechanism insight

机译:Advanced photocatalytic performance of PVP-modified BiOBr materials for the removal of 2,4-DCP and mechanism insight

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摘要

BiOBr can degrade pollutants under visible light, and it is a new star in the field of photocatalysis. However, its practical application still faces great challenges, and it still needs to be designed and modified to obtain high catalytic performance for efficient degradation of organic pollutants. Herein, we have realized the simple preparation and efficient catalysis of a BiOBr composite catalyst. This catalyst combines the dual effects of stable adsorption and efficient degradation. This spherical catalyst is composed of surfactant PVP and BiOBr and has higher photocatalytic efficiency. It is found that PVP on the surface of BiOBr firmly adsorbs 2,4-dichlorophenol on the surface of the catalyst, and the petal like microsphere structure makes full use of light energy to achieve high-efficiency photocatalysis. The catalytic effect of the composite catalyst is 1.53 times higher than that of the pure BiOBr catalyst. This study will help us better understand the comprehensive effects of adsorption and degradation of surfactants and catalytic materials, and develop new and reliable green photocatalysts.
机译:BiOBr可以在可见光下降解污染物,这是一个新的领域的明星光催化作用。应用程序仍然面临着巨大的挑战,它仍然需要获得设计和修改为有效的高催化性能有机污染物的降解。实现了简单的准备和吗高效催化BiOBr复合催化剂。稳定的吸附和降解效率。这个球形催化剂是由表面活性剂组成的PVP和BiOBr和具有较高的光催化效率。BiOBr牢牢吸附2,4-dichlorophenol催化剂表面,花瓣充分利用光微球结构能源实现高效光催化。复合催化剂的催化效果1.53倍的纯BiOBr催化剂。理解的综合影响表面活性剂的吸附和降解催化材料,开发新的、可靠绿色催化剂。

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